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recombinant human active gst epha2  (Carna Inc)


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    Structured Review

    Carna Inc recombinant human active gst epha2
    ( a ) Whole-cell lysates from HeLa cells treated with TNF-α (20 ng ml −1 ) for 10, 20 and 60 min were separated by Zn 2+ -Phos-tag SDS–PAGE and immunoblotted with <t>anti-EphA2</t> and EGFR antibodies. ( b ) Whole-cell lysates from HeLa cells treated with TNF-α for 20 min were separated by Zn 2+ -Phos-tag SDS–PAGE and immunoblotted with anti-EphA2, pS-EphA2 and pY-EphA2. ( c ) Whole-cell lysates from HeLa cells treated with ephrin-A1 (100 ng ml −1 ) for 10 min or TNF-α for 20 min were separated by normal SDS–PAGE and immunoblotted with anti-pS-EphA2, pY-EphA2, EphA2 and α-tubulin antibodies. ( d ) HeLa cells were stimulated with TNF-α for the indicated periods. Whole-cell lysates were electrophoresed and probed with primary antibodies against pS-EphA2, pY-EphA2, EphA2, pT-EGFR, pS-EGFR, EGFR and α-tubulin. ( e ) HeLa cells were stimulated with TNF-α for 20 and 60 min. After fixation and permeabilization, cells were immunofluorescently stained with pS-EphA2, EphA2 or EGFR (clone LA1). Scale bar, 20 μm. Shown are representative images from three independent experiments.
    Recombinant Human Active Gst Epha2, supplied by Carna Inc, used in various techniques. Bioz Stars score: 95/100, based on 3 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/recombinant+human+active+gst+epha2/EPHA2/pmc04510653-146-15-25
    Average 95 stars, based on 3 article reviews
    recombinant human active gst epha2 - by Bioz Stars, 2026-09
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    Images

    1) Product Images from "Crucial roles of RSK in cell motility by catalysing serine phosphorylation of EphA2"

    Article Title: Crucial roles of RSK in cell motility by catalysing serine phosphorylation of EphA2

    Journal: Nature Communications

    doi: 10.1038/ncomms8679

    ( a ) Whole-cell lysates from HeLa cells treated with TNF-α (20 ng ml −1 ) for 10, 20 and 60 min were separated by Zn 2+ -Phos-tag SDS–PAGE and immunoblotted with anti-EphA2 and EGFR antibodies. ( b ) Whole-cell lysates from HeLa cells treated with TNF-α for 20 min were separated by Zn 2+ -Phos-tag SDS–PAGE and immunoblotted with anti-EphA2, pS-EphA2 and pY-EphA2. ( c ) Whole-cell lysates from HeLa cells treated with ephrin-A1 (100 ng ml −1 ) for 10 min or TNF-α for 20 min were separated by normal SDS–PAGE and immunoblotted with anti-pS-EphA2, pY-EphA2, EphA2 and α-tubulin antibodies. ( d ) HeLa cells were stimulated with TNF-α for the indicated periods. Whole-cell lysates were electrophoresed and probed with primary antibodies against pS-EphA2, pY-EphA2, EphA2, pT-EGFR, pS-EGFR, EGFR and α-tubulin. ( e ) HeLa cells were stimulated with TNF-α for 20 and 60 min. After fixation and permeabilization, cells were immunofluorescently stained with pS-EphA2, EphA2 or EGFR (clone LA1). Scale bar, 20 μm. Shown are representative images from three independent experiments.
    Figure Legend Snippet: ( a ) Whole-cell lysates from HeLa cells treated with TNF-α (20 ng ml −1 ) for 10, 20 and 60 min were separated by Zn 2+ -Phos-tag SDS–PAGE and immunoblotted with anti-EphA2 and EGFR antibodies. ( b ) Whole-cell lysates from HeLa cells treated with TNF-α for 20 min were separated by Zn 2+ -Phos-tag SDS–PAGE and immunoblotted with anti-EphA2, pS-EphA2 and pY-EphA2. ( c ) Whole-cell lysates from HeLa cells treated with ephrin-A1 (100 ng ml −1 ) for 10 min or TNF-α for 20 min were separated by normal SDS–PAGE and immunoblotted with anti-pS-EphA2, pY-EphA2, EphA2 and α-tubulin antibodies. ( d ) HeLa cells were stimulated with TNF-α for the indicated periods. Whole-cell lysates were electrophoresed and probed with primary antibodies against pS-EphA2, pY-EphA2, EphA2, pT-EGFR, pS-EGFR, EGFR and α-tubulin. ( e ) HeLa cells were stimulated with TNF-α for 20 and 60 min. After fixation and permeabilization, cells were immunofluorescently stained with pS-EphA2, EphA2 or EGFR (clone LA1). Scale bar, 20 μm. Shown are representative images from three independent experiments.

