凝析蛋白IDC、DPY-21和CEC-4维持秀丽隐杆线虫的X染色体抑制。

IF 4 2区 生物学 Q1 GENETICS & HEREDITY
PLoS Genetics Pub Date : 2025-04-09 eCollection Date: 2025-04-01 DOI:10.1371/journal.pgen.1011247
Jessica Trombley, Audry I Rakozy, Christian A McClear, Eshna Jash, Györgyi Csankovszki
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引用次数: 0

摘要

秀丽隐杆线虫的剂量补偿使XX雌雄同体和XO雄性之间的x连锁基因表达相等。这一过程依赖于含有凝缩素的剂量补偿复合体(DCC),它与雌雄同体中的X染色体结合,以2倍的速度抑制基因表达。在雌雄同体的早期胚胎发育过程中,凝缩素IDC和另外五种DCC成分必须存在于X染色体上,以建立剂量补偿。然而,是否需要DCC的持续存在来维持一旦建立的抑制状态尚不清楚。除了凝缩蛋白IDC在X染色体压实中的作用外,还有其他机制有助于X连锁基因的抑制。DPY-21是一种非凝聚蛋白IDC DCC成分,是一种H4K20me2/3去甲基化酶,其活性丰富了X染色体上的抑制组蛋白标记H4赖氨酸20单甲基化。此外,将富含h3k9me3的染色体区域连接到核层的蛋白质CEC-4也有助于x连锁基因的抑制。为了研究凝缩素IDC在雌雄同体幼虫期和成虫期的必要性,我们采用生长素诱导降解系统来消耗凝缩素IDC亚基DPY-27。虽然DPY-27在胚胎阶段耗尽导致死亡,但DPY-27耗尽的幼虫和成虫存活。在这些DPY-27缺失菌株中,凝缩蛋白IDC不再与X染色体相关,X开始去致密化,H4K20me1标记逐渐丢失,导致X连锁基因降低(约1.4倍)。这些结果表明,剂量补偿的稳定维持需要凝血素IDC的持续存在。除了DPY-27缺失或dpy-21基因突变外,cec-4的功能缺失突变导致x连锁基因表达更显著增加(约1.7倍),这表明cec-4有助于稳定凝血素IDC和H4K20me1介导的抑制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Condensin IDC, DPY-21, and CEC-4 maintain X chromosome repression in C. elegans.

Dosage compensation in Caenorhabditis elegans equalizes X-linked gene expression between XX hermaphrodites and XO males. The process depends on a condensin-containing dosage compensation complex (DCC), which binds the X chromosomes in hermaphrodites to repress gene expression by a factor of 2. Condensin IDC and an additional five DCC components must be present on the X during early embryogenesis in hermaphrodites to establish dosage compensation. However, whether the DCC's continued presence is required to maintain the repressed state once established is unknown. Beyond the role of condensin IDC in X chromosome compaction, additional mechanisms contribute to X-linked gene repression. DPY-21, a non-condensin IDC DCC component, is an H4K20me2/3 demethylase whose activity enriches the repressive histone mark, H4 lysine 20 monomethylation, on the X chromosomes. In addition, CEC-4, a protein that tethers H3K9me3-rich chromosomal regions to the nuclear lamina, also contributes to X-linked gene repression. To investigate the necessity of condensin IDC during the larval and adult stages of hermaphrodites, we used the auxin-inducible degradation system to deplete the condensin IDC subunit DPY-27. While DPY-27 depletion in the embryonic stages resulted in lethality, DPY-27 depleted larvae and adults survive. In these DPY-27 depleted strains, condensin IDC was no longer associated with the X chromosome, the X became decondensed, and the H4K20me1 mark was gradually lost, leading to X-linked gene derepression (about 1.4-fold). These results suggest that the stable maintenance of dosage compensation requires the continued presence of condensin IDC. A loss-of-function mutation in cec-4, in addition to the depletion of DPY-27 or the genetic mutation of dpy-21, led to even more significant increases in X-linked gene expression (about 1.7-fold), suggesting that CEC-4 helps stabilize repression mediated by condensin IDC and H4K20me1.

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来源期刊
PLoS Genetics
PLoS Genetics GENETICS & HEREDITY-
自引率
2.20%
发文量
438
期刊介绍: PLOS Genetics is run by an international Editorial Board, headed by the Editors-in-Chief, Greg Barsh (HudsonAlpha Institute of Biotechnology, and Stanford University School of Medicine) and Greg Copenhaver (The University of North Carolina at Chapel Hill). Articles published in PLOS Genetics are archived in PubMed Central and cited in PubMed.
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