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Chriz-Z4 复合物将 JIL-1 招募到多线染色体上,这是 H3S10 带间特异性磷酸化的必要条件。

The Chriz-Z4 complex recruits JIL-1 to polytene chromosomes, a requirement for interband-specific phosphorylation of H3S10.

机构信息

Humboldt University Berlin, Institute for Biology, Cytogenetics Section, Chausseestr. 117, D10115 Berlin, Germany.

出版信息

J Biosci. 2011 Aug;36(3):425-38. doi: 10.1007/s12038-011-9089-y.

Abstract

The conserved band-interband pattern is thought to reflect the looped-domain organization of insect polytene chromosomes. Previously, we have shown that the chromodomain protein Chriz and the zinc-finger protein Z4 are essentially required for the maintenance of polytene chromosome structure. Here we show that both proteins form a complex that recruits the JIL-1 kinase to polytene chromosomes, enabling local H3S10 phosphorylation of interband nucleosomal histones. Interband targeting domains were identified at the N-terminal regions of Chriz and Z4, and our data suggest partial cooperation of the complex with the BEAF boundary element protein in polytene and diploid cells. Reducing the core component Chriz by RNAi results in destabilization of the complex and a strong reduction of interband-specific histone H3S10 phosphorylation.

摘要

保守的带间带模式被认为反映了昆虫多线染色体的环域组织。以前,我们已经表明,染色质域蛋白 Chriz 和锌指蛋白 Z4 对于多线染色体结构的维持是必不可少的。在这里,我们表明这两种蛋白质形成一个复合物,将 JIL-1 激酶募集到多线染色体上,从而使核小体组蛋白的 H3S10 在带间发生局部磷酸化。在 Chriz 和 Z4 的 N 端区域鉴定到带间靶向结构域,并且我们的数据表明该复合物与 BEAF 边界元件蛋白在多线体和二倍体细胞中存在部分合作。通过 RNAi 降低核心成分 Chriz 会导致复合物的不稳定性,并强烈降低带间特异性组蛋白 H3S10 的磷酸化。

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