Review



anti gfp rabbit polyclonal antibody  (Proteintech)


Bioz Verified Symbol Proteintech is a verified supplier  
  • Logo
  • About
  • News
  • Press Release
  • Team
  • Advisors
  • Partners
  • Contact
  • Bioz Stars
  • Bioz vStars
  • 96

    Structured Review

    Proteintech anti gfp rabbit polyclonal antibody
    Anti Gfp Rabbit Polyclonal Antibody, supplied by Proteintech, used in various techniques. Bioz Stars score: 96/100, based on 1640 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/rabbit+polyclonal+anti+gfp/GFP+tag+Antibody/pm41914604-278-0-11
    Average 96 stars, based on 1640 article reviews
    anti gfp rabbit polyclonal antibody - by Bioz Stars, 2026-09
    96/100 stars

    Images

    Related Articles

    Generated:

    Article Title: Targeting PRMT7-mediated monomethylation of MAVS enhances antiviral innate immune responses and inhibits RNA virus replication
    Article Snippet: .. Antibodies used are listed as following: Mouse monoclonal anti-β-Actin (Proteintech, 66009-1-Ig, 1:5000); Rabbit polyclonal anti-MAVS (Proteintech, 14341-1-AP, 1:2000); Rabbit polyclonal anti-GFP (Proteintech, 50430-2-AP, 1:2000); Rabbit polyclonal anti-HA (Proteintech, 51064-2-AP, 1:2000); Mouse monoclonal anti-Flag M2 (Sigma-Aldrich, F1804, 1:5000); Rabbit monoclonal anti-PRMT7 (D1K6R) (Cell Signaling Technology, 14762S, 1:2000); Rabbit anti-Phospho-IRF3 (Ser396) (Cell Signaling Technology, 4947S, 1:1000); Rabbit anti-Phospho-TBK1 (Cell Signaling Technology, 5483S, 1:1000); Rabbit anti-IRF3 (D83B9) (Cell Signaling Technology, 4302S, 1:2000); Rabbit anti-TBK1 (D1B4) (Cell Signaling Technology, 3504S, 1:2000); Rabbit monoclonal anti-MMA (Cell Signaling Technology, 8015S, 1:1000); Mouse monoclonal anti-c-Myc (Santa Cruz, sc-40, 1:2000); Rabbit anti-MAVS 232Rme1 was generated by Abclonal; Anti-Flag M2 Affinity Gel (Sigma, A2220). .. For immunoprecipitation, cells were washed with cold PBS, collected in lysis buffer (50 mM Tris-HCl (PH 7.4), 150 mM NaCl, 1 mM EDTA, and 1% Triton X-100) containing protease inhibitor cocktail (sigma, P2714-1BTL), and kept on ice for 30 minuntes, followed by centrifuging at 12,000 g for 10 minutes at 4 °C.

    other:

    Article Title: Auto-methylation of the histone methyltransferase SetDB1 at its histone-mimic motifs ensures the spreading and maintenance of heterochromatin
    Article Snippet: Anti-H3K9me3 (Abcam, ab8898), anti-SetDB1 (Proteintech, 11231-1-AP), anti-FLAG (Sigma, F1804), rabbit polyclonal anti-GFP (Chen et al., 2016), anti-MPP8 (Proteintech, 16796-1-AP), anti-HP1α (Cell Signaling, 2616), anti-KAP1 (Invitrogen, MA1-2023), anti-ATF7IP (Proteintech, 14699-1-AP), anti-Tubulin (Sigma, T5168), IRDye® anti-rabbit and anti-mouse secondary antibodies (LICORbio, 926-32210, 926-32211, 926-68071, 926-68070), HRP-conjugated anti-rabbit and anti-mouse secondary antibodies (Cell Signaling, 7074 and 7076), Alexa Fluor 647-conjugated anti-rabbit secondary antibody (Invitrogen, A21245).

    Article Title: Zika virus disrupts steroidogenesis and impairs spermatogenesis by stalling the translation of CYP17A1 mRNA.
    Article Snippet: Rabbit polyclonal anti-GFP (Cat. no. 50430-2-AP, 1:1000), rabbit polyclonal anti-p62 (Cat. no. 18420-1-AP, 1:10000), and rabbit polyclonal anti-Calnexin (Cat. no. 10427-2-AP, 1:20000) were purchased from Proteintech.

    Article Title: Zika virus disrupts steroidogenesis and impairs spermatogenesis by stalling the translation of CYP17A1 mRNA
    Article Snippet: Rabbit polyclonal anti-GFP (Cat. no. 50430-2-AP, 1:1000), rabbit polyclonal anti-p62 (Cat. no. 18420-1-AP, 1:10000), and rabbit polyclonal anti-Calnexin (Cat. no. 10427-2-AP, 1:20000) were purchased from Proteintech.