    Techniques Used: SDS Page, Staining

    ( a , b ) HeLa ( a ) or T98G ( b left) cells were pre-treated with LY294002 (10 μM) or MK-2206 (10 μM) for 30 min and then stimulated with TNF-α for 20 min. T98G cells were starved using FCS-free medium for 24 h, treated with LY294002 for 30 min and then treated with 10% FCS for 10 min ( b , right). ( c ) MDA-MB-231 and Panc-1 cells were treated with LY294002 for 30 min. ( d ) HeLa cells stably transfected shRNA expression vectors against luciferase and TAK1 were stimulated with TNF-α for 20 min. ( e ) HeLa cells were transfected with siRNAs against TAK1 or negative control. At 72 h post transfection, cells were treated with TNF-α for 20 min. Whole-cell lysates were immunoblotted with anti-pS-EphA2, EphA2, pAKT, pRSK, RSK1, RSK2, TAK1, β-actin and α-tubulin antibodies.
    Figure Legend Snippet: ( a , b ) HeLa ( a ) or T98G ( b left) cells were pre-treated with LY294002 (10 μM) or MK-2206 (10 μM) for 30 min and then stimulated with TNF-α for 20 min. T98G cells were starved using FCS-free medium for 24 h, treated with LY294002 for 30 min and then treated with 10% FCS for 10 min ( b , right). ( c ) MDA-MB-231 and Panc-1 cells were treated with LY294002 for 30 min. ( d ) HeLa cells stably transfected shRNA expression vectors against luciferase and TAK1 were stimulated with TNF-α for 20 min. ( e ) HeLa cells were transfected with siRNAs against TAK1 or negative control. At 72 h post transfection, cells were treated with TNF-α for 20 min. Whole-cell lysates were immunoblotted with anti-pS-EphA2, EphA2, pAKT, pRSK, RSK1, RSK2, TAK1, β-actin and α-tubulin antibodies.

    Techniques Used: Stable Transfection, Transfection, shRNA, Expressing, Luciferase, Negative Control

    ( a ) HeLa cells were stimulated with TNF-α for the indicated periods. Whole-cell lysates were immunoblotted with anti-pS-EphA2, EphA2, pRSK, RSK1, RSK2 and α-tubulin antibodies. ( b , c ) Whole-cell lysates from HeLa cells pre-treated with LY294002 (10 μM), SB203580 (10 μM), U0126 (5 μM) or BI-D1870 (10 μM) for 30 min and then stimulated with TNF-α for 20 min were separated by Zn 2+ -Phos-tag SDS–PAGE and immunoblotted with anti-EphA2 and pS-EphA2 antibodies ( b ), or by normal SDS–PAGE and immunoblotted with anti-pS-EphA2, EphA2, pT-EGFR, pS-EGFR, EGFR, pRSK, RSK1, RSK2 and α-tubulin antibodies ( c ). ( d ) HeLa cells were pre-treated with LY294002 or BI-D1870 for 30 min and then stimulated with NaCl (0.3 M), TPA (100 ng ml −1 ) or EGF (10 ng ml −1 ) for 10 min. Whole-cell lysates were immunoblotted with primary antibodies against pS-EphA2, EphA2, pRSK, RSK1, RSK2, pAKT and α-tubulin. ( e ) T98G and U-87 MG cells starved in FCS-free medium for 24 h were treated with LY294002, MK-2206, U0126 and BI-D1870 for 30 min and then stimulated with 10% FCS for 10 min. Whole-cell lysates were immunoblotted with primary antibodies against pS-EphA2, EphA2, pRSK, RSK1, RSK2, pAKT, pERK and α-tubulin.
    Figure Legend Snippet: ( a ) HeLa cells were stimulated with TNF-α for the indicated periods. Whole-cell lysates were immunoblotted with anti-pS-EphA2, EphA2, pRSK, RSK1, RSK2 and α-tubulin antibodies. ( b , c ) Whole-cell lysates from HeLa cells pre-treated with LY294002 (10 μM), SB203580 (10 μM), U0126 (5 μM) or BI-D1870 (10 μM) for 30 min and then stimulated with TNF-α for 20 min were separated by Zn 2+ -Phos-tag SDS–PAGE and immunoblotted with anti-EphA2 and pS-EphA2 antibodies ( b ), or by normal SDS–PAGE and immunoblotted with anti-pS-EphA2, EphA2, pT-EGFR, pS-EGFR, EGFR, pRSK, RSK1, RSK2 and α-tubulin antibodies ( c ). ( d ) HeLa cells were pre-treated with LY294002 or BI-D1870 for 30 min and then stimulated with NaCl (0.3 M), TPA (100 ng ml −1 ) or EGF (10 ng ml −1 ) for 10 min. Whole-cell lysates were immunoblotted with primary antibodies against pS-EphA2, EphA2, pRSK, RSK1, RSK2, pAKT and α-tubulin. ( e ) T98G and U-87 MG cells starved in FCS-free medium for 24 h were treated with LY294002, MK-2206, U0126 and BI-D1870 for 30 min and then stimulated with 10% FCS for 10 min. Whole-cell lysates were immunoblotted with primary antibodies against pS-EphA2, EphA2, pRSK, RSK1, RSK2, pAKT, pERK and α-tubulin.

    Techniques Used: SDS Page

    ( a , b ) HEK293 cells were transfected with expression vectors for EphA2, RSK1 and its substitution mutants. At 24 h post transfection, whole-cell lysates were immunoblotted with anti-pS-EphA2, pY-EphA2, EphA2, pRSK, RSK1 and α-tubulin antibodies. ( c ) HeLa cells were transfected with siRNAs against RSK1, RSK2 or negative control. At 72 h post transfection, cells were stimulated with TNF-α for 20 min. Whole-cell lysates were immunoblotted with primary antibodies against pS-EphA2, EphA2, pRSK, RSK1, RSK2 and α-tubulin. ( d ) Recombinant human GST-EphA2 was incubated with recombinant human active GST-RSK1 or RSK2 in the absence or presence of BI-D1870 (0.1 μM) at 30 °C for 30 min. The reaction mixtures were analysed by immunoblotting with anti-pS-EphA2, EphA2, RSK1 and RSK2 antibodies.
    Figure Legend Snippet: ( a , b ) HEK293 cells were transfected with expression vectors for EphA2, RSK1 and its substitution mutants. At 24 h post transfection, whole-cell lysates were immunoblotted with anti-pS-EphA2, pY-EphA2, EphA2, pRSK, RSK1 and α-tubulin antibodies. ( c ) HeLa cells were transfected with siRNAs against RSK1, RSK2 or negative control. At 72 h post transfection, cells were stimulated with TNF-α for 20 min. Whole-cell lysates were immunoblotted with primary antibodies against pS-EphA2, EphA2, pRSK, RSK1, RSK2 and α-tubulin. ( d ) Recombinant human GST-EphA2 was incubated with recombinant human active GST-RSK1 or RSK2 in the absence or presence of BI-D1870 (0.1 μM) at 30 °C for 30 min. The reaction mixtures were analysed by immunoblotting with anti-pS-EphA2, EphA2, RSK1 and RSK2 antibodies.

