cancer antigen Search Results


93
Monobind ca15 3 accubind reagent kit
Serum and salivary <t> CA15-3 </t> mean concentration ± standard deviation for healthy controls and patients with breast cancer.
Ca15 3 Accubind Reagent Kit, supplied by Monobind, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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96
OriGene hydration
Serum and salivary <t> CA15-3 </t> mean concentration ± standard deviation for healthy controls and patients with breast cancer.
Hydration, supplied by OriGene, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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92
Proteintech oip5
Genes regulated by Taxotere ® and docetaxel-loaded solid lipid nanoparticles were confirmed by quantitative polymerase chain reaction and immunoblotting. Notes: Cell cycle-related genes of E2F8 ( A ) and <t>OIP5</t> ( B ), proliferation-related genes of NASP ( C ) and SOD2 ( D ), and apoptosis-related genes of PDCD4 ( E ) and PIK3R2 ( F ) were chosen for detection by quantitative polymerase chain reaction and immunoblotting. In quantitative polymerase chain reaction detection, mock-treated cells were set as the control and samples were normalized with the control. In immunoblotting detection, β-actin was used as the loading control. Abbreviations: BSN, blank solid lipid nanoparticle; DSN, docetaxel-loaded solid lipid nanoparticle; GLU, glucose; qPCR, quantitative polymerase chain reaction; TAX, Taxotere.
Oip5, supplied by Proteintech, used in various techniques. Bioz Stars score: 92/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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94
Boster Bio muc1
Genes regulated by Taxotere ® and docetaxel-loaded solid lipid nanoparticles were confirmed by quantitative polymerase chain reaction and immunoblotting. Notes: Cell cycle-related genes of E2F8 ( A ) and <t>OIP5</t> ( B ), proliferation-related genes of NASP ( C ) and SOD2 ( D ), and apoptosis-related genes of PDCD4 ( E ) and PIK3R2 ( F ) were chosen for detection by quantitative polymerase chain reaction and immunoblotting. In quantitative polymerase chain reaction detection, mock-treated cells were set as the control and samples were normalized with the control. In immunoblotting detection, β-actin was used as the loading control. Abbreviations: BSN, blank solid lipid nanoparticle; DSN, docetaxel-loaded solid lipid nanoparticle; GLU, glucose; qPCR, quantitative polymerase chain reaction; TAX, Taxotere.
Muc1, supplied by Boster Bio, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Proteintech alkbh3 polyclonal antibody
Genes regulated by Taxotere ® and docetaxel-loaded solid lipid nanoparticles were confirmed by quantitative polymerase chain reaction and immunoblotting. Notes: Cell cycle-related genes of E2F8 ( A ) and <t>OIP5</t> ( B ), proliferation-related genes of NASP ( C ) and SOD2 ( D ), and apoptosis-related genes of PDCD4 ( E ) and PIK3R2 ( F ) were chosen for detection by quantitative polymerase chain reaction and immunoblotting. In quantitative polymerase chain reaction detection, mock-treated cells were set as the control and samples were normalized with the control. In immunoblotting detection, β-actin was used as the loading control. Abbreviations: BSN, blank solid lipid nanoparticle; DSN, docetaxel-loaded solid lipid nanoparticle; GLU, glucose; qPCR, quantitative polymerase chain reaction; TAX, Taxotere.
Alkbh3 Polyclonal Antibody, supplied by Proteintech, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Proteintech rabbit anti hormad1 antibody
<t>HORMAD1</t> is phosphorylated at Ser 375 on unsynapsed chromosomes.
Rabbit Anti Hormad1 Antibody, supplied by Proteintech, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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92
Boster Bio microfluidic chip
<t>HORMAD1</t> is phosphorylated at Ser 375 on unsynapsed chromosomes.
Microfluidic Chip, supplied by Boster Bio, used in various techniques. Bioz Stars score: 92/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Proteintech horseradish peroxidase hrp conjugated antibody
<t>HORMAD1</t> is phosphorylated at Ser 375 on unsynapsed chromosomes.
Horseradish Peroxidase Hrp Conjugated Antibody, supplied by Proteintech, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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93
Proteintech cep290 proteintech 22490 1 ap
<t>HORMAD1</t> is phosphorylated at Ser 375 on unsynapsed chromosomes.
Cep290 Proteintech 22490 1 Ap, supplied by Proteintech, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Proteintech membranes
<t>HORMAD1</t> is phosphorylated at Ser 375 on unsynapsed chromosomes.
Membranes, supplied by Proteintech, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Proteintech rabbit anti akap3
<t>HORMAD1</t> is phosphorylated at Ser 375 on unsynapsed chromosomes.
Rabbit Anti Akap3, supplied by Proteintech, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Proteintech 11063 1 ap
<t>HORMAD1</t> is phosphorylated at Ser 375 on unsynapsed chromosomes.
11063 1 Ap, supplied by Proteintech, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Image Search Results