    Western Blot:

    Article Title: HIV-1 Vpr alters cellular transcription by targeting the PAF1 complex
    Article Snippet: Detection was achieved using Alexa Fluor 488-conjugated donkey anti-rabbit IgG (Invitrogen, A21206) and Alexa Fluor 647-conjugated goat anti-rat IgG (Invitrogen, A21247). .. For Western blot analysis, the primary antibodies used were: rabbit polyclonal anti-PAF1 (Proteintech, 15441-1-AP), rabbit polyclonal anti-REAF/RPRD2 (Eurogentec, Marno et al., 2014), rabbit monoclonal anti-IFITM3 (Insight Biotechnology), rabbit polyclonal anti-GAPDH (Abcam, ab9485), and rabbit polyclonal anti-GFP (Proteintech, 50430-2-AP). .. Secondary detection was carried out using horseradish peroxidase-conjugated goat anti-rabbit IgG (Invitrogen, A16096).

    Cell Differentiation:

    Article Title: Nutrient-sensing alteration leads to age-associated distortion of intestinal stem cell differentiating direction
    Article Snippet: .. Chicken polyclonal antiGFP (Abcam; Cat# ab13970); Rabbit Polyclonal anti-GFP (Proteintech; Cat# 50430-2-AP); Mouse Monoclonal anti-Rab7 (DSHB; Cat# Rab7); Chicken polyclonal anti--Galactosidase (Abcam; Cat# ab9361); Rabbit monoclonal anti-pAkt (Cell Signaling Technology; Cat# 4060); Rabbit monoclonal anti-p4E-BP1 (Cell Signaling Technology; Cat# 2855); Rabbit anti-phosphoHistone H3 (ser10) (Millipore; Cat# 06-570); Mouse monoclonal anti-Prospero (DSHB; Cat# Prospero (MR1A)); Mouse monoclonal anti-Delta (DSHB; Cat# c594.9b); Mouse monoclonal anti-Armadillo (DSHB; Cat# N2 7A1 ARMADILLO) were validated in "Du, G. et al. Peroxisome Elevation Induces Stem Cell Differentiation and Intestinal Epithelial Repair. .. Dev Cell 53, 169-184 e111 (2020)" Rabbit monoclonal anti-SOX9 (Abways Technology; Cat# CY5400) validation stated on supplier' website https://www.abways.cn/ ProductsStd/CY5400.html; Rabbit anti-HA (Cell Signaling Technology; Cat# 3724) validation stated on supplier' website https://www.cellsignal.cn/products/ primary-antibodies/ha-tag-c29f4-rabbit-mab/3724; Rabbit monoclonal anti-pAkt (Cell Signaling Technology; Cat# 4060) validation stated on supplier' website https://www.cellsignal.cn/ products/primary-antibodies/phospho-akt-ser473-d9e-xp-rabbit-mab/4060; Rabbit polyclonal anti-Lysozyme (DAKO; Cat# A0099) validation stated on supplier' website https://www.labome.com/product/Dako/ A0099.html; Mouse monoclonal anti-Chromogranin-A (Santa Cruz Biotechnology; Cat# sc-393941) validation stated on supplier' website https:// www.scbt.com/zh/p/chr-a-antibody-c-12; Rabbit monoclonal anti-SOX9 (Abcam; Cat# ab185966) validation stated on supplier' website https://www.abcam.cn/products/ primary-antibodies/sox9-antibody-epr14335-78-ab185966.html; Rabbit monoclonal anti-RAB7 (Abcam; Cat# ab137029) validation stated on supplier' website https://www.abcam.cn/products/ primary-antibodies/rab7-antibody-epr7589-ab137029.html; Mouse polyclonal anti-DCAMKL1 (Abcam; Cat# ab31704) validation stated on supplier' website https://www.abcam.cn/products/ primary-antibodies/dcamkl1-antibody-ab31704.html; Rabbit Polyclonal anti-Muc2 (Abcam; Cat# ab76774) validation stated on supplier' website https://www.abcam.cn/products/primaryantibodies/muc2-antibody-ab76774.html; Rabbit monoclonal anti-GAPDH (Cell Signaling Technology; Cat# 2118) validation stated on supplier' website https:// www.cellsignal.cn/products/primary-antibodies/gapdh-14c10-rabbit-mab/2118.