    Techniques Used: Transfection, Expressing, Negative Control, Recombinant, Incubation, Western Blot

    ( a ) Whole-cell lysates from HeLa cells treated with TNF-α for 20 min or untreated MDA-MB-231 cells were separated by Zn 2+ -Phos-tag SDS–PAGE and immunoblotted with anti-EphA2 antibody. ( b – f ) MDA-MB-231 cells were pre-treated with BI-D1870 (10 μM) for 30 min and then scratched with a pipette tip. After 48 h of incubation, whole-cell lysates were immunoblotted with primary antibodies against pS-EphA2, EphA2 and β-actin ( b ) Migrated cells were counted manually under a microscope ( c ) Data are the means±s.d. of at least three fields. Similar results were obtained in at least three independent experiments. * P <0.05 by Student's t -test. At the same time, the migration border cells were immunofluorescently stained with anti-pS-EphA2 or EphA2 antibodies ( d , e ) and cells harbouring lamellipodia were counted manually under a microscope ( f ) Scale bar, 20 μm. Data are the means±s.d. of at least three fields. Similar results were obtained in at least three independent experiments. * P <0.05 by Student's t -test. ( g , h ) MDA-MB-231 cells were transfected with siRNA against EphA2 or negative control and EphA2 mutation-expression plasmids. The immunoblotting results from whole-cell lysates with anti-pS-EphA2, EphA2 and β-actin antibodies are shown in g and the results of scratch assay are shown in h . Data are the means±s.d. of at least three fields. Similar results were obtained in at least three independent experiments. * P <0.05 by analysis of variance followed by Tukey–Kramer HSD test.
    Figure Legend Snippet: ( a ) Whole-cell lysates from HeLa cells treated with TNF-α for 20 min or untreated MDA-MB-231 cells were separated by Zn 2+ -Phos-tag SDS–PAGE and immunoblotted with anti-EphA2 antibody. ( b – f ) MDA-MB-231 cells were pre-treated with BI-D1870 (10 μM) for 30 min and then scratched with a pipette tip. After 48 h of incubation, whole-cell lysates were immunoblotted with primary antibodies against pS-EphA2, EphA2 and β-actin ( b ) Migrated cells were counted manually under a microscope ( c ) Data are the means±s.d. of at least three fields. Similar results were obtained in at least three independent experiments. * P <0.05 by Student's t -test. At the same time, the migration border cells were immunofluorescently stained with anti-pS-EphA2 or EphA2 antibodies ( d , e ) and cells harbouring lamellipodia were counted manually under a microscope ( f ) Scale bar, 20 μm. Data are the means±s.d. of at least three fields. Similar results were obtained in at least three independent experiments. * P <0.05 by Student's t -test. ( g , h ) MDA-MB-231 cells were transfected with siRNA against EphA2 or negative control and EphA2 mutation-expression plasmids. The immunoblotting results from whole-cell lysates with anti-pS-EphA2, EphA2 and β-actin antibodies are shown in g and the results of scratch assay are shown in h . Data are the means±s.d. of at least three fields. Similar results were obtained in at least three independent experiments. * P <0.05 by analysis of variance followed by Tukey–Kramer HSD test.

    Techniques Used: SDS Page, Transferring, Incubation, Microscopy, Migration, Staining, Transfection, Negative Control, Mutagenesis, Expressing, Western Blot, Wound Healing Assay

    ( a ) Human melanoma cells (A2058, SK-MEL-28, A375, UACC62, UACC257 and SK-MEL-2), ( b ) DLD-1 colon cancer cells and ( c ) lung adenocarcinoma cells (PC-9, HCC827, HCC4006, NCI-H1650, H2228 and A549) were treated with vemurafenib (1 μM), BI-D1870 (10 μM), gefitinib (1 μM), crizotinib (10 μM) or U0126 (5 μM) for 30–60 min. Whole-cell lysates were immunoblotted with primary antibodies against pS-EphA2, EphA2, pRSK, RSK1, RSK2, pY-EGFR, EGFR, β-actin and α-tubulin.
    Figure Legend Snippet: ( a ) Human melanoma cells (A2058, SK-MEL-28, A375, UACC62, UACC257 and SK-MEL-2), ( b ) DLD-1 colon cancer cells and ( c ) lung adenocarcinoma cells (PC-9, HCC827, HCC4006, NCI-H1650, H2228 and A549) were treated with vemurafenib (1 μM), BI-D1870 (10 μM), gefitinib (1 μM), crizotinib (10 μM) or U0126 (5 μM) for 30–60 min. Whole-cell lysates were immunoblotted with primary antibodies against pS-EphA2, EphA2, pRSK, RSK1, RSK2, pY-EGFR, EGFR, β-actin and α-tubulin.

