Literature DB >> 33913576

PPP2R1B is modulated by ubiquitination and is essential for spermatogenesis.

Mufeng Du1,2, Lin Yuan1,2,3, Zhong Zhang1,2, Cong Zhang1,2, Minglu Zhu1,2, Zhe Zhang4, Ridong Li1,2, Xuyang Zhao1,2, Hui Liang1,2, Yuhua Li1,2, Hui Jiang4, Jie Qiao5, Yuxin Yin1,2,3.   

Abstract

The serine-threonine protein phosphatase 2A (PP2A) is a heterotrimeric enzyme complex that regulates many fundamental cellular processes. PP2A is involved in tumorigenesis because mutations in the scaffold subunit, PPP2R1B, were found in several types of cancers. However, the biological function of PPP2R1B remains largely unknown. We report here that homozygous deletion of Ppp2r1b in Mus musculus impairs meiotic recombination and causes meiotic arrest in spermatocytes. Consistently, male mice lacking Ppp2r1b are characterized with infertility. Furthermore, heterozygous missense mutations in the Homo sapiens PPP2R1B gene, which encodes PPP2R1B, are identified in azoospermia patients with meiotic arrest. We found that PPP2R1B mutants are susceptible to degradation by an E3 ligase CRL4ADCAF6 , and resistant to de-polyubiquitylation by ubiquitin-specific protease 5 (USP5). In addition, heterozygous mutations in PPP2R1B reduce stability of the wild-type PPP2R1B. Our results demonstrate an essential role of PPP2R1B in spermatogenesis and identify upstream regulators of PPP2R1B.
© 2021 Federation of American Societies for Experimental Biology.

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Keywords:  DCAF6; USP5; meiotic arrest; meiotic recombination; spermatogenesis

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Year:  2021        PMID: 33913576     DOI: 10.1096/fj.202002810R

Source DB:  PubMed          Journal:  FASEB J        ISSN: 0892-6638            Impact factor:   5.191


  1 in total

1.  Global phosphoproteomic analysis identified key kinases regulating male meiosis in mouse.

Authors:  Haojie Li; Hong Chen; Xiangzheng Zhang; Yaling Qi; Bing Wang; Yiqiang Cui; Jie Ren; Yichen Zhao; Yu Chen; Tianyu Zhu; Yue Wang; Liping Yao; Yueshuai Guo; Hui Zhu; Yan Li; Chenghao Situ; Xuejiang Guo
Journal:  Cell Mol Life Sci       Date:  2022-08-05       Impact factor: 9.207

  1 in total

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