    Biomarker Discovery:

    Article Title: Nutrient-sensing alteration leads to age-associated distortion of intestinal stem cell differentiating direction
    Article Snippet: .. 3 nature portfolio | rep orting sum m ary April2023 Antibodies Antibodies used Validation Animals and other research organisms Policy information about studies involving animals; ARRIVE guidelines recommended for reporting animal research, and Sex and Gender in Research Laboratory animals Primary antibodies used in this study were listed as follows: Chicken polyclonal anti-GFP (Abcam; Cat# ab13970; RRID:AB_300798; 1:1000); Rabbit Polyclonal anti-GFP (Proteintech; Cat# 50430-2-AP; RRID:AB_11042881; 1:1000); Mouse anti-GFP (GENE CREATE; Cat# PA1-24030005, RRID:N/A; 1:1000); Rabbit monoclonal anti-SOX9 (Abways Technology; Cat# CY5400; RRID:AB_3099673; 1:50); Mouse Monoclonal anti-Rab7 (DSHB; Cat# Rab7; RRID:AB_2722471; 1:40); Chicken polyclonal anti--Galactosidase (Abcam; Cat# ab9361; RRID:AB_307210; 1:1000); Rabbit anti-HA (Cell Signaling Technology; Cat# 3724; RRID:AB_1549585; 1:1000); Rabbit monoclonal anti-pAkt (Cell Signaling Technology; Cat# 4060; RRID:AB_2315049; 1:100); Rabbit monoclonal anti-p4E-BP1 (Cell Signaling Technology; Cat# 2855; RRID:AB_560835; 1:500); Rabbit anti-phosphoHistone H3 (ser10) (Millipore; Cat# 06-570; RRID: AB_310177: 1:1000); Mouse monoclonal anti-Prospero (DSHB; Cat# Prospero (MR1A); RRID:AB_528440; 1:200); Mouse monoclonal anti-Delta (DSHB; Cat# c594.9b; RRID:AB_528194; 1:50); Mouse monoclonal anti-Armadillo (DSHB; Cat# N2 7A1 ARMADILLO; RRID:AB_528089; 1:50); Rabbit polyclonal anti-Lysozyme (DAKO; Cat# A0099; RRID:N/A; 1:1000); Mouse monoclonal anti-Chromogranin-A (Santa Cruz Biotechnology; Cat# sc-393941, RRID:AB_2801371; 1:500); Rabbit monoclonal anti-SOX9 (Abcam; Cat# ab185966; RRID:AB_2728660; 1:1000); Rabbit monoclonal anti-RAB7 (Abcam; Cat# ab137029; RRID:AB_2629474; 1:200); Mouse polyclonal anti-DCAMKL1 (Abcam; Cat# ab31704; RRID:AB_873537; 1:200); Rabbit Polyclonal anti-Muc2 (Abcam; Cat# ab76774; RRID:AB_1523987; 1:100); Rabbit monoclonal anti-GAPDH (Cell Signaling Technology; Cat# 2118; RRID:AB_561053; 1:2000). .. Other antibodies used in this paper are as follows: HRP-mouse anti-rabbit (jackson immunoResearch Labs; Cat# 211-032-171; RRID:AB_2339149; 1:10000); Goat anti-Mouse IgG (H+L) Cross-Adsorbed Secondary Antibody, Alexa FluorTM 568 (Thermo Fisher Scientific; Cat# A-11004; RRID:AB_2534072; 1:2000); Goat anti-Rabbit IgG (H+L) Cross-Adsorbed Secondary Antibody, Alexa FluorTM 488 (Thermo Fisher Scientific; Cat# A-11008; RRID:AB_143165; 1:2000); Goat anti-Rabbit IgG (H+L) Cross-Adsorbed Secondary Antibody, Alexa FluorTM 568 (Thermo Fisher Scientific; Cat# A-11011; RRID:AB_143157; 1:2000); Goat anti-Chicken IgY (H+L) Secondary Antibody, Alexa FluorTM 488 (Thermo Fisher Scientific; Cat# A-11039; RRID:AB_2534096; 1:2000); Goat anti-Rabbit IgG (H+L) Highly Cross-Adsorbed Secondary Antibody, Alexa FluorTM Plus 647 (Thermo Fisher Scientific; Cat# A32733; RRID:AB_2633282; 1:2000); Goat anti-Chicken IgY (H+L) CrossAdsorbed Secondary Antibody, Alexa FluorTM Plus 647 (Thermo Fisher Scientific; Cat# A32933; RRID:AB_2762845; 1:2000); Goat antiChicken IgY (H+L) Secondary Antibody, Alexa FluorTM 568 (Thermo Fisher Scientific; Cat# A-11041; RRID:AB_2534098; 1:2000); Goat anti-Mouse IgG (H+L) Cross-Adsorbed Secondary Antibody, Alexa FluorTM 488 (Thermo Fisher Scientific; Cat# A-11001; RRID:AB_2534069; 1:2000); Goat anti-Mouse IgG (H+L) Cross-Adsorbed Secondary Antibody, Alexa FluorTM 647 (Thermo Fisher Scientific; Cat# A-21235; RRID:AB_2535804; 1:2000).



