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Specificity and application of SOX2 antibody

Sox2 is known to play an important role in maintaining the totipotency and self-renewal of embryonic stem cells. The purpose of this study was to prepare an anti-chicken Sox2 polyclonal antibody using prokaryotic expression techniques, to evaluate its specificity and to use it to investigate the exp...

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Autores principales: Wei, Longqin, Wang, Lixia, Pan, Jianhong, Liu, Lingkang, Wang, Pengxia, Wei, Jinyu, Xu, Xiaoming, Xing, Qingbo, Liu, Ping, Wu, Wende, Li, Gonghe, Zheng, Xibang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7597407/
https://www.ncbi.nlm.nih.gov/pubmed/32359573
http://dx.doi.org/10.1016/j.psj.2020.01.001
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author Wei, Longqin
Wang, Lixia
Pan, Jianhong
Liu, Lingkang
Wang, Pengxia
Wei, Jinyu
Xu, Xiaoming
Xing, Qingbo
Liu, Ping
Wu, Wende
Li, Gonghe
Zheng, Xibang
author_facet Wei, Longqin
Wang, Lixia
Pan, Jianhong
Liu, Lingkang
Wang, Pengxia
Wei, Jinyu
Xu, Xiaoming
Xing, Qingbo
Liu, Ping
Wu, Wende
Li, Gonghe
Zheng, Xibang
author_sort Wei, Longqin
collection PubMed
description Sox2 is known to play an important role in maintaining the totipotency and self-renewal of embryonic stem cells. The purpose of this study was to prepare an anti-chicken Sox2 polyclonal antibody using prokaryotic expression techniques, to evaluate its specificity and to use it to investigate the expression and distribution of Sox2 in the chicken brain and lungs. The chicken Sox2 gene was amplified and subcloned to a pET-30a vector to construct a prokaryotic expression vector, pET-Sox2. A His-Sox2 fusion protein was expressed, purified, and used to prepare an antichicken Sox2 polyclonal antibody. Western blotting revealed that the antichicken Sox2 antibody could specifically bind not only to the purified His-Sox2 fusion protein but also to the endogenous Sox2 protein in the testes of chicken, showing a distinct dose-dependent relationship between antigen and Sox2 antibody. Indirect immunofluorescent staining of Sox2-overexpressing cells showed strong nuclear and diffuse cytoplasmic immunoreactivity for Sox2 in the antichicken Sox2 antibody-staining cells. A CRISPR/Cas9 effector system-mediated Sox2 knockdown assay indicated that Sox2 expression in HEK 293T cells was downregulated in the presence of doxycycline but upregulated in the absence of doxycycline. In addition, cryosectioning and immunohistochemical staining illustrated that most spermatogonia in the seminiferous tubules, and a small number of Sertoli and Leydig cells, were positive for Sox2. The antichicken Sox2 antibody was also successfully used to investigate the expression and distribution of Sox2 in the chicken cerebellar cortex, optic tectum, cerebral cortex, and lungs. The results of this study confirmed the specificity of the antichicken Sox2 polyclonal antibody, which will be available for the study of biological functions of the chicken Sox2 gene and the self-renewal mechanisms of chicken pluripotent stem cells.
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spelling pubmed-75974072020-11-02 Specificity and application of SOX2 antibody Wei, Longqin Wang, Lixia Pan, Jianhong Liu, Lingkang Wang, Pengxia Wei, Jinyu Xu, Xiaoming Xing, Qingbo Liu, Ping Wu, Wende Li, Gonghe Zheng, Xibang Poult Sci Genetics and Molecular Biology Sox2 is known to play an important role in maintaining the totipotency and self-renewal of embryonic stem cells. The purpose of this study was to prepare an anti-chicken Sox2 polyclonal antibody using prokaryotic expression techniques, to evaluate its specificity and to use it to investigate the expression and distribution of Sox2 in the chicken brain and lungs. The chicken Sox2 gene was amplified and subcloned to a pET-30a vector to construct a prokaryotic expression vector, pET-Sox2. A His-Sox2 fusion protein was expressed, purified, and used to prepare an antichicken Sox2 polyclonal antibody. Western blotting revealed that the antichicken Sox2 antibody could specifically bind not only to the purified His-Sox2 fusion protein but also to the endogenous Sox2 protein in the testes of chicken, showing a distinct dose-dependent relationship between antigen and Sox2 antibody. Indirect immunofluorescent staining of Sox2-overexpressing cells showed strong nuclear and diffuse cytoplasmic immunoreactivity for Sox2 in the antichicken Sox2 antibody-staining cells. A CRISPR/Cas9 effector system-mediated Sox2 knockdown assay indicated that Sox2 expression in HEK 293T cells was downregulated in the presence of doxycycline but upregulated in the absence of doxycycline. In addition, cryosectioning and immunohistochemical staining illustrated that most spermatogonia in the seminiferous tubules, and a small number of Sertoli and Leydig cells, were positive for Sox2. The antichicken Sox2 antibody was also successfully used to investigate the expression and distribution of Sox2 in the chicken cerebellar cortex, optic tectum, cerebral cortex, and lungs. The results of this study confirmed the specificity of the antichicken Sox2 polyclonal antibody, which will be available for the study of biological functions of the chicken Sox2 gene and the self-renewal mechanisms of chicken pluripotent stem cells. Elsevier 2020-03-20 /pmc/articles/PMC7597407/ /pubmed/32359573 http://dx.doi.org/10.1016/j.psj.2020.01.001 Text en © 2020 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Genetics and Molecular Biology
Wei, Longqin
Wang, Lixia
Pan, Jianhong
Liu, Lingkang
Wang, Pengxia
Wei, Jinyu
Xu, Xiaoming
Xing, Qingbo
Liu, Ping
Wu, Wende
Li, Gonghe
Zheng, Xibang
Specificity and application of SOX2 antibody
title Specificity and application of SOX2 antibody
title_full Specificity and application of SOX2 antibody
title_fullStr Specificity and application of SOX2 antibody
title_full_unstemmed Specificity and application of SOX2 antibody
title_short Specificity and application of SOX2 antibody
title_sort specificity and application of sox2 antibody
topic Genetics and Molecular Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7597407/
https://www.ncbi.nlm.nih.gov/pubmed/32359573
http://dx.doi.org/10.1016/j.psj.2020.01.001
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