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组蛋白基因拷贝数减少会破坏果蝇多梳功能。

Reduced histone gene copy number disrupts Drosophila Polycomb function.

机构信息

Curriculum in Genetics and Molecular Biology, University of North Carolina, Chapel Hill, NC, 27599USA.

Integrative Program for Biological and Genome Sciences, University of North Carolina, Chapel Hill, NC, 27599, USA.

出版信息

Genetics. 2023 Aug 9;224(4). doi: 10.1093/genetics/iyad106.

Abstract

The chromatin of animal cells contains two types of histones: canonical histones that are expressed during S phase of the cell cycle to package the newly replicated genome, and variant histones with specialized functions that are expressed throughout the cell cycle and in non-proliferating cells. Determining whether and how canonical and variant histones cooperate to regulate genome function is integral to understanding how chromatin-based processes affect normal and pathological development. Here, we demonstrate that variant histone H3.3 is essential for Drosophila development only when canonical histone gene copy number is reduced, suggesting that coordination between canonical H3.2 and variant H3.3 expression is necessary to provide sufficient H3 protein for normal genome function. To identify genes that depend upon, or are involved in, this coordinate regulation we screened for heterozygous chromosome 3 deficiencies that impair development of flies bearing reduced H3.2 and H3.3 gene copy number. We identified two regions of chromosome 3 that conferred this phenotype, one of which contains the Polycomb gene, which is necessary for establishing domains of facultative chromatin that repress master regulator genes during development. We further found that reduction in Polycomb dosage decreases viability of animals with no H3.3 gene copies. Moreover, heterozygous Polycomb mutations result in de-repression of the Polycomb target gene Ubx and cause ectopic sex combs when either canonical or variant H3 gene copy number is reduced. We conclude that Polycomb-mediated facultative heterochromatin function is compromised when canonical and variant H3 gene copy number falls below a critical threshold.

摘要

动物细胞的染色质包含两种组蛋白

经典组蛋白,在细胞周期的 S 期表达,用于包装新复制的基因组;以及具有特殊功能的变体组蛋白,在整个细胞周期和非增殖细胞中表达。确定经典组蛋白和变体组蛋白是否以及如何合作来调节基因组功能,对于理解基于染色质的过程如何影响正常和病理发育是至关重要的。在这里,我们证明了只有在经典组蛋白基因拷贝数减少的情况下,变体组蛋白 H3.3 对果蝇的发育才是必需的,这表明经典 H3.2 和变体 H3.3 表达之间的协调对于提供足够的 H3 蛋白以维持正常的基因组功能是必要的。为了鉴定依赖于或参与这种协调调控的基因,我们筛选了杂合染色体 3 缺失,这些缺失会损害携带 H3.2 和 H3.3 基因拷贝数减少的果蝇的发育。我们鉴定出了染色体 3 的两个区域,这些区域赋予了这种表型,其中一个区域包含 Polycomb 基因,该基因对于建立在发育过程中抑制主调控基因的兼性染色质域是必要的。我们进一步发现,降低 Polycomb 的剂量会降低没有 H3.3 基因拷贝的动物的存活率。此外,杂合 Polycomb 突变导致 Polycomb 靶基因 Ubx 的去抑制,并在经典或变体 H3 基因拷贝数减少时引起异位性梳。我们的结论是,当经典和变体 H3 基因拷贝数下降到一个临界阈值以下时,Polycomb 介导的兼性异染色质功能就会受到损害。

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