    Similar Products

    96
    Proteintech anti gfp rabbit polyclonal antibody
    Anti Gfp Rabbit Polyclonal Antibody, supplied by Proteintech, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/rabbit+polyclonal+anti+gfp/GFP+tag+Antibody/pm41914604-278-0-11
    Average 96 stars, based on 1 article reviews
    anti gfp rabbit polyclonal antibody - by Bioz Stars, 2026-09
    96/100 stars
      Buy from Supplier

    86
    Lifetech Scientific Corporation rabbit polyclonal anti gfp
    a , b , Fluorescence microscopy analysis of ESB2 12myc localization following ESB3 and ESAP1 RNAi ( a , b ), 6myc ESB3 localization following ESB2 and ESAP1 RNAi ( b ) and 6myc ESAP1 localization following ESB2 and ESB3 RNAi ( b ). c , ESB2, ESB3 and ESAP1 protein levels following VEX2, ESB2, ESB3 and ESAP1 RNAi. The values were derived from protein blotting analysis of three biological replicates per cell line and are represented in a floating bar graph in which the box spans between minimum and maximum values, the centre line is the median, and all datapoints are depicted. Two-tailed unpaired t -tests were applied; NS, non-significant; ** P < 0.01. d – i , Fluorescence microscopy analysis of Pol-I localization following VEX2, ESB1, ESB2, ESB3 and ESAP1 knockdown ( d , e ); ESB1 12myc , ESB2 12myc , 6myc ESB3 and 6myc ESAP1 localization following VEX2 knockdown ( f , g ); 6myc VEX2 localization following ESB2, ESB3 and ESAP1 knockdown ( h , i ). The graphs in b , e , g and i depict mean values of two biological replicates; >100 G1 cells per condition were analysed; all analyses were performed at 24 h post-induction. j , Heatmap summarizing the microscopy analyses; C1, clone 1; C2, clone 2. k , Diagram depicting the complex network of co-dependencies at the ESB and interface with the SLAB. The direction of the arrows indicates that the protein upstream is required for the localization of the protein downstream to its corresponding nuclear compartment. l , Fluorescence microscopy colocalization analysis of GFP-myc ESB2 and 6HA ESB3. The images in a , d (left), h and l were acquired using a Zeiss AxioObserver, whereas the images in d (right) and f were acquired using a Zeiss LSM980 Airyscan 2. All correspond to 3D projections by brightest intensity of 0.1-μm stacks. DNA was stained with DAPI (cyan or grey). Scale bars, 2 or 5 μm. m , Immunoprecipitation of GFP-myc ESB2 using GFP nanobody-coated beads followed by protein-blot analysis using an anti-HA antibody to detect the prey ( 6HA ESB3) and <t>an</t> <t>anti-GFP</t> antibody to detect the bait ( GFP-myc ESB2). IP, immunoprecipitation. The protein blots are representative of four independent experiments; a 6HA ESB3 single tagged cell line was used as a negative control. n , Violin plots depicting a comparative transcriptomic analysis between VEX2 ( n = 3), ESB2 ( n = 5), ESB3 ( n = 3) and ESAP1 ( n = 3) RNAi cell lines for ‘active’ ESAGs ; n values correspond to biological replicates. log 2 (FC), fold change in transcript abundance between RNAi (24 h post-induction) and the parental cell line. The violins span between minimum and maximum values, centre lines correspond to the mean and all datapoints are shown. Statistical significance was determined by one-way ANOVA followed by Tukey’s multiple-comparison test; **** P < 0.0001. Diagram in m created in BioRender; Faria, J. https://BioRender.com/oia6hdu (2026).
    Rabbit Polyclonal Anti Gfp, supplied by Lifetech Scientific Corporation, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/rabbit+polyclonal+anti+gfp/anti+gfp+polyclonal+rabbit/pmc13056571-401-24-27
    Average 86 stars, based on 1 article reviews
    rabbit polyclonal anti gfp - by Bioz Stars, 2026-09
    86/100 stars
      Buy from Supplier

    gfp  (OriGene)
    94
    OriGene gfp
    Localization of host SNARE proteins at the Plasmodium PVM during liver-stage infection. ( A – C ) Confocal live cell imaging of <t>GFP-tagged</t> SNARE proteins VAMP7-GFP ( A ), VAMP8-GFP ( B ), and Stx7-GFP ( C ) in P. berghei -infected HeLa cells expressing mCherry (parasite cytoplasm, red) at 6, 24, and 48 hpi. SNARE localization is shown in green. ( D – G ) Immunofluorescence analysis of Vti1B ( D ), VAMP7 ( E ), VAMP8 ( F ), and Stx7 ( G ) in HeLa cells fixed at 0.5, 1, and 1.5 hpi. SNAREs were detected <t>with</t> <t>anti-GFP</t> (green) or anti-Vti1B (green); the PVM was labeled with anti-UIS4 (red); and DAPI (blue) stained nuclei. ( H ) Localization of SNARE <t>proteins</t> <t>(anti-Vti1B/anti-GFP</t> in green) with the PVM marker UIS4 (red) at 24 hpi, visualized by expansion microscopy (5-fold expanded). Merged channels (yellow) highlight PVM-SNARE protein association. Nuclei were counterstained with DAPI (blue). Scale bars: 5 μm ( A – G ); 10 μm ( H ).
    Gfp, supplied by OriGene, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/rabbit+polyclonal+anti+gfp/Rabbit+Polyclonal+Anti-GFP+Antibody/pmc13072298-121-59-63
    Average 94 stars, based on 1 article reviews
    gfp - by Bioz Stars, 2026-09
    94/100 stars
      Buy from Supplier