Serum and salivary  CA15-3  mean concentration ± standard deviation for healthy controls and patients with breast cancer.

Journal: Molecular and Clinical Oncology

Article Title: Correlation between salivary and serum CA15-3 concentrations in patients with breast cancer

doi: 10.3892/mco.2020.2062

Figure Lengend Snippet: Serum and salivary CA15-3 mean concentration ± standard deviation for healthy controls and patients with breast cancer.

Article Snippet: ELISA reactions were performed using the CA15-3 AccuBind ™ reagent kit (Lake Forest, California, United States of America) for use in BEST 2000 ® equipment (Biokit S.A.), according to the manufacturer's instructions.

Techniques: Concentration Assay, Standard Deviation, Enzyme-linked Immunosorbent Assay

 CA15-3  mean concentration values ± standard deviation according to breast cancer molecular subtype.

Journal: Molecular and Clinical Oncology

Article Title: Correlation between salivary and serum CA15-3 concentrations in patients with breast cancer

doi: 10.3892/mco.2020.2062

Figure Lengend Snippet: CA15-3 mean concentration values ± standard deviation according to breast cancer molecular subtype.

Article Snippet: ELISA reactions were performed using the CA15-3 AccuBind ™ reagent kit (Lake Forest, California, United States of America) for use in BEST 2000 ® equipment (Biokit S.A.), according to the manufacturer's instructions.

Techniques: Concentration Assay, Standard Deviation, Enzyme-linked Immunosorbent Assay

Mean  CA15-3  concentration values ± standard deviation according to TNM stage.

Journal: Molecular and Clinical Oncology

Article Title: Correlation between salivary and serum CA15-3 concentrations in patients with breast cancer

doi: 10.3892/mco.2020.2062

Figure Lengend Snippet: Mean CA15-3 concentration values ± standard deviation according to TNM stage.

Article Snippet: ELISA reactions were performed using the CA15-3 AccuBind ™ reagent kit (Lake Forest, California, United States of America) for use in BEST 2000 ® equipment (Biokit S.A.), according to the manufacturer's instructions.

Techniques: Concentration Assay, Standard Deviation, Enzyme-linked Immunosorbent Assay

Correlations of serum and salivary CA15-3. (A) Correlation curve of serum CA15-3 and salivary CA15-3 as detected by ELISA in patients with breast cancer (r=0.56; P=<0.01). (B) Correlation curve of serum CA15-3 and salivary CA15-3 as detected by CLIA in patients with breast cancer (r=0.36; P=0.19). (C) Correlation curve of serum CA15-3 and salivary CA15-3 as detected by ELISA in healthy controls (r=0.18; P=0.35). (D) Correlation curve of serum CA15-3 and salivary CA15-3 as detected by CLIA in healthy controls (r=0.08; P=0.77). ELISA, enzyme-linked immunosorbent assay; CLIA, chemiluminescence assay; CA15-3, cancer antigen 15-3.

Journal: Molecular and Clinical Oncology

Article Title: Correlation between salivary and serum CA15-3 concentrations in patients with breast cancer

doi: 10.3892/mco.2020.2062

Figure Lengend Snippet: Correlations of serum and salivary CA15-3. (A) Correlation curve of serum CA15-3 and salivary CA15-3 as detected by ELISA in patients with breast cancer (r=0.56; P=<0.01). (B) Correlation curve of serum CA15-3 and salivary CA15-3 as detected by CLIA in patients with breast cancer (r=0.36; P=0.19). (C) Correlation curve of serum CA15-3 and salivary CA15-3 as detected by ELISA in healthy controls (r=0.18; P=0.35). (D) Correlation curve of serum CA15-3 and salivary CA15-3 as detected by CLIA in healthy controls (r=0.08; P=0.77). ELISA, enzyme-linked immunosorbent assay; CLIA, chemiluminescence assay; CA15-3, cancer antigen 15-3.

