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首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Haploinsufficiency for the murine orthologue of Chlamydomonas PF20 disrupts spermatogenesis.
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Haploinsufficiency for the murine orthologue of Chlamydomonas PF20 disrupts spermatogenesis.

机译:衣藻PF20鼠直系同源物的单倍剂量不足会破坏精子发生。

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摘要

PF20 was first identified in Chlamydomonas rheinhardtii as an essential component of the axoneme central apparatus. We discovered that the mouse Pf20 gene encodes two major transcripts (2.5 and 1.4 kb), which are expressed in different patterns during spermatogenesis, yielding proteins of 71 and 35 kDa, respectively. Both proteins contain contiguous WD repeats in their C termini. The meiotically expressed 71-kDa protein is incorporated into the central apparatus, whereas the 35-kDa protein, which accumulates in postmeiotic male germ cells, is abundant in the nucleus. We disrupted the Pf20 gene domains that encode the C-terminal WD repeats in embryonic stem cells. Highly chimeric mice carrying the mutant Pf20 allele had impaired spermatogenesis with a significant loss of germ cells at the round spermatid stage, in association with disorganization of sperm axoneme structure. The mutated Pf20 allele was never transmitted, indicating that Pf20 haploinsufficiency caused the defects in spermatogenesis. The 35-kDa PF20 protein was shown to bind to meiosis-expressed gene 1 (MEIG1), a chromosome/chromatin-binding protein initially expressed during meiosis but retained in the germ cell nucleus throughout later stages of spermatogenesis. Our findings reveal an essential role for Pf20 in mouse spermatogenesis, sustaining postmeiotic germ cell viability. The different patterns of expression of the two PF20 proteins suggest the possibility that the Pf20 gene has multiple functions during spermatogenesis.
机译:PF20最初在莱茵衣藻中被确认为轴突中枢装置的重要组成部分。我们发现,小鼠Pf20基因编码两个主要转录本(2.5和1.4 kb),在精子发生过程中以不同的模式表达,分别产生71和35 kDa的蛋白质。两种蛋白质在其C末端均包含连续的WD重复序列。减数分裂表达的71-kDa蛋白被整合到中央装置中,而积累在减数分裂后雄性生殖细胞中的35-kDa蛋白在细胞核中丰富。我们破坏了在胚胎干细胞中编码C末端WD重复序列的Pf20基因结构域。携带突变体Pf20等位基因的高度嵌合小鼠在圆形精子阶段损害了精子发生,并且生殖细胞明显损失,并且精子轴突结构紊乱。突变的Pf20等位基因从未传播,表明Pf20单倍体不足导致精子发生缺陷。 35 kDa PF20蛋白显示与减数分裂表达基因1(MEIG1)结合,MEIG1是一种染色体/染色质结合蛋白,最初在减数分裂过程中表达,但在精子发生的整个后期保留在生殖细胞核中。我们的发现揭示了Pf20在小鼠精子发生,维持减数分裂后生殖细胞活力中的重要作用。两种PF20蛋白的不同表达方式提示Pf20基因在精子发生过程中具有多种功能的可能性。

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