    96
    TaKaRa rabbit anti gfp 632592
    Localization of host SNARE proteins at the Plasmodium PVM during liver-stage infection. ( A – C ) Confocal live cell imaging of <t>GFP-tagged</t> SNARE proteins VAMP7-GFP ( A ), VAMP8-GFP ( B ), and Stx7-GFP ( C ) in P. berghei -infected HeLa cells expressing mCherry (parasite cytoplasm, red) at 6, 24, and 48 hpi. SNARE localization is shown in green. ( D – G ) Immunofluorescence analysis of Vti1B ( D ), VAMP7 ( E ), VAMP8 ( F ), and Stx7 ( G ) in HeLa cells fixed at 0.5, 1, and 1.5 hpi. SNAREs were detected <t>with</t> <t>anti-GFP</t> (green) or anti-Vti1B (green); the PVM was labeled with anti-UIS4 (red); and DAPI (blue) stained nuclei. ( H ) Localization of SNARE <t>proteins</t> <t>(anti-Vti1B/anti-GFP</t> in green) with the PVM marker UIS4 (red) at 24 hpi, visualized by expansion microscopy (5-fold expanded). Merged channels (yellow) highlight PVM-SNARE protein association. Nuclei were counterstained with DAPI (blue). Scale bars: 5 μm ( A – G ); 10 μm ( H ).
    Rabbit Anti Gfp 632592, supplied by TaKaRa, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/rabbit+polyclonal+anti+gfp/Living+Colors+Full-Length+GFP+Polyclonal+Antibody/10__1038_slash_s44318___026___00755___7-292-0-17
    Average 96 stars, based on 1 article reviews
    rabbit anti gfp 632592 - by Bioz Stars, 2026-09
    96/100 stars
      Buy from Supplier

    97
    Cell Signaling Technology Inc gfp rabbit polyclonal antibody
    Localization of host SNARE proteins at the Plasmodium PVM during liver-stage infection. ( A – C ) Confocal live cell imaging of <t>GFP-tagged</t> SNARE proteins VAMP7-GFP ( A ), VAMP8-GFP ( B ), and Stx7-GFP ( C ) in P. berghei -infected HeLa cells expressing mCherry (parasite cytoplasm, red) at 6, 24, and 48 hpi. SNARE localization is shown in green. ( D – G ) Immunofluorescence analysis of Vti1B ( D ), VAMP7 ( E ), VAMP8 ( F ), and Stx7 ( G ) in HeLa cells fixed at 0.5, 1, and 1.5 hpi. SNAREs were detected <t>with</t> <t>anti-GFP</t> (green) or anti-Vti1B (green); the PVM was labeled with anti-UIS4 (red); and DAPI (blue) stained nuclei. ( H ) Localization of SNARE <t>proteins</t> <t>(anti-Vti1B/anti-GFP</t> in green) with the PVM marker UIS4 (red) at 24 hpi, visualized by expansion microscopy (5-fold expanded). Merged channels (yellow) highlight PVM-SNARE protein association. Nuclei were counterstained with DAPI (blue). Scale bars: 5 μm ( A – G ); 10 μm ( H ).
    Gfp Rabbit Polyclonal Antibody, supplied by Cell Signaling Technology Inc, used in various techniques. Bioz Stars score: 97/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/rabbit+polyclonal+anti+gfp/GFP+Antibody/pm41826677-241-12-17
    Average 97 stars, based on 1 article reviews
    gfp rabbit polyclonal antibody - by Bioz Stars, 2026-09
    97/100 stars
      Buy from Supplier

    86
    Fisher Scientific rabbit polyclonal anti gfp
    Localization of host SNARE proteins at the Plasmodium PVM during liver-stage infection. ( A – C ) Confocal live cell imaging of <t>GFP-tagged</t> SNARE proteins VAMP7-GFP ( A ), VAMP8-GFP ( B ), and Stx7-GFP ( C ) in P. berghei -infected HeLa cells expressing mCherry (parasite cytoplasm, red) at 6, 24, and 48 hpi. SNARE localization is shown in green. ( D – G ) Immunofluorescence analysis of Vti1B ( D ), VAMP7 ( E ), VAMP8 ( F ), and Stx7 ( G ) in HeLa cells fixed at 0.5, 1, and 1.5 hpi. SNAREs were detected <t>with</t> <t>anti-GFP</t> (green) or anti-Vti1B (green); the PVM was labeled with anti-UIS4 (red); and DAPI (blue) stained nuclei. ( H ) Localization of SNARE <t>proteins</t> <t>(anti-Vti1B/anti-GFP</t> in green) with the PVM marker UIS4 (red) at 24 hpi, visualized by expansion microscopy (5-fold expanded). Merged channels (yellow) highlight PVM-SNARE protein association. Nuclei were counterstained with DAPI (blue). Scale bars: 5 μm ( A – G ); 10 μm ( H ).
    Rabbit Polyclonal Anti Gfp, supplied by Fisher Scientific, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/rabbit+polyclonal+anti+gfp/anti+igg+rabbit/pm41825648-91-109-112
    Average 86 stars, based on 1 article reviews
    rabbit polyclonal anti gfp - by Bioz Stars, 2026-09
    86/100 stars
      Buy from Supplier