Article Snippet: ELISA reactions were performed using the CA15-3 AccuBind ™ reagent kit (Lake Forest, California, United States of America) for use in BEST 2000 ® equipment (Biokit S.A.), according to the manufacturer's instructions.

Techniques: Enzyme-linked Immunosorbent Assay, Chemiluminescence Immunoassay

Genes regulated by Taxotere ® and docetaxel-loaded solid lipid nanoparticles were confirmed by quantitative polymerase chain reaction and immunoblotting. Notes: Cell cycle-related genes of E2F8 ( A ) and OIP5 ( B ), proliferation-related genes of NASP ( C ) and SOD2 ( D ), and apoptosis-related genes of PDCD4 ( E ) and PIK3R2 ( F ) were chosen for detection by quantitative polymerase chain reaction and immunoblotting. In quantitative polymerase chain reaction detection, mock-treated cells were set as the control and samples were normalized with the control. In immunoblotting detection, β-actin was used as the loading control. Abbreviations: BSN, blank solid lipid nanoparticle; DSN, docetaxel-loaded solid lipid nanoparticle; GLU, glucose; qPCR, quantitative polymerase chain reaction; TAX, Taxotere.

Journal: International Journal of Nanomedicine

Article Title: Docetaxel-loaded solid lipid nanoparticles suppress breast cancer cells growth with reduced myelosuppression toxicity

doi: 10.2147/IJN.S70919

Figure Lengend Snippet: Genes regulated by Taxotere ® and docetaxel-loaded solid lipid nanoparticles were confirmed by quantitative polymerase chain reaction and immunoblotting. Notes: Cell cycle-related genes of E2F8 ( A ) and OIP5 ( B ), proliferation-related genes of NASP ( C ) and SOD2 ( D ), and apoptosis-related genes of PDCD4 ( E ) and PIK3R2 ( F ) were chosen for detection by quantitative polymerase chain reaction and immunoblotting. In quantitative polymerase chain reaction detection, mock-treated cells were set as the control and samples were normalized with the control. In immunoblotting detection, β-actin was used as the loading control. Abbreviations: BSN, blank solid lipid nanoparticle; DSN, docetaxel-loaded solid lipid nanoparticle; GLU, glucose; qPCR, quantitative polymerase chain reaction; TAX, Taxotere.

Article Snippet: Primary antibodies of rabbit anti-β-actin, E2f8, MRE11A, ERBB3, IGFBP6, ATF3, CCNG2, SOD2, IGFBP3, CADM1, PDCD4, GADD45A, and MKI67 were purchased from Beijing Biosynthesis Technology Co., Ltd., (Beijing, People’s Republic of China), rabbit anti-MCM6, OIP5, and NASP were purchased from Proteintech Group, Inc., (Chicago, IL, USA), rabbit anti-FAM172A and MYB were purchased from Abgent, Inc. (San Diego, CA, USA) and rabbit anti-ATRX was purchased from GeneTex, Inc. (Irvine, CA, USA).

Techniques: Real-time Polymerase Chain Reaction, Western Blot, Control

Primers used for quantitative polymerase chain reaction

Journal: International Journal of Nanomedicine

Article Title: Docetaxel-loaded solid lipid nanoparticles suppress breast cancer cells growth with reduced myelosuppression toxicity

doi: 10.2147/IJN.S70919

Figure Lengend Snippet: Primers used for quantitative polymerase chain reaction

Article Snippet: Primary antibodies of rabbit anti-β-actin, E2f8, MRE11A, ERBB3, IGFBP6, ATF3, CCNG2, SOD2, IGFBP3, CADM1, PDCD4, GADD45A, and MKI67 were purchased from Beijing Biosynthesis Technology Co., Ltd., (Beijing, People’s Republic of China), rabbit anti-MCM6, OIP5, and NASP were purchased from Proteintech Group, Inc., (Chicago, IL, USA), rabbit anti-FAM172A and MYB were purchased from Abgent, Inc. (San Diego, CA, USA) and rabbit anti-ATRX was purchased from GeneTex, Inc. (Irvine, CA, USA).

