首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >emb-4 is a conserved gene required for efficient germline-specific chromatin remodeling during Caenorhabditis elegans embryogenesis.
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emb-4 is a conserved gene required for efficient germline-specific chromatin remodeling during Caenorhabditis elegans embryogenesis.

机译:emb-4是秀丽隐杆线虫胚胎发生过程中有效的种系特异性染色质重塑所需的保守基因。

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摘要

In C. elegans, germline blastomeres are initially kept transcriptionally quiescent by the maternally loaded CCCH zinc-finger protein PIE-1. PIE-1 disappears upon the birth of the primordial germ cells Z2 and Z3, yet these cells appear to remain quiescent. We have previously demonstrated that there is a chromatin-based repression that succeeds PIE-1 degradation. The chromatin in Z2/Z3 loses certain histone modifications, including histone H3 lysine 4 dimethylation (H3K4me2), a conserved marker for transcriptionally competent chromatin. We find that mutations in the maternal-effect gene emb-4 cause defects in both PIE-1 degradation and germline-specific chromatin remodeling. emb-4 encodes a highly conserved protein with orthologs in fly, mouse, and human and has a subtle role in Notch signaling. The embryonic phenotype of emb-4 is consistent with a defect in the efficient and timely activation of developmental programs, including germline chromatin remodeling. We also find that, as in early somatic blastomeres, the degradation of PIE-1 in Z2/Z3 is facilitated by zinc-finger-interacting protein ZIF-1, and in the absence of either zif-1 or emb-4, PIE-1 is abnormally retained in Z2/Z3.
机译:在秀丽隐杆线虫中,种系卵裂球最初被母本加载的CCCH锌指蛋白PIE-1保持转录静止。 PIE-1在原始生殖细胞Z2和Z3出生时就消失了,但这些细胞似乎保持静止。先前我们已经证明,存在基于染色质的抑制作用,该抑制作用可以成功实现PIE-1降解。 Z2 / Z3中的染色质会丢失某些组蛋白修饰,包括组蛋白H3赖氨酸4甲基化(H3K4me2),这是转录能力染色质的保守标记。我们发现母体效应基因emb-4中的突变会导致PIE-1降解和种系特异性染色质重塑方面的缺陷。 emb-4在果蝇,小鼠和人类中与直系同源物一起编码高度保守的蛋白质,并且在Notch信号传导中具有微妙的作用。 emb-4的胚胎表型与包括种系染色质重塑在内的发育程序的有效及时激活中的缺陷一致。我们还发现,与早期的体细胞卵裂球一样,锌指相互作用蛋白ZIF-1促进了Z2 / Z3中PIE-1的降解,而在没有zif-1或emb-4的情况下,PIE- Z2 / Z3中异常保留了1。

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