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The uncharacterized SANT and BTB domain-containing protein SANBR inhibits class switch recombination

Class switch recombination (CSR) is the process by which B cells switch production from IgM/IgD to other immunoglobulin isotypes, enabling them to mount an effective immune response against pathogens. Timely resolution of CSR prevents damage due to an uncontrolled and prolonged immune response. Whil...

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Autores principales: Zheng, Simin, Matthews, Allysia J., Rahman, Numa, Herrick-Reynolds, Kayleigh, Sible, Emily, Choi, Jee Eun, Wishnie, Alec, Ng, Yan Kee, Rhodes, Daniela, Elledge, Stephen J., Vuong, Bao Q.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8141524/
https://www.ncbi.nlm.nih.gov/pubmed/33831416
http://dx.doi.org/10.1016/j.jbc.2021.100625
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author Zheng, Simin
Matthews, Allysia J.
Rahman, Numa
Herrick-Reynolds, Kayleigh
Sible, Emily
Choi, Jee Eun
Wishnie, Alec
Ng, Yan Kee
Rhodes, Daniela
Elledge, Stephen J.
Vuong, Bao Q.
author_facet Zheng, Simin
Matthews, Allysia J.
Rahman, Numa
Herrick-Reynolds, Kayleigh
Sible, Emily
Choi, Jee Eun
Wishnie, Alec
Ng, Yan Kee
Rhodes, Daniela
Elledge, Stephen J.
Vuong, Bao Q.
author_sort Zheng, Simin
collection PubMed
description Class switch recombination (CSR) is the process by which B cells switch production from IgM/IgD to other immunoglobulin isotypes, enabling them to mount an effective immune response against pathogens. Timely resolution of CSR prevents damage due to an uncontrolled and prolonged immune response. While many positive regulators of CSR have been described, negative regulators of CSR are relatively unknown. Using an shRNA library screen targeting more than 28,000 genes in a mouse B cell line, we have identified a novel, uncharacterized protein of 82kD (KIAA1841, NM_027860), which we have named SANBR (SANT and BTB domain regulator of CSR), as a negative regulator of CSR. The purified, recombinant BTB domain of SANBR exhibited characteristic properties such as homodimerization and interaction with corepressor proteins, including HDAC and SMRT. Overexpression of SANBR inhibited CSR in primary mouse splenic B cells, and inhibition of CSR is dependent on the BTB domain while the SANT domain is largely dispensable. Thus, we have identified a new member of the BTB family that serves as a negative regulator of CSR. Future investigations to identify transcriptional targets of SANBR in B cells will reveal further insights into the specific mechanisms by which SANBR regulates CSR as well as fundamental gene regulatory activities of this protein.
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spelling pubmed-81415242021-05-26 The uncharacterized SANT and BTB domain-containing protein SANBR inhibits class switch recombination Zheng, Simin Matthews, Allysia J. Rahman, Numa Herrick-Reynolds, Kayleigh Sible, Emily Choi, Jee Eun Wishnie, Alec Ng, Yan Kee Rhodes, Daniela Elledge, Stephen J. Vuong, Bao Q. J Biol Chem Research Article Class switch recombination (CSR) is the process by which B cells switch production from IgM/IgD to other immunoglobulin isotypes, enabling them to mount an effective immune response against pathogens. Timely resolution of CSR prevents damage due to an uncontrolled and prolonged immune response. While many positive regulators of CSR have been described, negative regulators of CSR are relatively unknown. Using an shRNA library screen targeting more than 28,000 genes in a mouse B cell line, we have identified a novel, uncharacterized protein of 82kD (KIAA1841, NM_027860), which we have named SANBR (SANT and BTB domain regulator of CSR), as a negative regulator of CSR. The purified, recombinant BTB domain of SANBR exhibited characteristic properties such as homodimerization and interaction with corepressor proteins, including HDAC and SMRT. Overexpression of SANBR inhibited CSR in primary mouse splenic B cells, and inhibition of CSR is dependent on the BTB domain while the SANT domain is largely dispensable. Thus, we have identified a new member of the BTB family that serves as a negative regulator of CSR. Future investigations to identify transcriptional targets of SANBR in B cells will reveal further insights into the specific mechanisms by which SANBR regulates CSR as well as fundamental gene regulatory activities of this protein. American Society for Biochemistry and Molecular Biology 2021-04-06 /pmc/articles/PMC8141524/ /pubmed/33831416 http://dx.doi.org/10.1016/j.jbc.2021.100625 Text en © 2021 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Zheng, Simin
Matthews, Allysia J.
Rahman, Numa
Herrick-Reynolds, Kayleigh
Sible, Emily
Choi, Jee Eun
Wishnie, Alec
Ng, Yan Kee
Rhodes, Daniela
Elledge, Stephen J.
Vuong, Bao Q.
The uncharacterized SANT and BTB domain-containing protein SANBR inhibits class switch recombination
title The uncharacterized SANT and BTB domain-containing protein SANBR inhibits class switch recombination
title_full The uncharacterized SANT and BTB domain-containing protein SANBR inhibits class switch recombination
title_fullStr The uncharacterized SANT and BTB domain-containing protein SANBR inhibits class switch recombination
title_full_unstemmed The uncharacterized SANT and BTB domain-containing protein SANBR inhibits class switch recombination
title_short The uncharacterized SANT and BTB domain-containing protein SANBR inhibits class switch recombination
title_sort uncharacterized sant and btb domain-containing protein sanbr inhibits class switch recombination
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8141524/
https://www.ncbi.nlm.nih.gov/pubmed/33831416
http://dx.doi.org/10.1016/j.jbc.2021.100625
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