Techniques: Sequencing

HORMAD1 is phosphorylated at Ser 375 on unsynapsed chromosomes.

Journal: PLoS Genetics

Article Title: Phosphorylation of Chromosome Core Components May Serve as Axis Marks for the Status of Chromosomal Events during Mammalian Meiosis

doi: 10.1371/journal.pgen.1002485

Figure Lengend Snippet: HORMAD1 is phosphorylated at Ser 375 on unsynapsed chromosomes.

Article Snippet: The following antibodies were also used: guinea pig anti-SYCP2, anti-SMC1β, anti-STAG3, anti-REC8 and anti-SYCP1 antibodies ; guinea pig anti-HORMAD1antibody ; rabbit anti-HORMAD1 antibody (13917-1-AP) from Proteintech Group; rabbit anti-pS/T-Q antibody (#2851) from Cell Signaling Technology; rabbit anti-pS1083 antibodies (A300-480A and IHC-00070) from Bethyl Laboratories; mouse and rabbit anti-γH2AX antibodies (#05-636 and #07-164) from Millipore; mouse anti-SYCP3 (sc-74569), rabbit anti-HORMAD2 (sc-82192), goat anti-SMC3 (sc-8198) and goat anti-ATR (sc-1887) antibodies from Santa Cruz Biotechnology; rabbit anti-SMC3 (ab9263) and rabbit anti-SYCP1 (ab15090) antibodies from Abcam; mouse anti-SYCP1 antibody (a gift from C. Heyting).

Techniques:

(A) Testis nuclear extracts were immunoprecipitated with the anti-SMC3 antibody, followed by treatment with (+) or without (−) phosphatase (PPase) and phosphatase inhibitors (Inhibitor). 80% of the immunoprecipitated SMC3 and the rest were separated on a gradient gel and immunoblotted with antibodies against the Ser 1083 -phosphorylated form of SMC3 (pS1083) and normal SMC3, respectively. (B) Testis nuclear extracts were immunoprecipitated without (Mock) or with the anti-pS1083 antibody. The immunoprecipitates were probed with antibodies against meiotic chromosome axis components. The asterisk marks a non-specific band. (C) Nuclear spreads of spermatocytes were labeled with anti-pS1083, anti-SYCP3 and anti-HORMAD1 antibodies. Arrowheads indicate the XY bivalent. Bars, 10 µm.

Journal: PLoS Genetics

Article Title: Phosphorylation of Chromosome Core Components May Serve as Axis Marks for the Status of Chromosomal Events during Mammalian Meiosis

doi: 10.1371/journal.pgen.1002485

Figure Lengend Snippet: (A) Testis nuclear extracts were immunoprecipitated with the anti-SMC3 antibody, followed by treatment with (+) or without (−) phosphatase (PPase) and phosphatase inhibitors (Inhibitor). 80% of the immunoprecipitated SMC3 and the rest were separated on a gradient gel and immunoblotted with antibodies against the Ser 1083 -phosphorylated form of SMC3 (pS1083) and normal SMC3, respectively. (B) Testis nuclear extracts were immunoprecipitated without (Mock) or with the anti-pS1083 antibody. The immunoprecipitates were probed with antibodies against meiotic chromosome axis components. The asterisk marks a non-specific band. (C) Nuclear spreads of spermatocytes were labeled with anti-pS1083, anti-SYCP3 and anti-HORMAD1 antibodies. Arrowheads indicate the XY bivalent. Bars, 10 µm.