    Techniques Used:

    ( a ) A multi-cancer tissue microarray, including 1,010 cores from 13 organ cancer tissues, was adopted for immunohistochemical staining using primary antibodies against pS-EphA2 and pRSK. Typical staining images of lung cancer tissues, including adenocarcinoma (AD) and squamous cell carcinoma (SCC), at low- and high-power magnifications are shown. Scale bar, 20 μm. ( b ) Typical immunohistochemical staining of pS-EphA2 and pRSK in EGFR -mutated (exon 19 deletion) lung adenocarcinoma tissues are shown. Scale bar, 20 μm. ( c – f ) Postoperative overall Kaplan–Meier survival curves of all the lung cancer patients ( c , d ) or smoking patients ( e , f ) were compared according to pRSK negativity or positivity ( c , e ) or pS-EphA2/pRSK double positivity ( d , f ) P values were calculated by the log-rank tests.
    Figure Legend Snippet: ( a ) A multi-cancer tissue microarray, including 1,010 cores from 13 organ cancer tissues, was adopted for immunohistochemical staining using primary antibodies against pS-EphA2 and pRSK. Typical staining images of lung cancer tissues, including adenocarcinoma (AD) and squamous cell carcinoma (SCC), at low- and high-power magnifications are shown. Scale bar, 20 μm. ( b ) Typical immunohistochemical staining of pS-EphA2 and pRSK in EGFR -mutated (exon 19 deletion) lung adenocarcinoma tissues are shown. Scale bar, 20 μm. ( c – f ) Postoperative overall Kaplan–Meier survival curves of all the lung cancer patients ( c , d ) or smoking patients ( e , f ) were compared according to pRSK negativity or positivity ( c , e ) or pS-EphA2/pRSK double positivity ( d , f ) P values were calculated by the log-rank tests.

    Techniques Used: Microarray, Immunohistochemical staining, Staining

    Related Articles

    Recombinant:

    Article Title: Crucial roles of RSK in cell motility by catalysing serine phosphorylation of EphA2
    Article Snippet: Antibodies against total EphA2 (C-20; sc-924), RSK1 (C-21; sc-231), RSK2 (C-19; sc-1430), EGFR (1005; sc-03), TAK1 (M-579; sc-7162), β-actin (I-19; sc-1616) and α-tubulin (B-7; sc-5286) were obtained from Santa Cruz Biotechnology (Santa Cruz, CA, USA). .. Recombinant human TNF-α, ephrin-A1-Fc chimera and EGF were obtained from R&D Systems (Minneapolis, MN, USA); recombinant human active GST-EphA2, GST-RSK1 and GST-RSK2 protein were from Carna Biosciences (Kobe, Japan); anti-EGFR monoclonal antibody (clone LA1; 05-101) was from Millipore (Billerica, MA, USA); Phos-tag ligand and TPA were from Wako Pure Chemical Industries (Osaka, Japan); LY294002, SB203580 and U0126 were from Merck Biosciences (Darmstadt, Germany); MK-2206 was from Active Biochemicals (Wan Chai, Hong Kong); BI-D1870 and crizotinib were from BioVision (Milpitas, CA, USA); gefitinib was from Cayman Chemical (Ann Arbor, MI, USA); and vemurafenib was from LC Laboratories (Woburn, MA, USA). ..



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    Carna Inc recombinant human active gst epha2
    ( a ) Whole-cell lysates from HeLa cells treated with TNF-α (20 ng ml −1 ) for 10, 20 and 60 min were separated by Zn 2+ -Phos-tag SDS–PAGE and immunoblotted with <t>anti-EphA2</t> and EGFR antibodies. ( b ) Whole-cell lysates from HeLa cells treated with TNF-α for 20 min were separated by Zn 2+ -Phos-tag SDS–PAGE and immunoblotted with anti-EphA2, pS-EphA2 and pY-EphA2. ( c ) Whole-cell lysates from HeLa cells treated with ephrin-A1 (100 ng ml −1 ) for 10 min or TNF-α for 20 min were separated by normal SDS–PAGE and immunoblotted with anti-pS-EphA2, pY-EphA2, EphA2 and α-tubulin antibodies. ( d ) HeLa cells were stimulated with TNF-α for the indicated periods. Whole-cell lysates were electrophoresed and probed with primary antibodies against pS-EphA2, pY-EphA2, EphA2, pT-EGFR, pS-EGFR, EGFR and α-tubulin. ( e ) HeLa cells were stimulated with TNF-α for 20 and 60 min. After fixation and permeabilization, cells were immunofluorescently stained with pS-EphA2, EphA2 or EGFR (clone LA1). Scale bar, 20 μm. Shown are representative images from three independent experiments.
    Recombinant Human Active Gst Epha2, supplied by Carna Inc, used in various techniques. Bioz Stars score: 95/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/recombinant+human+active+gst+epha2/EPHA2/pmc04510653-146-15-25
    Average 95 stars, based on 1 article reviews
    recombinant human active gst epha2 - by Bioz Stars, 2026-09
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    ( a ) Whole-cell lysates from HeLa cells treated with TNF-α (20 ng ml −1 ) for 10, 20 and 60 min were separated by Zn 2+ -Phos-tag SDS–PAGE and immunoblotted with anti-EphA2 and EGFR antibodies. ( b ) Whole-cell lysates from HeLa cells treated with TNF-α for 20 min were separated by Zn 2+ -Phos-tag SDS–PAGE and immunoblotted with anti-EphA2, pS-EphA2 and pY-EphA2. ( c ) Whole-cell lysates from HeLa cells treated with ephrin-A1 (100 ng ml −1 ) for 10 min or TNF-α for 20 min were separated by normal SDS–PAGE and immunoblotted with anti-pS-EphA2, pY-EphA2, EphA2 and α-tubulin antibodies. ( d ) HeLa cells were stimulated with TNF-α for the indicated periods. Whole-cell lysates were electrophoresed and probed with primary antibodies against pS-EphA2, pY-EphA2, EphA2, pT-EGFR, pS-EGFR, EGFR and α-tubulin. ( e ) HeLa cells were stimulated with TNF-α for 20 and 60 min. After fixation and permeabilization, cells were immunofluorescently stained with pS-EphA2, EphA2 or EGFR (clone LA1). Scale bar, 20 μm. Shown are representative images from three independent experiments.