    86
    Fisher Scientific polyclonal rabbit anti gfp
    Localization of host SNARE proteins at the Plasmodium PVM during liver-stage infection. ( A – C ) Confocal live cell imaging of <t>GFP-tagged</t> SNARE proteins VAMP7-GFP ( A ), VAMP8-GFP ( B ), and Stx7-GFP ( C ) in P. berghei -infected HeLa cells expressing mCherry (parasite cytoplasm, red) at 6, 24, and 48 hpi. SNARE localization is shown in green. ( D – G ) Immunofluorescence analysis of Vti1B ( D ), VAMP7 ( E ), VAMP8 ( F ), and Stx7 ( G ) in HeLa cells fixed at 0.5, 1, and 1.5 hpi. SNAREs were detected <t>with</t> <t>anti-GFP</t> (green) or anti-Vti1B (green); the PVM was labeled with anti-UIS4 (red); and DAPI (blue) stained nuclei. ( H ) Localization of SNARE <t>proteins</t> <t>(anti-Vti1B/anti-GFP</t> in green) with the PVM marker UIS4 (red) at 24 hpi, visualized by expansion microscopy (5-fold expanded). Merged channels (yellow) highlight PVM-SNARE protein association. Nuclei were counterstained with DAPI (blue). Scale bars: 5 μm ( A – G ); 10 μm ( H ).
    Polyclonal Rabbit Anti Gfp, supplied by Fisher Scientific, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/rabbit+polyclonal+anti+gfp/anti+igg+rabbit/pm41825648-108-5-8
    Average 86 stars, based on 1 article reviews
    polyclonal rabbit anti gfp - by Bioz Stars, 2026-09
    86/100 stars
      Buy from Supplier

    93
    OriGene rabbit anti gfp
    Localization of host SNARE proteins at the Plasmodium PVM during liver-stage infection. ( A – C ) Confocal live cell imaging of <t>GFP-tagged</t> SNARE proteins VAMP7-GFP ( A ), VAMP8-GFP ( B ), and Stx7-GFP ( C ) in P. berghei -infected HeLa cells expressing mCherry (parasite cytoplasm, red) at 6, 24, and 48 hpi. SNARE localization is shown in green. ( D – G ) Immunofluorescence analysis of Vti1B ( D ), VAMP7 ( E ), VAMP8 ( F ), and Stx7 ( G ) in HeLa cells fixed at 0.5, 1, and 1.5 hpi. SNAREs were detected <t>with</t> <t>anti-GFP</t> (green) or anti-Vti1B (green); the PVM was labeled with anti-UIS4 (red); and DAPI (blue) stained nuclei. ( H ) Localization of SNARE <t>proteins</t> <t>(anti-Vti1B/anti-GFP</t> in green) with the PVM marker UIS4 (red) at 24 hpi, visualized by expansion microscopy (5-fold expanded). Merged channels (yellow) highlight PVM-SNARE protein association. Nuclei were counterstained with DAPI (blue). Scale bars: 5 μm ( A – G ); 10 μm ( H ).
    Rabbit Anti Gfp, supplied by OriGene, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/rabbit+polyclonal+anti+gfp/GFP+Rabbit+Polyclonal+Antibody/10__1016_slash_j__cub__2026__02__058-332-64-67
    Average 93 stars, based on 1 article reviews
    rabbit anti gfp - by Bioz Stars, 2026-09
    93/100 stars
      Buy from Supplier