Article Snippet: The following antibodies were also used: guinea pig anti-SYCP2, anti-SMC1β, anti-STAG3, anti-REC8 and anti-SYCP1 antibodies ; guinea pig anti-HORMAD1antibody ; rabbit anti-HORMAD1 antibody (13917-1-AP) from Proteintech Group; rabbit anti-pS/T-Q antibody (#2851) from Cell Signaling Technology; rabbit anti-pS1083 antibodies (A300-480A and IHC-00070) from Bethyl Laboratories; mouse and rabbit anti-γH2AX antibodies (#05-636 and #07-164) from Millipore; mouse anti-SYCP3 (sc-74569), rabbit anti-HORMAD2 (sc-82192), goat anti-SMC3 (sc-8198) and goat anti-ATR (sc-1887) antibodies from Santa Cruz Biotechnology; rabbit anti-SMC3 (ab9263) and rabbit anti-SYCP1 (ab15090) antibodies from Abcam; mouse anti-SYCP1 antibody (a gift from C. Heyting).

Techniques: Immunoprecipitation, Labeling

(A and D) The insoluble fraction of testis nuclear extracts was prepared from Atm −/− (A) and Brca1 Δ11/Δ11 Trp53 +/− ( Brca1 Δ ) (D) males and probed with antibodies against meiotic chromosome axis components. (B and E) Testis nuclear extracts from Atm −/− (B) and Brca1 Δ11/Δ11 Trp53 +/− (E) males were immunoprecipitated with the anti-HORMAD1 antibody. 80% of the immunoprecipitated HORMAD1 and the rest were separated on a gradient gel and immunoblotted with anti-pS375 and anti-HORMAD1 antibodies, respectively. The asterisk marks a non-specific band. (C and F) Testis nuclear extracts from Atm −/− (C) and Brca1 Δ11/Δ11 Trp53 +/− (F) males were immunoprecipitated with the anti-SMC3 antibody. 80% of the immunoprecipitated SMC3 and the rest were separated on a gradient gel and immunoblotted with anti-pS1083 and anti-SMC3 antibodies, respectively. (G) Nuclear spreads of Brca1 Δ11/Δ11 Trp53 +/− pachytene spermatocytes were labeled with anti-pS375, anti-SYCP3 and anti-SYCP1 antibodies. Arrowheads indicate the XY bivalent. Bar, 10 µm.

Journal: PLoS Genetics

Article Title: Phosphorylation of Chromosome Core Components May Serve as Axis Marks for the Status of Chromosomal Events during Mammalian Meiosis

doi: 10.1371/journal.pgen.1002485

Figure Lengend Snippet: (A and D) The insoluble fraction of testis nuclear extracts was prepared from Atm −/− (A) and Brca1 Δ11/Δ11 Trp53 +/− ( Brca1 Δ ) (D) males and probed with antibodies against meiotic chromosome axis components. (B and E) Testis nuclear extracts from Atm −/− (B) and Brca1 Δ11/Δ11 Trp53 +/− (E) males were immunoprecipitated with the anti-HORMAD1 antibody. 80% of the immunoprecipitated HORMAD1 and the rest were separated on a gradient gel and immunoblotted with anti-pS375 and anti-HORMAD1 antibodies, respectively. The asterisk marks a non-specific band. (C and F) Testis nuclear extracts from Atm −/− (C) and Brca1 Δ11/Δ11 Trp53 +/− (F) males were immunoprecipitated with the anti-SMC3 antibody. 80% of the immunoprecipitated SMC3 and the rest were separated on a gradient gel and immunoblotted with anti-pS1083 and anti-SMC3 antibodies, respectively. (G) Nuclear spreads of Brca1 Δ11/Δ11 Trp53 +/− pachytene spermatocytes were labeled with anti-pS375, anti-SYCP3 and anti-SYCP1 antibodies. Arrowheads indicate the XY bivalent. Bar, 10 µm.

Article Snippet: The following antibodies were also used: guinea pig anti-SYCP2, anti-SMC1β, anti-STAG3, anti-REC8 and anti-SYCP1 antibodies ; guinea pig anti-HORMAD1antibody ; rabbit anti-HORMAD1 antibody (13917-1-AP) from Proteintech Group; rabbit anti-pS/T-Q antibody (#2851) from Cell Signaling Technology; rabbit anti-pS1083 antibodies (A300-480A and IHC-00070) from Bethyl Laboratories; mouse and rabbit anti-γH2AX antibodies (#05-636 and #07-164) from Millipore; mouse anti-SYCP3 (sc-74569), rabbit anti-HORMAD2 (sc-82192), goat anti-SMC3 (sc-8198) and goat anti-ATR (sc-1887) antibodies from Santa Cruz Biotechnology; rabbit anti-SMC3 (ab9263) and rabbit anti-SYCP1 (ab15090) antibodies from Abcam; mouse anti-SYCP1 antibody (a gift from C. Heyting).

