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CCR4-NOT 复合物的 CNOT4 亚基参与 mRNA 降解、高效 DNA 损伤修复以及雄性生殖细胞减数分裂过程中的 XY 染色体交叉。

The CNOT4 Subunit of the CCR4-NOT Complex is Involved in mRNA Degradation, Efficient DNA Damage Repair, and XY Chromosome Crossover during Male Germ Cell Meiosis.

机构信息

MOE Key Laboratory for Biosystems Homeostasis & Protection and Innovation Center for Cell Signaling Network Life Sciences Institute Zhejiang University Hangzhou 310058 China.

College of Life Science Zhejiang University Hangzhou 310058 China.

出版信息

Adv Sci (Weinh). 2021 Mar 16;8(10):2003636. doi: 10.1002/advs.202003636. eCollection 2021 May.

Abstract

The CCR4-NOT complex is a major mRNA deadenylase in eukaryotes, comprising the catalytic subunits CNOT6/6L and CNOT7/8, as well as CNOT4, a regulatory subunit with previously undetermined functions. These subunits have been hypothesized to play synergistic biochemical functions during development. knockout male mice have been reported to be infertile. In this study, viable / double knockout mice are constructed, and the males are fertile. These results indicate that CNOT7 has CNOT6/6L-independent functions in vivo. It is also demonstrated that CNOT4 is required for post-implantation embryo development and meiosis progression during spermatogenesis. Conditional knockout of in male germ cells leads to defective DNA damage repair and homologous crossover between X and Y chromosomes. CNOT4 functions as a previously unrecognized mRNA adaptor of CCR4-NOT by targeting mRNAs to CNOT7 for deadenylation of poly(A) tails, thereby mediating the degradation of a subset of transcripts from the zygotene to pachytene stage. The mRNA removal promoted by the CNOT4-regulated CCR4-NOT complex during the zygotene-to-pachytene transition is crucial for the appropriate expression of genes involved in the subsequent events of spermatogenesis, normal DNA double-strand break repair during meiosis, efficient crossover between X and Y chromosomes, and ultimately, male fertility.

摘要

CCR4-NOT 复合物是真核生物中主要的 mRNA 脱腺苷酸化酶复合物,由催化亚基 CNOT6/6L 和 CNOT7/8 以及具有先前未确定功能的调节亚基 CNOT4 组成。这些亚基被假设在发育过程中发挥协同的生化功能。先前有报道称, 敲除雄性小鼠不育。在这项研究中,构建了存活/双敲除小鼠,其雄性具有生育能力。这些结果表明 CNOT7 在体内具有与 CNOT6/6L 无关的功能。还表明 CNOT4 对于植入后胚胎发育和减数分裂进展是必需的,在减数分裂过程中进行精子发生。在雄性生殖细胞中条件性敲除 导致 DNA 损伤修复缺陷和 X 和 Y 染色体之间的同源交叉。CNOT4 作为 CCR4-NOT 的以前未被识别的 mRNA 衔接子发挥作用,通过将 mRNA 靶向 CNOT7 来使 poly(A)尾巴脱腺苷酸化,从而介导从粗线期到细线期阶段的一部分转录物的降解。在细线期到粗线期过渡期间由 CNOT4 调节的 CCR4-NOT 复合物介导的 mRNA 去除对于随后的精子发生事件中涉及的基因的适当表达、减数分裂期间的有效 DNA 双链断裂修复、X 和 Y 染色体之间的有效交叉以及最终雄性生育能力是至关重要的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6baf/8132151/783f0c0c8b17/ADVS-8-2003636-g003.jpg

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