    Image Search Results


    a , b , Fluorescence microscopy analysis of ESB2 12myc localization following ESB3 and ESAP1 RNAi ( a , b ), 6myc ESB3 localization following ESB2 and ESAP1 RNAi ( b ) and 6myc ESAP1 localization following ESB2 and ESB3 RNAi ( b ). c , ESB2, ESB3 and ESAP1 protein levels following VEX2, ESB2, ESB3 and ESAP1 RNAi. The values were derived from protein blotting analysis of three biological replicates per cell line and are represented in a floating bar graph in which the box spans between minimum and maximum values, the centre line is the median, and all datapoints are depicted. Two-tailed unpaired t -tests were applied; NS, non-significant; ** P < 0.01. d – i , Fluorescence microscopy analysis of Pol-I localization following VEX2, ESB1, ESB2, ESB3 and ESAP1 knockdown ( d , e ); ESB1 12myc , ESB2 12myc , 6myc ESB3 and 6myc ESAP1 localization following VEX2 knockdown ( f , g ); 6myc VEX2 localization following ESB2, ESB3 and ESAP1 knockdown ( h , i ). The graphs in b , e , g and i depict mean values of two biological replicates; >100 G1 cells per condition were analysed; all analyses were performed at 24 h post-induction. j , Heatmap summarizing the microscopy analyses; C1, clone 1; C2, clone 2. k , Diagram depicting the complex network of co-dependencies at the ESB and interface with the SLAB. The direction of the arrows indicates that the protein upstream is required for the localization of the protein downstream to its corresponding nuclear compartment. l , Fluorescence microscopy colocalization analysis of GFP-myc ESB2 and 6HA ESB3. The images in a , d (left), h and l were acquired using a Zeiss AxioObserver, whereas the images in d (right) and f were acquired using a Zeiss LSM980 Airyscan 2. All correspond to 3D projections by brightest intensity of 0.1-μm stacks. DNA was stained with DAPI (cyan or grey). Scale bars, 2 or 5 μm. m , Immunoprecipitation of GFP-myc ESB2 using GFP nanobody-coated beads followed by protein-blot analysis using an anti-HA antibody to detect the prey ( 6HA ESB3) and an anti-GFP antibody to detect the bait ( GFP-myc ESB2). IP, immunoprecipitation. The protein blots are representative of four independent experiments; a 6HA ESB3 single tagged cell line was used as a negative control. n , Violin plots depicting a comparative transcriptomic analysis between VEX2 ( n = 3), ESB2 ( n = 5), ESB3 ( n = 3) and ESAP1 ( n = 3) RNAi cell lines for ‘active’ ESAGs ; n values correspond to biological replicates. log 2 (FC), fold change in transcript abundance between RNAi (24 h post-induction) and the parental cell line. The violins span between minimum and maximum values, centre lines correspond to the mean and all datapoints are shown. Statistical significance was determined by one-way ANOVA followed by Tukey’s multiple-comparison test; **** P < 0.0001. Diagram in m created in BioRender; Faria, J. https://BioRender.com/oia6hdu (2026).

    Journal: Nature Microbiology

    Article Title: Specialized RNA decay fine-tunes monogenic antigen expression in Trypanosoma brucei

    doi: 10.1038/s41564-026-02289-4

    Figure Lengend Snippet: a , b , Fluorescence microscopy analysis of ESB2 12myc localization following ESB3 and ESAP1 RNAi ( a , b ), 6myc ESB3 localization following ESB2 and ESAP1 RNAi ( b ) and 6myc ESAP1 localization following ESB2 and ESB3 RNAi ( b ). c , ESB2, ESB3 and ESAP1 protein levels following VEX2, ESB2, ESB3 and ESAP1 RNAi. The values were derived from protein blotting analysis of three biological replicates per cell line and are represented in a floating bar graph in which the box spans between minimum and maximum values, the centre line is the median, and all datapoints are depicted. Two-tailed unpaired t -tests were applied; NS, non-significant; ** P < 0.01. d – i , Fluorescence microscopy analysis of Pol-I localization following VEX2, ESB1, ESB2, ESB3 and ESAP1 knockdown ( d , e ); ESB1 12myc , ESB2 12myc , 6myc ESB3 and 6myc ESAP1 localization following VEX2 knockdown ( f , g ); 6myc VEX2 localization following ESB2, ESB3 and ESAP1 knockdown ( h , i ). The graphs in b , e , g and i depict mean values of two biological replicates; >100 G1 cells per condition were analysed; all analyses were performed at 24 h post-induction. j , Heatmap summarizing the microscopy analyses; C1, clone 1; C2, clone 2. k , Diagram depicting the complex network of co-dependencies at the ESB and interface with the SLAB. The direction of the arrows indicates that the protein upstream is required for the localization of the protein downstream to its corresponding nuclear compartment. l , Fluorescence microscopy colocalization analysis of GFP-myc ESB2 and 6HA ESB3. The images in a , d (left), h and l were acquired using a Zeiss AxioObserver, whereas the images in d (right) and f were acquired using a Zeiss LSM980 Airyscan 2. All correspond to 3D projections by brightest intensity of 0.1-μm stacks. DNA was stained with DAPI (cyan or grey). Scale bars, 2 or 5 μm. m , Immunoprecipitation of GFP-myc ESB2 using GFP nanobody-coated beads followed by protein-blot analysis using an anti-HA antibody to detect the prey ( 6HA ESB3) and an anti-GFP antibody to detect the bait ( GFP-myc ESB2). IP, immunoprecipitation. The protein blots are representative of four independent experiments; a 6HA ESB3 single tagged cell line was used as a negative control. n , Violin plots depicting a comparative transcriptomic analysis between VEX2 ( n = 3), ESB2 ( n = 5), ESB3 ( n = 3) and ESAP1 ( n = 3) RNAi cell lines for ‘active’ ESAGs ; n values correspond to biological replicates. log 2 (FC), fold change in transcript abundance between RNAi (24 h post-induction) and the parental cell line. The violins span between minimum and maximum values, centre lines correspond to the mean and all datapoints are shown. Statistical significance was determined by one-way ANOVA followed by Tukey’s multiple-comparison test; **** P < 0.0001. Diagram in m created in BioRender; Faria, J. https://BioRender.com/oia6hdu (2026).