Techniques: Immunoprecipitation, Labeling

(A) The insoluble fraction of testis nuclear extracts was probed with antibodies against meiotic chromosome axis components. (B) The Ser 375 -phosphorylated form of HORMAD1 was examined as in . (C) The Ser 1083 -phosphorylated form of SMC3 was examined as in . (D) Nuclear spreads of Spo11 −/− zygotene-like spermatocytes were labeled with anti-pS375, anti-SYCP3 and anti-HORMAD1 antibodies. (E) Nuclear spreads of Spo11 −/− zygotene-like spermatocytes were labeled with anti-pS1083, anti-SYCP3 and anti-HORMAD1 antibodies. Bars, 10 µm.

Journal: PLoS Genetics

Article Title: Phosphorylation of Chromosome Core Components May Serve as Axis Marks for the Status of Chromosomal Events during Mammalian Meiosis

doi: 10.1371/journal.pgen.1002485

Figure Lengend Snippet: (A) The insoluble fraction of testis nuclear extracts was probed with antibodies against meiotic chromosome axis components. (B) The Ser 375 -phosphorylated form of HORMAD1 was examined as in . (C) The Ser 1083 -phosphorylated form of SMC3 was examined as in . (D) Nuclear spreads of Spo11 −/− zygotene-like spermatocytes were labeled with anti-pS375, anti-SYCP3 and anti-HORMAD1 antibodies. (E) Nuclear spreads of Spo11 −/− zygotene-like spermatocytes were labeled with anti-pS1083, anti-SYCP3 and anti-HORMAD1 antibodies. Bars, 10 µm.

Article Snippet: The following antibodies were also used: guinea pig anti-SYCP2, anti-SMC1β, anti-STAG3, anti-REC8 and anti-SYCP1 antibodies ; guinea pig anti-HORMAD1antibody ; rabbit anti-HORMAD1 antibody (13917-1-AP) from Proteintech Group; rabbit anti-pS/T-Q antibody (#2851) from Cell Signaling Technology; rabbit anti-pS1083 antibodies (A300-480A and IHC-00070) from Bethyl Laboratories; mouse and rabbit anti-γH2AX antibodies (#05-636 and #07-164) from Millipore; mouse anti-SYCP3 (sc-74569), rabbit anti-HORMAD2 (sc-82192), goat anti-SMC3 (sc-8198) and goat anti-ATR (sc-1887) antibodies from Santa Cruz Biotechnology; rabbit anti-SMC3 (ab9263) and rabbit anti-SYCP1 (ab15090) antibodies from Abcam; mouse anti-SYCP1 antibody (a gift from C. Heyting).

Techniques: Labeling

(A) The insoluble fraction of testis nuclear extracts was probed with antibodies against meiotic chromosome axis components. (B) The Ser 375 -phosphorylated form of HORMAD1 was examined as in . (C) The Ser 1083 -phosphorylated form of SMC3 was examined as in . (D) Nuclear spreads of Sycp3 −/− zygotene-like spermatocytes were labeled with anti-pS375, anti-SYCP1 and anti-HORMAD1 antibodies. (E) Nuclear spreads of Sycp3 −/− zygotene-like spermatocytes were labeled with anti-pS1083, anti-SYCP1 and anti-HORMAD1 antibodies. Bars, 10 µm.

Journal: PLoS Genetics

Article Title: Phosphorylation of Chromosome Core Components May Serve as Axis Marks for the Status of Chromosomal Events during Mammalian Meiosis

doi: 10.1371/journal.pgen.1002485

Figure Lengend Snippet: (A) The insoluble fraction of testis nuclear extracts was probed with antibodies against meiotic chromosome axis components. (B) The Ser 375 -phosphorylated form of HORMAD1 was examined as in . (C) The Ser 1083 -phosphorylated form of SMC3 was examined as in . (D) Nuclear spreads of Sycp3 −/− zygotene-like spermatocytes were labeled with anti-pS375, anti-SYCP1 and anti-HORMAD1 antibodies. (E) Nuclear spreads of Sycp3 −/− zygotene-like spermatocytes were labeled with anti-pS1083, anti-SYCP1 and anti-HORMAD1 antibodies. Bars, 10 µm.

