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YTHDC2 对于粗线期进展至关重要,并防止雄性减数分裂中异常的微管驱动的端粒聚集。

YTHDC2 is essential for pachytene progression and prevents aberrant microtubule-driven telomere clustering in male meiosis.

机构信息

School of Basic Medical Sciences, Wuhan University, Wuhan, Hubei Province, China; Department of Biomedical Sciences, University of Pennsylvania School of Veterinary Medicine, Philadelphia, PA, USA.

Department of Biomedical Sciences, University of Pennsylvania School of Veterinary Medicine, Philadelphia, PA, USA.

出版信息

Cell Rep. 2021 Dec 14;37(11):110110. doi: 10.1016/j.celrep.2021.110110.

Abstract

Mechanisms driving the prolonged meiotic prophase I in mammals are poorly understood. RNA helicase YTHDC2 is critical for mitosis to meiosis transition. However, YTHDC2 is highly expressed in pachytene cells. Here we identify an essential role for YTHDC2 in meiotic progression. Specifically, YTHDC2 deficiency causes microtubule-dependent telomere clustering and apoptosis at the pachytene stage of prophase I. Depletion of YTHDC2 results in a massively dysregulated transcriptome in pachytene cells, with a tendency toward upregulation of genes normally expressed in mitotic germ cells and downregulation of meiotic transcripts. Dysregulation does not correlate with mA status, and YTHDC2-bound mRNAs are enriched in genes upregulated in mutant germ cells, revealing that YTHDC2 primarily targets mRNAs for degradation. Furthermore, altered transcripts in mutant pachytene cells encode microtubule network proteins. Our results demonstrate that YTHDC2 regulates the pachytene stage by perpetuating a meiotic transcriptome and preventing microtubule network changes that could lead to telomere clustering.

摘要

在哺乳动物中,驱动超长减数分裂前期 I 的机制尚未完全了解。RNA 解旋酶 YTHDC2 对于有丝分裂向减数分裂的转变至关重要。然而,YTHDC2 在粗线期细胞中高度表达。在这里,我们确定了 YTHDC2 在减数分裂进程中的重要作用。具体来说,YTHDC2 的缺乏导致在前期 I 的粗线期阶段微管依赖性端粒聚集和凋亡。YTHDC2 的耗竭导致粗线期细胞中转录组的严重失调,表现为通常在有丝分裂生殖细胞中表达的基因上调和减数分裂转录物下调的趋势。失调与 mA 状态无关,并且 YTHDC2 结合的 mRNAs 在突变生殖细胞中上调的基因中富集,表明 YTHDC2 主要靶向用于降解的 mRNAs。此外,突变粗线期细胞中的改变的转录本编码微管网络蛋白。我们的结果表明,YTHDC2 通过维持减数分裂转录组和防止可能导致端粒聚集的微管网络变化来调节粗线期。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e528/8720241/e10b056c2b7b/nihms-1764640-f0002.jpg

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