    Journal: Nature Communications

    Article Title: Crucial roles of RSK in cell motility by catalysing serine phosphorylation of EphA2

    doi: 10.1038/ncomms8679

    Figure Lengend Snippet: ( a ) Whole-cell lysates from HeLa cells treated with TNF-α (20 ng ml −1 ) for 10, 20 and 60 min were separated by Zn 2+ -Phos-tag SDS–PAGE and immunoblotted with anti-EphA2 and EGFR antibodies. ( b ) Whole-cell lysates from HeLa cells treated with TNF-α for 20 min were separated by Zn 2+ -Phos-tag SDS–PAGE and immunoblotted with anti-EphA2, pS-EphA2 and pY-EphA2. ( c ) Whole-cell lysates from HeLa cells treated with ephrin-A1 (100 ng ml −1 ) for 10 min or TNF-α for 20 min were separated by normal SDS–PAGE and immunoblotted with anti-pS-EphA2, pY-EphA2, EphA2 and α-tubulin antibodies. ( d ) HeLa cells were stimulated with TNF-α for the indicated periods. Whole-cell lysates were electrophoresed and probed with primary antibodies against pS-EphA2, pY-EphA2, EphA2, pT-EGFR, pS-EGFR, EGFR and α-tubulin. ( e ) HeLa cells were stimulated with TNF-α for 20 and 60 min. After fixation and permeabilization, cells were immunofluorescently stained with pS-EphA2, EphA2 or EGFR (clone LA1). Scale bar, 20 μm. Shown are representative images from three independent experiments.

    Article Snippet: Recombinant human TNF-α, ephrin-A1-Fc chimera and EGF were obtained from R&D Systems (Minneapolis, MN, USA); recombinant human active GST-EphA2, GST-RSK1 and GST-RSK2 protein were from Carna Biosciences (Kobe, Japan); anti-EGFR monoclonal antibody (clone LA1; 05-101) was from Millipore (Billerica, MA, USA); Phos-tag ligand and TPA were from Wako Pure Chemical Industries (Osaka, Japan); LY294002, SB203580 and U0126 were from Merck Biosciences (Darmstadt, Germany); MK-2206 was from Active Biochemicals (Wan Chai, Hong Kong); BI-D1870 and crizotinib were from BioVision (Milpitas, CA, USA); gefitinib was from Cayman Chemical (Ann Arbor, MI, USA); and vemurafenib was from LC Laboratories (Woburn, MA, USA).

    Techniques: SDS Page, Staining

    ( a , b ) HeLa ( a ) or T98G ( b left) cells were pre-treated with LY294002 (10 μM) or MK-2206 (10 μM) for 30 min and then stimulated with TNF-α for 20 min. T98G cells were starved using FCS-free medium for 24 h, treated with LY294002 for 30 min and then treated with 10% FCS for 10 min ( b , right). ( c ) MDA-MB-231 and Panc-1 cells were treated with LY294002 for 30 min. ( d ) HeLa cells stably transfected shRNA expression vectors against luciferase and TAK1 were stimulated with TNF-α for 20 min. ( e ) HeLa cells were transfected with siRNAs against TAK1 or negative control. At 72 h post transfection, cells were treated with TNF-α for 20 min. Whole-cell lysates were immunoblotted with anti-pS-EphA2, EphA2, pAKT, pRSK, RSK1, RSK2, TAK1, β-actin and α-tubulin antibodies.

    Journal: Nature Communications

    Article Title: Crucial roles of RSK in cell motility by catalysing serine phosphorylation of EphA2

    doi: 10.1038/ncomms8679

    Figure Lengend Snippet: ( a , b ) HeLa ( a ) or T98G ( b left) cells were pre-treated with LY294002 (10 μM) or MK-2206 (10 μM) for 30 min and then stimulated with TNF-α for 20 min. T98G cells were starved using FCS-free medium for 24 h, treated with LY294002 for 30 min and then treated with 10% FCS for 10 min ( b , right). ( c ) MDA-MB-231 and Panc-1 cells were treated with LY294002 for 30 min. ( d ) HeLa cells stably transfected shRNA expression vectors against luciferase and TAK1 were stimulated with TNF-α for 20 min. ( e ) HeLa cells were transfected with siRNAs against TAK1 or negative control. At 72 h post transfection, cells were treated with TNF-α for 20 min. Whole-cell lysates were immunoblotted with anti-pS-EphA2, EphA2, pAKT, pRSK, RSK1, RSK2, TAK1, β-actin and α-tubulin antibodies.

    Article Snippet: Recombinant human TNF-α, ephrin-A1-Fc chimera and EGF were obtained from R&D Systems (Minneapolis, MN, USA); recombinant human active GST-EphA2, GST-RSK1 and GST-RSK2 protein were from Carna Biosciences (Kobe, Japan); anti-EGFR monoclonal antibody (clone LA1; 05-101) was from Millipore (Billerica, MA, USA); Phos-tag ligand and TPA were from Wako Pure Chemical Industries (Osaka, Japan); LY294002, SB203580 and U0126 were from Merck Biosciences (Darmstadt, Germany); MK-2206 was from Active Biochemicals (Wan Chai, Hong Kong); BI-D1870 and crizotinib were from BioVision (Milpitas, CA, USA); gefitinib was from Cayman Chemical (Ann Arbor, MI, USA); and vemurafenib was from LC Laboratories (Woburn, MA, USA).