Article Snippet: The following antibodies were also used: guinea pig anti-SYCP2, anti-SMC1β, anti-STAG3, anti-REC8 and anti-SYCP1 antibodies ; guinea pig anti-HORMAD1antibody ; rabbit anti-HORMAD1 antibody (13917-1-AP) from Proteintech Group; rabbit anti-pS/T-Q antibody (#2851) from Cell Signaling Technology; rabbit anti-pS1083 antibodies (A300-480A and IHC-00070) from Bethyl Laboratories; mouse and rabbit anti-γH2AX antibodies (#05-636 and #07-164) from Millipore; mouse anti-SYCP3 (sc-74569), rabbit anti-HORMAD2 (sc-82192), goat anti-SMC3 (sc-8198) and goat anti-ATR (sc-1887) antibodies from Santa Cruz Biotechnology; rabbit anti-SMC3 (ab9263) and rabbit anti-SYCP1 (ab15090) antibodies from Abcam; mouse anti-SYCP1 antibody (a gift from C. Heyting).

Techniques: Labeling

(A–C) Nuclear spreads of wild-type (A), Sycp3 −/− (B) and Spo11 −/− (C) zygotene-like spermatocytes were labeled with anti-γH2AX, anti-HORMAD1 and anti-SYCP1 antibodies. (D–G) Nuclear spreads of wild-type (D), Sycp3 −/− (E), Sycp1 −/− (F) and Tex12 −/− (G) zygotene-like spermatocytes were labeled with anti-γH2AX, anti-REC8 and anti-ATR antibodies. Arrowheads indicate the position of the pseudo-sex body-like staining of γH2AX. Bars, 10 µm.

Journal: PLoS Genetics

Article Title: Phosphorylation of Chromosome Core Components May Serve as Axis Marks for the Status of Chromosomal Events during Mammalian Meiosis

doi: 10.1371/journal.pgen.1002485

Figure Lengend Snippet: (A–C) Nuclear spreads of wild-type (A), Sycp3 −/− (B) and Spo11 −/− (C) zygotene-like spermatocytes were labeled with anti-γH2AX, anti-HORMAD1 and anti-SYCP1 antibodies. (D–G) Nuclear spreads of wild-type (D), Sycp3 −/− (E), Sycp1 −/− (F) and Tex12 −/− (G) zygotene-like spermatocytes were labeled with anti-γH2AX, anti-REC8 and anti-ATR antibodies. Arrowheads indicate the position of the pseudo-sex body-like staining of γH2AX. Bars, 10 µm.

Article Snippet: The following antibodies were also used: guinea pig anti-SYCP2, anti-SMC1β, anti-STAG3, anti-REC8 and anti-SYCP1 antibodies ; guinea pig anti-HORMAD1antibody ; rabbit anti-HORMAD1 antibody (13917-1-AP) from Proteintech Group; rabbit anti-pS/T-Q antibody (#2851) from Cell Signaling Technology; rabbit anti-pS1083 antibodies (A300-480A and IHC-00070) from Bethyl Laboratories; mouse and rabbit anti-γH2AX antibodies (#05-636 and #07-164) from Millipore; mouse anti-SYCP3 (sc-74569), rabbit anti-HORMAD2 (sc-82192), goat anti-SMC3 (sc-8198) and goat anti-ATR (sc-1887) antibodies from Santa Cruz Biotechnology; rabbit anti-SMC3 (ab9263) and rabbit anti-SYCP1 (ab15090) antibodies from Abcam; mouse anti-SYCP1 antibody (a gift from C. Heyting).

