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组蛋白 H3S10 磷酸化标记对于在果蝇中对抗异染色质扩散和基因沉默是必需的。

The epigenetic H3S10 phosphorylation mark is required for counteracting heterochromatic spreading and gene silencing in Drosophila melanogaster.

机构信息

Department of Biochemistry, Biophysics and Molecular Biology, Iowa State University Ames, IA 50011, USA.

出版信息

J Cell Sci. 2011 Dec 15;124(Pt 24):4309-17. doi: 10.1242/jcs.092585.

Abstract

The JIL-1 kinase localizes specifically to euchromatin interband regions of polytene chromosomes and is the kinase responsible for histone H3S10 phosphorylation at interphase. Genetic interaction assays with strong JIL-1 hypomorphic loss-of-function alleles have demonstrated that the JIL-1 protein can counterbalance the effect of the major heterochromatin components on position-effect variegation (PEV) and gene silencing. However, it is unclear whether this was a causative effect of the epigenetic H3S10 phosphorylation mark, or whether the effect of the JIL-1 protein on PEV was in fact caused by other functions or structural features of the protein. By transgenically expressing various truncated versions of JIL-1, with or without kinase activity, and assessing their effect on PEV and heterochromatic spreading, we show that the gross perturbation of polytene chromosome morphology observed in JIL-1 null mutants is unrelated to gene silencing in PEV and is likely to occur as a result of faulty polytene chromosome alignment and/or organization, separate from epigenetic regulation of chromatin structure. Furthermore, the findings provide evidence that the epigenetic H3S10 phosphorylation mark itself is necessary for preventing the observed heterochromatic spreading independently of any structural contributions from the JIL-1 protein.

摘要

JIL-1 激酶特异性定位于多线染色体的常染色质带间区,是负责间期组蛋白 H3S10 磷酸化的激酶。与强 JIL-1 功能缺失突变等位基因的遗传相互作用测定表明,JIL-1 蛋白可以抵消主要异染色质成分对位置效应变异(PEV)和基因沉默的影响。然而,目前尚不清楚这种表观遗传 H3S10 磷酸化标记是否是造成这种影响的原因,还是 JIL-1 蛋白对 PEV 的影响实际上是由该蛋白的其他功能或结构特征引起的。通过转染表达具有或不具有激酶活性的各种截短形式的 JIL-1,并评估它们对 PEV 和异染色质扩散的影响,我们表明 JIL-1 缺失突变体中观察到的多线染色体形态的严重扰动与 PEV 中的基因沉默无关,可能是由于多线染色体排列和/或组织的错误,而与染色质结构的表观遗传调控无关。此外,这些发现提供了证据表明,表观遗传 H3S10 磷酸化标记本身对于防止观察到的异染色质扩散是必要的,而与 JIL-1 蛋白的任何结构贡献无关。

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