    Techniques: Stable Transfection, Transfection, shRNA, Expressing, Luciferase, Negative Control

    ( a ) HeLa cells were stimulated with TNF-α for the indicated periods. Whole-cell lysates were immunoblotted with anti-pS-EphA2, EphA2, pRSK, RSK1, RSK2 and α-tubulin antibodies. ( b , c ) Whole-cell lysates from HeLa cells pre-treated with LY294002 (10 μM), SB203580 (10 μM), U0126 (5 μM) or BI-D1870 (10 μM) for 30 min and then stimulated with TNF-α for 20 min were separated by Zn 2+ -Phos-tag SDS–PAGE and immunoblotted with anti-EphA2 and pS-EphA2 antibodies ( b ), or by normal SDS–PAGE and immunoblotted with anti-pS-EphA2, EphA2, pT-EGFR, pS-EGFR, EGFR, pRSK, RSK1, RSK2 and α-tubulin antibodies ( c ). ( d ) HeLa cells were pre-treated with LY294002 or BI-D1870 for 30 min and then stimulated with NaCl (0.3 M), TPA (100 ng ml −1 ) or EGF (10 ng ml −1 ) for 10 min. Whole-cell lysates were immunoblotted with primary antibodies against pS-EphA2, EphA2, pRSK, RSK1, RSK2, pAKT and α-tubulin. ( e ) T98G and U-87 MG cells starved in FCS-free medium for 24 h were treated with LY294002, MK-2206, U0126 and BI-D1870 for 30 min and then stimulated with 10% FCS for 10 min. Whole-cell lysates were immunoblotted with primary antibodies against pS-EphA2, EphA2, pRSK, RSK1, RSK2, pAKT, pERK and α-tubulin.

    Journal: Nature Communications

    Article Title: Crucial roles of RSK in cell motility by catalysing serine phosphorylation of EphA2

    doi: 10.1038/ncomms8679

    Figure Lengend Snippet: ( a ) HeLa cells were stimulated with TNF-α for the indicated periods. Whole-cell lysates were immunoblotted with anti-pS-EphA2, EphA2, pRSK, RSK1, RSK2 and α-tubulin antibodies. ( b , c ) Whole-cell lysates from HeLa cells pre-treated with LY294002 (10 μM), SB203580 (10 μM), U0126 (5 μM) or BI-D1870 (10 μM) for 30 min and then stimulated with TNF-α for 20 min were separated by Zn 2+ -Phos-tag SDS–PAGE and immunoblotted with anti-EphA2 and pS-EphA2 antibodies ( b ), or by normal SDS–PAGE and immunoblotted with anti-pS-EphA2, EphA2, pT-EGFR, pS-EGFR, EGFR, pRSK, RSK1, RSK2 and α-tubulin antibodies ( c ). ( d ) HeLa cells were pre-treated with LY294002 or BI-D1870 for 30 min and then stimulated with NaCl (0.3 M), TPA (100 ng ml −1 ) or EGF (10 ng ml −1 ) for 10 min. Whole-cell lysates were immunoblotted with primary antibodies against pS-EphA2, EphA2, pRSK, RSK1, RSK2, pAKT and α-tubulin. ( e ) T98G and U-87 MG cells starved in FCS-free medium for 24 h were treated with LY294002, MK-2206, U0126 and BI-D1870 for 30 min and then stimulated with 10% FCS for 10 min. Whole-cell lysates were immunoblotted with primary antibodies against pS-EphA2, EphA2, pRSK, RSK1, RSK2, pAKT, pERK and α-tubulin.

    Article Snippet: Recombinant human TNF-α, ephrin-A1-Fc chimera and EGF were obtained from R&D Systems (Minneapolis, MN, USA); recombinant human active GST-EphA2, GST-RSK1 and GST-RSK2 protein were from Carna Biosciences (Kobe, Japan); anti-EGFR monoclonal antibody (clone LA1; 05-101) was from Millipore (Billerica, MA, USA); Phos-tag ligand and TPA were from Wako Pure Chemical Industries (Osaka, Japan); LY294002, SB203580 and U0126 were from Merck Biosciences (Darmstadt, Germany); MK-2206 was from Active Biochemicals (Wan Chai, Hong Kong); BI-D1870 and crizotinib were from BioVision (Milpitas, CA, USA); gefitinib was from Cayman Chemical (Ann Arbor, MI, USA); and vemurafenib was from LC Laboratories (Woburn, MA, USA).

    Techniques: SDS Page

    ( a , b ) HEK293 cells were transfected with expression vectors for EphA2, RSK1 and its substitution mutants. At 24 h post transfection, whole-cell lysates were immunoblotted with anti-pS-EphA2, pY-EphA2, EphA2, pRSK, RSK1 and α-tubulin antibodies. ( c ) HeLa cells were transfected with siRNAs against RSK1, RSK2 or negative control. At 72 h post transfection, cells were stimulated with TNF-α for 20 min. Whole-cell lysates were immunoblotted with primary antibodies against pS-EphA2, EphA2, pRSK, RSK1, RSK2 and α-tubulin. ( d ) Recombinant human GST-EphA2 was incubated with recombinant human active GST-RSK1 or RSK2 in the absence or presence of BI-D1870 (0.1 μM) at 30 °C for 30 min. The reaction mixtures were analysed by immunoblotting with anti-pS-EphA2, EphA2, RSK1 and RSK2 antibodies.

