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Histone H1 Variants in Arabidopsis Are Subject to Numerous Post-Translational Modifications, Both Conserved and Previously Unknown in Histones, Suggesting Complex Functions of H1 in Plants

机译:拟南芥中的组蛋白H1变体受多种翻译后修饰的影响,既保守又以前在组蛋白中未知,表明植物中H1的复杂功能

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摘要

Linker histones (H1s) are conserved and ubiquitous structural components of eukaryotic chromatin. Multiple non-allelic variants of H1, which differ in their DNA/nucleosome binding properties, co-exist in animal and plant cells and have been implicated in the control of genetic programs during development and differentiation. Studies in mammals and Drosophila have revealed diverse post-translational modifications of H1s, most of which are of unknown function. So far, it is not known how this pattern compares with that of H1s from other major lineages of multicellular Eukaryotes. Here, we show that the two main H1variants of a model flowering plant Arabidopsis thaliana are subject to a rich and diverse array of post-translational modifications. The distribution of these modifications in the H1 molecule, especially in its globular domain (GH1), resembles that occurring in mammalian H1s, suggesting that their functional significance is likely to be conserved. While the majority of modifications detected in Arabidopsis H1s, including phosphorylation, acetylation, mono- and dimethylation, formylation, crotonylation and propionylation, have also been reported in H1s of other species, some others have not been previously identified in histones.
机译:接头组蛋白(H1s)是真核染色质的保守结构和遍在结构。 H1的多个非等位基因变体,其DNA /核小体结合特性不同,共存在于动植物细胞中,并涉及发育和分化过程中遗传程序的控制。在哺乳动物和果蝇中的研究表明,H1具有多种翻译后修饰,其中大多数功能未知。到目前为止,还不知道这种模式与多细胞真核生物其他主要谱系的H1相比如何。在这里,我们显示了模型开花植物拟南芥的两个主要H1变体都经历了丰富多样的翻译后修饰。这些修饰在H1分子中的分布,特别是在其球状结构域(GH1)中的分布类似于在哺乳动物H1中发生的分布,这表明它们的功能重要性很可能得以保留。虽然在拟南芥属H1中检测到的大多数修饰,包括磷酸化,乙酰化,单和二甲基化,甲酰化,巴豆酰化和丙酰化,也已在其他物种的H1中进行了报道,但其他一些先前未在组蛋白中鉴定出来。

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