BCAS2 is involved in alternative mRNA splicing in spermatogonia and the transition to meiosis

Breast cancer amplified sequence 2 (BCAS2) is involved in pre-mRNA splicing but its physiological role is unclear. Here, the authors find BCAS2 enriched in mice spermatogonia in the testes, and BCAS2 deletion in germ cells alters alternative splicing of spermatogenesis-related genes, causing male in...

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Autores principales: Wenbo Liu, Fengchao Wang, Qianhua Xu, Junchao Shi, Xiaoxin Zhang, Xukun Lu, Zhen-Ao Zhao, Zheng Gao, Huaixiao Ma, Enkui Duan, Fei Gao, Shaorong Gao, Zhaohong Yi, Lei Li
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/318f4f53fb5a48d5adc1879ed3272619
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spelling oai:doaj.org-article:318f4f53fb5a48d5adc1879ed32726192021-12-02T14:42:17ZBCAS2 is involved in alternative mRNA splicing in spermatogonia and the transition to meiosis10.1038/ncomms141822041-1723https://doaj.org/article/318f4f53fb5a48d5adc1879ed32726192017-01-01T00:00:00Zhttps://doi.org/10.1038/ncomms14182https://doaj.org/toc/2041-1723Breast cancer amplified sequence 2 (BCAS2) is involved in pre-mRNA splicing but its physiological role is unclear. Here, the authors find BCAS2 enriched in mice spermatogonia in the testes, and BCAS2 deletion in germ cells alters alternative splicing of spermatogenesis-related genes, causing male infertility.Wenbo LiuFengchao WangQianhua XuJunchao ShiXiaoxin ZhangXukun LuZhen-Ao ZhaoZheng GaoHuaixiao MaEnkui DuanFei GaoShaorong GaoZhaohong YiLei LiNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-11 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Wenbo Liu
Fengchao Wang
Qianhua Xu
Junchao Shi
Xiaoxin Zhang
Xukun Lu
Zhen-Ao Zhao
Zheng Gao
Huaixiao Ma
Enkui Duan
Fei Gao
Shaorong Gao
Zhaohong Yi
Lei Li
BCAS2 is involved in alternative mRNA splicing in spermatogonia and the transition to meiosis
description Breast cancer amplified sequence 2 (BCAS2) is involved in pre-mRNA splicing but its physiological role is unclear. Here, the authors find BCAS2 enriched in mice spermatogonia in the testes, and BCAS2 deletion in germ cells alters alternative splicing of spermatogenesis-related genes, causing male infertility.
format article
author Wenbo Liu
Fengchao Wang
Qianhua Xu
Junchao Shi
Xiaoxin Zhang
Xukun Lu
Zhen-Ao Zhao
Zheng Gao
Huaixiao Ma
Enkui Duan
Fei Gao
Shaorong Gao
Zhaohong Yi
Lei Li
author_facet Wenbo Liu
Fengchao Wang
Qianhua Xu
Junchao Shi
Xiaoxin Zhang
Xukun Lu
Zhen-Ao Zhao
Zheng Gao
Huaixiao Ma
Enkui Duan
Fei Gao
Shaorong Gao
Zhaohong Yi
Lei Li
author_sort Wenbo Liu
title BCAS2 is involved in alternative mRNA splicing in spermatogonia and the transition to meiosis
title_short BCAS2 is involved in alternative mRNA splicing in spermatogonia and the transition to meiosis
title_full BCAS2 is involved in alternative mRNA splicing in spermatogonia and the transition to meiosis
title_fullStr BCAS2 is involved in alternative mRNA splicing in spermatogonia and the transition to meiosis
title_full_unstemmed BCAS2 is involved in alternative mRNA splicing in spermatogonia and the transition to meiosis
title_sort bcas2 is involved in alternative mrna splicing in spermatogonia and the transition to meiosis
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/318f4f53fb5a48d5adc1879ed3272619
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