    Article Snippet: The following primary antibodies were used: mouse α-myc (Millipore, clone 4A6, 1:10,000), mouse anti-Ty (BB2, Invitrogen, 1:5,000), mouse monoclonal anti-HA (Sigma, clone HA-7, 1:2,000), rabbit polyclonal anti-GFP (LifeTech, 1:2,000) and mouse α-EF1α (Millipore, clone CBP-KK1, 1:30,000).

    Techniques: Fluorescence, Microscopy, Derivative Assay, Two Tailed Test, Knockdown, Staining, Immunoprecipitation, Negative Control, Comparison

    Localization of host SNARE proteins at the Plasmodium PVM during liver-stage infection. ( A – C ) Confocal live cell imaging of GFP-tagged SNARE proteins VAMP7-GFP ( A ), VAMP8-GFP ( B ), and Stx7-GFP ( C ) in P. berghei -infected HeLa cells expressing mCherry (parasite cytoplasm, red) at 6, 24, and 48 hpi. SNARE localization is shown in green. ( D – G ) Immunofluorescence analysis of Vti1B ( D ), VAMP7 ( E ), VAMP8 ( F ), and Stx7 ( G ) in HeLa cells fixed at 0.5, 1, and 1.5 hpi. SNAREs were detected with anti-GFP (green) or anti-Vti1B (green); the PVM was labeled with anti-UIS4 (red); and DAPI (blue) stained nuclei. ( H ) Localization of SNARE proteins (anti-Vti1B/anti-GFP in green) with the PVM marker UIS4 (red) at 24 hpi, visualized by expansion microscopy (5-fold expanded). Merged channels (yellow) highlight PVM-SNARE protein association. Nuclei were counterstained with DAPI (blue). Scale bars: 5 μm ( A – G ); 10 μm ( H ).

    Journal: Cells

    Article Title: Host SNARE Proteins Mediate Lysosome and PVM Fusion to Support Plasmodium Liver Infection

    doi: 10.3390/cells15070584

    Figure Lengend Snippet: Localization of host SNARE proteins at the Plasmodium PVM during liver-stage infection. ( A – C ) Confocal live cell imaging of GFP-tagged SNARE proteins VAMP7-GFP ( A ), VAMP8-GFP ( B ), and Stx7-GFP ( C ) in P. berghei -infected HeLa cells expressing mCherry (parasite cytoplasm, red) at 6, 24, and 48 hpi. SNARE localization is shown in green. ( D – G ) Immunofluorescence analysis of Vti1B ( D ), VAMP7 ( E ), VAMP8 ( F ), and Stx7 ( G ) in HeLa cells fixed at 0.5, 1, and 1.5 hpi. SNAREs were detected with anti-GFP (green) or anti-Vti1B (green); the PVM was labeled with anti-UIS4 (red); and DAPI (blue) stained nuclei. ( H ) Localization of SNARE proteins (anti-Vti1B/anti-GFP in green) with the PVM marker UIS4 (red) at 24 hpi, visualized by expansion microscopy (5-fold expanded). Merged channels (yellow) highlight PVM-SNARE protein association. Nuclei were counterstained with DAPI (blue). Scale bars: 5 μm ( A – G ); 10 μm ( H ).

    Article Snippet: The cells were then incubated in 10% FCS/PBS for 1 h, at room temperature with primary antibodies: Vti1B (mouse mAb 1:1000 (1:500 PS-ExM), BD Transduction Laboratories #611404, Allschwil, Switzerland), UIS4 (rabbit 1:1000, P. sinnis ; chicken 1:10000, Proteogenix, Schiltigheim, France), hLAMP1 (mouse mAb 1:1000 (1:500 PS-ExM), DSHB H4A3 (Iowa City, USA); rabbit pAb 1:1000, Cell Signaling #9091, Allschwill, Switzerland), GFP (rabbit pAb 1:1000, Origene TA100030, Herford, Germany; mouse mAb 1:1000, Roche AQ160, Basel, Switzerland), and α-tubulin (guinea pig pAb 1:500, ABCD AA345, Geneva, Switzerland).

    Techniques: Infection, Live Cell Imaging, Expressing, Immunofluorescence, Labeling, Staining, Marker, Microscopy