Techniques: Labeling, Staining

(A) Schematic representation of the model for regulation of phosphorylation of meiotic chromosomal proteins at S/T-Q motifs. In response to SPO11-formed DSBs (arrow 1), ATM phosphorylates histone H2AX (arrow 2) and ATR phosphorylates HORMAD1/2 (arrow 3) and SMC3 (arrow 4). Phosphorylated HORMAD1/2 serves as a marker for unsynapsis and contributes to the correct localization of ATR at unsynapsed chromosomal regions (arrow 5). At the unsynapsed chromosomes, ATR phosphorylates H2AX to promote MSUC (arrow 6), as well as HORMAD1/2 (arrow 7) and SMC3 (arrow 8). Phosphorylated HORMAD1/2 further stabilizes ATR (arrow 9) at unsynapsed chromosomes and ATR further phosphorylates HORMAD1/2 (arrow 10), amplifying the unsynapsis signal via the positive feedback loop (arrow 9 and 10). (B) The status of chromosome synapsis can be indicated by the presence or absence of HORMAD1/2 and phosphorylation of HORMAD1 and SMC3. At unsynapsed chromosomal regions, the chromosome axis contains the S/T-Q motif-phosphorylated forms of HORMAD1/2 and SMC3. When homologs are synapsed, HORMAD1/2 and the Ser 1083 -phosphorylated form of SMC3 are displaced from the chromosome axis. After desynapsis, HORMAD1/2 is again included in the chromosome axis but HORMAD1 (and possibly HORMAD2) is not phosphorylated at the S/T-Q motif. Distribution of the phosphorylated forms of other components of the chromosome axis remains to be determined.

Journal: PLoS Genetics

Article Title: Phosphorylation of Chromosome Core Components May Serve as Axis Marks for the Status of Chromosomal Events during Mammalian Meiosis

doi: 10.1371/journal.pgen.1002485

Figure Lengend Snippet: (A) Schematic representation of the model for regulation of phosphorylation of meiotic chromosomal proteins at S/T-Q motifs. In response to SPO11-formed DSBs (arrow 1), ATM phosphorylates histone H2AX (arrow 2) and ATR phosphorylates HORMAD1/2 (arrow 3) and SMC3 (arrow 4). Phosphorylated HORMAD1/2 serves as a marker for unsynapsis and contributes to the correct localization of ATR at unsynapsed chromosomal regions (arrow 5). At the unsynapsed chromosomes, ATR phosphorylates H2AX to promote MSUC (arrow 6), as well as HORMAD1/2 (arrow 7) and SMC3 (arrow 8). Phosphorylated HORMAD1/2 further stabilizes ATR (arrow 9) at unsynapsed chromosomes and ATR further phosphorylates HORMAD1/2 (arrow 10), amplifying the unsynapsis signal via the positive feedback loop (arrow 9 and 10). (B) The status of chromosome synapsis can be indicated by the presence or absence of HORMAD1/2 and phosphorylation of HORMAD1 and SMC3. At unsynapsed chromosomal regions, the chromosome axis contains the S/T-Q motif-phosphorylated forms of HORMAD1/2 and SMC3. When homologs are synapsed, HORMAD1/2 and the Ser 1083 -phosphorylated form of SMC3 are displaced from the chromosome axis. After desynapsis, HORMAD1/2 is again included in the chromosome axis but HORMAD1 (and possibly HORMAD2) is not phosphorylated at the S/T-Q motif. Distribution of the phosphorylated forms of other components of the chromosome axis remains to be determined.

Article Snippet: The following antibodies were also used: guinea pig anti-SYCP2, anti-SMC1β, anti-STAG3, anti-REC8 and anti-SYCP1 antibodies ; guinea pig anti-HORMAD1antibody ; rabbit anti-HORMAD1 antibody (13917-1-AP) from Proteintech Group; rabbit anti-pS/T-Q antibody (#2851) from Cell Signaling Technology; rabbit anti-pS1083 antibodies (A300-480A and IHC-00070) from Bethyl Laboratories; mouse and rabbit anti-γH2AX antibodies (#05-636 and #07-164) from Millipore; mouse anti-SYCP3 (sc-74569), rabbit anti-HORMAD2 (sc-82192), goat anti-SMC3 (sc-8198) and goat anti-ATR (sc-1887) antibodies from Santa Cruz Biotechnology; rabbit anti-SMC3 (ab9263) and rabbit anti-SYCP1 (ab15090) antibodies from Abcam; mouse anti-SYCP1 antibody (a gift from C. Heyting).

Techniques: Phospho-proteomics, Marker