    Journal: Nature Communications

    Article Title: Crucial roles of RSK in cell motility by catalysing serine phosphorylation of EphA2

    doi: 10.1038/ncomms8679

    Figure Lengend Snippet: ( a , b ) HEK293 cells were transfected with expression vectors for EphA2, RSK1 and its substitution mutants. At 24 h post transfection, whole-cell lysates were immunoblotted with anti-pS-EphA2, pY-EphA2, EphA2, pRSK, RSK1 and α-tubulin antibodies. ( c ) HeLa cells were transfected with siRNAs against RSK1, RSK2 or negative control. At 72 h post transfection, cells were stimulated with TNF-α for 20 min. Whole-cell lysates were immunoblotted with primary antibodies against pS-EphA2, EphA2, pRSK, RSK1, RSK2 and α-tubulin. ( d ) Recombinant human GST-EphA2 was incubated with recombinant human active GST-RSK1 or RSK2 in the absence or presence of BI-D1870 (0.1 μM) at 30 °C for 30 min. The reaction mixtures were analysed by immunoblotting with anti-pS-EphA2, EphA2, RSK1 and RSK2 antibodies.

    Article Snippet: Recombinant human TNF-α, ephrin-A1-Fc chimera and EGF were obtained from R&D Systems (Minneapolis, MN, USA); recombinant human active GST-EphA2, GST-RSK1 and GST-RSK2 protein were from Carna Biosciences (Kobe, Japan); anti-EGFR monoclonal antibody (clone LA1; 05-101) was from Millipore (Billerica, MA, USA); Phos-tag ligand and TPA were from Wako Pure Chemical Industries (Osaka, Japan); LY294002, SB203580 and U0126 were from Merck Biosciences (Darmstadt, Germany); MK-2206 was from Active Biochemicals (Wan Chai, Hong Kong); BI-D1870 and crizotinib were from BioVision (Milpitas, CA, USA); gefitinib was from Cayman Chemical (Ann Arbor, MI, USA); and vemurafenib was from LC Laboratories (Woburn, MA, USA).

    Techniques: Transfection, Expressing, Negative Control, Recombinant, Incubation, Western Blot

    ( a ) Whole-cell lysates from HeLa cells treated with TNF-α for 20 min or untreated MDA-MB-231 cells were separated by Zn 2+ -Phos-tag SDS–PAGE and immunoblotted with anti-EphA2 antibody. ( b – f ) MDA-MB-231 cells were pre-treated with BI-D1870 (10 μM) for 30 min and then scratched with a pipette tip. After 48 h of incubation, whole-cell lysates were immunoblotted with primary antibodies against pS-EphA2, EphA2 and β-actin ( b ) Migrated cells were counted manually under a microscope ( c ) Data are the means±s.d. of at least three fields. Similar results were obtained in at least three independent experiments. * P <0.05 by Student's t -test. At the same time, the migration border cells were immunofluorescently stained with anti-pS-EphA2 or EphA2 antibodies ( d , e ) and cells harbouring lamellipodia were counted manually under a microscope ( f ) Scale bar, 20 μm. Data are the means±s.d. of at least three fields. Similar results were obtained in at least three independent experiments. * P <0.05 by Student's t -test. ( g , h ) MDA-MB-231 cells were transfected with siRNA against EphA2 or negative control and EphA2 mutation-expression plasmids. The immunoblotting results from whole-cell lysates with anti-pS-EphA2, EphA2 and β-actin antibodies are shown in g and the results of scratch assay are shown in h . Data are the means±s.d. of at least three fields. Similar results were obtained in at least three independent experiments. * P <0.05 by analysis of variance followed by Tukey–Kramer HSD test.

    Journal: Nature Communications

    Article Title: Crucial roles of RSK in cell motility by catalysing serine phosphorylation of EphA2

    doi: 10.1038/ncomms8679

    Figure Lengend Snippet: ( a ) Whole-cell lysates from HeLa cells treated with TNF-α for 20 min or untreated MDA-MB-231 cells were separated by Zn 2+ -Phos-tag SDS–PAGE and immunoblotted with anti-EphA2 antibody. ( b – f ) MDA-MB-231 cells were pre-treated with BI-D1870 (10 μM) for 30 min and then scratched with a pipette tip. After 48 h of incubation, whole-cell lysates were immunoblotted with primary antibodies against pS-EphA2, EphA2 and β-actin ( b ) Migrated cells were counted manually under a microscope ( c ) Data are the means±s.d. of at least three fields. Similar results were obtained in at least three independent experiments. * P <0.05 by Student's t -test. At the same time, the migration border cells were immunofluorescently stained with anti-pS-EphA2 or EphA2 antibodies ( d , e ) and cells harbouring lamellipodia were counted manually under a microscope ( f ) Scale bar, 20 μm. Data are the means±s.d. of at least three fields. Similar results were obtained in at least three independent experiments. * P <0.05 by Student's t -test. ( g , h ) MDA-MB-231 cells were transfected with siRNA against EphA2 or negative control and EphA2 mutation-expression plasmids. The immunoblotting results from whole-cell lysates with anti-pS-EphA2, EphA2 and β-actin antibodies are shown in g and the results of scratch assay are shown in h . Data are the means±s.d. of at least three fields. Similar results were obtained in at least three independent experiments. * P <0.05 by analysis of variance followed by Tukey–Kramer HSD test.

    Article Snippet: Recombinant human TNF-α, ephrin-A1-Fc chimera and EGF were obtained from R&D Systems (Minneapolis, MN, USA); recombinant human active GST-EphA2, GST-RSK1 and GST-RSK2 protein were from Carna Biosciences (Kobe, Japan); anti-EGFR monoclonal antibody (clone LA1; 05-101) was from Millipore (Billerica, MA, USA); Phos-tag ligand and TPA were from Wako Pure Chemical Industries (Osaka, Japan); LY294002, SB203580 and U0126 were from Merck Biosciences (Darmstadt, Germany); MK-2206 was from Active Biochemicals (Wan Chai, Hong Kong); BI-D1870 and crizotinib were from BioVision (Milpitas, CA, USA); gefitinib was from Cayman Chemical (Ann Arbor, MI, USA); and vemurafenib was from LC Laboratories (Woburn, MA, USA).

