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Proteasome subunit α4s is essential for formation of spermatoproteasomes and histone degradation during meiotic DNA repair in spermatocytes

Meiosis, which produces haploid progeny, is critical to ensuring both faithful genome transmission and genetic diversity. Proteasomes play critical roles at various stages of spermatogenesis, including meiosis, but the underlying mechanisms remain unclear. The atypical proteasomes, which contain the...

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Autores principales: Zhang, Zi-Hui, Jiang, Tian-Xia, Chen, Lian-Bin, Zhou, Wenhui, Liu, Yixun, Gao, Fei, Qiu, Xiao-Bo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7949063/
https://www.ncbi.nlm.nih.gov/pubmed/33262216
http://dx.doi.org/10.1074/jbc.RA120.016485
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author Zhang, Zi-Hui
Jiang, Tian-Xia
Chen, Lian-Bin
Zhou, Wenhui
Liu, Yixun
Gao, Fei
Qiu, Xiao-Bo
author_facet Zhang, Zi-Hui
Jiang, Tian-Xia
Chen, Lian-Bin
Zhou, Wenhui
Liu, Yixun
Gao, Fei
Qiu, Xiao-Bo
author_sort Zhang, Zi-Hui
collection PubMed
description Meiosis, which produces haploid progeny, is critical to ensuring both faithful genome transmission and genetic diversity. Proteasomes play critical roles at various stages of spermatogenesis, including meiosis, but the underlying mechanisms remain unclear. The atypical proteasomes, which contain the activator PA200, catalyze the acetylation-dependent degradation of the core histones in elongated spermatids and DNA repair in somatic cells. We show here that the testis-specific proteasome subunit α4s/PSMA8 is essential for male fertility by promoting proper formation of spermatoproteasomes, which harbor both PA200 and constitutive catalytic subunits. Immunostaining of a spermatocyte marker, SYCP3, indicated that meiosis was halted at the stage of spermatocytes in the α4s-deficient testes. α4s stimulated the in vitro degradation of the acetylated core histones, instead of nonacetylated histones, by the PA200-proteasome. Deletion of α4s blocked degradation of the core histones at DNA damage loci in spermatocytes, leading to meiotic arrest at metaphase I. Thus, α4s is required for histone degradation at meiotic DNA damage loci, proper progression of meiosis, and fertility in males by promoting proper formation of spermatoproteasomes. These results are important for understanding male infertility and might provide potential targets for male contraception or treatment of male infertility.
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spelling pubmed-79490632021-03-19 Proteasome subunit α4s is essential for formation of spermatoproteasomes and histone degradation during meiotic DNA repair in spermatocytes Zhang, Zi-Hui Jiang, Tian-Xia Chen, Lian-Bin Zhou, Wenhui Liu, Yixun Gao, Fei Qiu, Xiao-Bo J Biol Chem Research Article Meiosis, which produces haploid progeny, is critical to ensuring both faithful genome transmission and genetic diversity. Proteasomes play critical roles at various stages of spermatogenesis, including meiosis, but the underlying mechanisms remain unclear. The atypical proteasomes, which contain the activator PA200, catalyze the acetylation-dependent degradation of the core histones in elongated spermatids and DNA repair in somatic cells. We show here that the testis-specific proteasome subunit α4s/PSMA8 is essential for male fertility by promoting proper formation of spermatoproteasomes, which harbor both PA200 and constitutive catalytic subunits. Immunostaining of a spermatocyte marker, SYCP3, indicated that meiosis was halted at the stage of spermatocytes in the α4s-deficient testes. α4s stimulated the in vitro degradation of the acetylated core histones, instead of nonacetylated histones, by the PA200-proteasome. Deletion of α4s blocked degradation of the core histones at DNA damage loci in spermatocytes, leading to meiotic arrest at metaphase I. Thus, α4s is required for histone degradation at meiotic DNA damage loci, proper progression of meiosis, and fertility in males by promoting proper formation of spermatoproteasomes. These results are important for understanding male infertility and might provide potential targets for male contraception or treatment of male infertility. American Society for Biochemistry and Molecular Biology 2020-12-04 /pmc/articles/PMC7949063/ /pubmed/33262216 http://dx.doi.org/10.1074/jbc.RA120.016485 Text en © 2020 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
Zhang, Zi-Hui
Jiang, Tian-Xia
Chen, Lian-Bin
Zhou, Wenhui
Liu, Yixun
Gao, Fei
Qiu, Xiao-Bo
Proteasome subunit α4s is essential for formation of spermatoproteasomes and histone degradation during meiotic DNA repair in spermatocytes
title Proteasome subunit α4s is essential for formation of spermatoproteasomes and histone degradation during meiotic DNA repair in spermatocytes
title_full Proteasome subunit α4s is essential for formation of spermatoproteasomes and histone degradation during meiotic DNA repair in spermatocytes
title_fullStr Proteasome subunit α4s is essential for formation of spermatoproteasomes and histone degradation during meiotic DNA repair in spermatocytes
title_full_unstemmed Proteasome subunit α4s is essential for formation of spermatoproteasomes and histone degradation during meiotic DNA repair in spermatocytes
title_short Proteasome subunit α4s is essential for formation of spermatoproteasomes and histone degradation during meiotic DNA repair in spermatocytes
title_sort proteasome subunit α4s is essential for formation of spermatoproteasomes and histone degradation during meiotic dna repair in spermatocytes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7949063/
https://www.ncbi.nlm.nih.gov/pubmed/33262216
http://dx.doi.org/10.1074/jbc.RA120.016485
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