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植物特有的组蛋白残基苯丙氨酸41对全基因组H3.1分布很重要。

The plant-specific histone residue Phe41 is important for genome-wide H3.1 distribution.

作者信息

Lu Li, Chen Xiangsong, Qian Shuiming, Zhong Xuehua

机构信息

Laboratory of Genetics, University of Wisconsin-Madison, Madison, WI, 53706, USA.

Wisconsin Institute for Discovery, University of Wisconsin-Madison, Madison, WI, 53706, USA.

出版信息

Nat Commun. 2018 Feb 12;9(1):630. doi: 10.1038/s41467-018-02976-9.

Abstract

The dynamic incorporation of histone variants influences chromatin structure and many biological processes. In Arabidopsis, the canonical variant H3.1 differs from H3.3 in four residues, one of which (H3.1Phe41) is unique and conserved in plants. However, its evolutionary significance remains unclear. Here, we show that Phe41 first appeared in H3.1 in ferns and became stable during land plant evolution. Unlike H3.1, which is specifically enriched in silent regions, H3.1F41Y variants gain ectopic accumulation at actively transcribed regions. Reciprocal tail and core domain swap experiments between H3.1 and H3.3 show that the H3.1 core, while necessary, is insufficient to restrict H3.1 to silent regions. We conclude that the vascular-plant-specific Phe41 is critical for H3.1 genomic distribution and may act collaboratively with the H3.1 core to regulate deposition patterns. This study reveals that Phe41 may have evolved to provide additional regulation of histone deposition in plants.

摘要

组蛋白变体的动态整合影响染色质结构和许多生物学过程。在拟南芥中,经典变体H3.1与H3.3在四个残基上存在差异,其中一个残基(H3.1Phe41)在植物中是独特且保守的。然而,其进化意义仍不清楚。在这里,我们表明Phe41首次出现在蕨类植物的H3.1中,并在陆地植物进化过程中变得稳定。与特异性富集于沉默区域的H3.1不同,H3.1F41Y变体在活跃转录区域获得异位积累。H3.1和H3.3之间的尾部和核心结构域互换实验表明,H3.1核心虽然是必需的,但不足以将H3.1限制在沉默区域。我们得出结论,维管植物特有的Phe41对H3.1的基因组分布至关重要,并且可能与H3.1核心协同作用来调节沉积模式。这项研究表明,Phe41可能已经进化以在植物中提供对组蛋白沉积的额外调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e638/5809374/f0770482b629/41467_2018_2976_Fig1_HTML.jpg

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