    Techniques: SDS Page, Transferring, Incubation, Microscopy, Migration, Staining, Transfection, Negative Control, Mutagenesis, Expressing, Western Blot, Wound Healing Assay

    ( a ) Human melanoma cells (A2058, SK-MEL-28, A375, UACC62, UACC257 and SK-MEL-2), ( b ) DLD-1 colon cancer cells and ( c ) lung adenocarcinoma cells (PC-9, HCC827, HCC4006, NCI-H1650, H2228 and A549) were treated with vemurafenib (1 μM), BI-D1870 (10 μM), gefitinib (1 μM), crizotinib (10 μM) or U0126 (5 μM) for 30–60 min. Whole-cell lysates were immunoblotted with primary antibodies against pS-EphA2, EphA2, pRSK, RSK1, RSK2, pY-EGFR, EGFR, β-actin and α-tubulin.

    Journal: Nature Communications

    Article Title: Crucial roles of RSK in cell motility by catalysing serine phosphorylation of EphA2

    doi: 10.1038/ncomms8679

    Figure Lengend Snippet: ( a ) Human melanoma cells (A2058, SK-MEL-28, A375, UACC62, UACC257 and SK-MEL-2), ( b ) DLD-1 colon cancer cells and ( c ) lung adenocarcinoma cells (PC-9, HCC827, HCC4006, NCI-H1650, H2228 and A549) were treated with vemurafenib (1 μM), BI-D1870 (10 μM), gefitinib (1 μM), crizotinib (10 μM) or U0126 (5 μM) for 30–60 min. Whole-cell lysates were immunoblotted with primary antibodies against pS-EphA2, EphA2, pRSK, RSK1, RSK2, pY-EGFR, EGFR, β-actin and α-tubulin.

    Article Snippet: Recombinant human TNF-α, ephrin-A1-Fc chimera and EGF were obtained from R&D Systems (Minneapolis, MN, USA); recombinant human active GST-EphA2, GST-RSK1 and GST-RSK2 protein were from Carna Biosciences (Kobe, Japan); anti-EGFR monoclonal antibody (clone LA1; 05-101) was from Millipore (Billerica, MA, USA); Phos-tag ligand and TPA were from Wako Pure Chemical Industries (Osaka, Japan); LY294002, SB203580 and U0126 were from Merck Biosciences (Darmstadt, Germany); MK-2206 was from Active Biochemicals (Wan Chai, Hong Kong); BI-D1870 and crizotinib were from BioVision (Milpitas, CA, USA); gefitinib was from Cayman Chemical (Ann Arbor, MI, USA); and vemurafenib was from LC Laboratories (Woburn, MA, USA).

    Techniques:

    ( a ) A multi-cancer tissue microarray, including 1,010 cores from 13 organ cancer tissues, was adopted for immunohistochemical staining using primary antibodies against pS-EphA2 and pRSK. Typical staining images of lung cancer tissues, including adenocarcinoma (AD) and squamous cell carcinoma (SCC), at low- and high-power magnifications are shown. Scale bar, 20 μm. ( b ) Typical immunohistochemical staining of pS-EphA2 and pRSK in EGFR -mutated (exon 19 deletion) lung adenocarcinoma tissues are shown. Scale bar, 20 μm. ( c – f ) Postoperative overall Kaplan–Meier survival curves of all the lung cancer patients ( c , d ) or smoking patients ( e , f ) were compared according to pRSK negativity or positivity ( c , e ) or pS-EphA2/pRSK double positivity ( d , f ) P values were calculated by the log-rank tests.

    Journal: Nature Communications

    Article Title: Crucial roles of RSK in cell motility by catalysing serine phosphorylation of EphA2

    doi: 10.1038/ncomms8679

    Figure Lengend Snippet: ( a ) A multi-cancer tissue microarray, including 1,010 cores from 13 organ cancer tissues, was adopted for immunohistochemical staining using primary antibodies against pS-EphA2 and pRSK. Typical staining images of lung cancer tissues, including adenocarcinoma (AD) and squamous cell carcinoma (SCC), at low- and high-power magnifications are shown. Scale bar, 20 μm. ( b ) Typical immunohistochemical staining of pS-EphA2 and pRSK in EGFR -mutated (exon 19 deletion) lung adenocarcinoma tissues are shown. Scale bar, 20 μm. ( c – f ) Postoperative overall Kaplan–Meier survival curves of all the lung cancer patients ( c , d ) or smoking patients ( e , f ) were compared according to pRSK negativity or positivity ( c , e ) or pS-EphA2/pRSK double positivity ( d , f ) P values were calculated by the log-rank tests.

    Article Snippet: Recombinant human TNF-α, ephrin-A1-Fc chimera and EGF were obtained from R&D Systems (Minneapolis, MN, USA); recombinant human active GST-EphA2, GST-RSK1 and GST-RSK2 protein were from Carna Biosciences (Kobe, Japan); anti-EGFR monoclonal antibody (clone LA1; 05-101) was from Millipore (Billerica, MA, USA); Phos-tag ligand and TPA were from Wako Pure Chemical Industries (Osaka, Japan); LY294002, SB203580 and U0126 were from Merck Biosciences (Darmstadt, Germany); MK-2206 was from Active Biochemicals (Wan Chai, Hong Kong); BI-D1870 and crizotinib were from BioVision (Milpitas, CA, USA); gefitinib was from Cayman Chemical (Ann Arbor, MI, USA); and vemurafenib was from LC Laboratories (Woburn, MA, USA).

    Techniques: Microarray, Immunohistochemical staining, Staining