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色域蛋白Chromator与JIL-1激酶相互作用并调节果蝇多线染色体的结构。

The chromodomain protein, Chromator, interacts with JIL-1 kinase and regulates the structure of Drosophila polytene chromosomes.

作者信息

Rath Uttama, Ding Yun, Deng Huai, Qi Hongying, Bao Xiaomin, Zhang Weiguo, Girton Jack, Johansen Jørgen, Johansen Kristen M

机构信息

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

出版信息

J Cell Sci. 2006 Jun 1;119(Pt 11):2332-41. doi: 10.1242/jcs.02960.

Abstract

In this study we have generated two new hypomorphic Chro alleles and analyzed the consequences of reduced Chromator protein function on polytene chromosome structure. We show that in Chro(71)/Chro(612) mutants the polytene chromosome arms were coiled and compacted with a disruption and misalignment of band and interband regions and with numerous ectopic contacts connecting non-homologous regions. Furthermore, we demonstrate that Chromator co-localizes with the JIL-1 kinase at polytene interband regions and that the two proteins interact within the same protein complex. That both proteins are necessary and may function together is supported by the finding that a concomitant reduction in JIL-1 and Chromator function synergistically reduces viability during development. Overlay assays and deletion construct analysis suggested that the interaction between JIL-1 and Chromator is direct and that it is mediated by sequences in the C-terminal domain of Chromator and by the acidic region within the C-terminal domain of JIL-1. Taken together these findings indicate that Chromator and JIL-1 interact in an interband-specific complex that functions to establish or maintain polytene chromosome structure in Drosophila.

摘要

在本研究中,我们构建了两个新的Chro低表达等位基因,并分析了染色质调节蛋白功能降低对多线染色体结构的影响。我们发现,在Chro(71)/Chro(612)突变体中,多线染色体臂发生卷曲和压缩,带纹和间带区域出现破坏和错位,并且有许多异位接触连接非同源区域。此外,我们证明染色质调节蛋白与JIL-1激酶在多线染色体间带区域共定位,并且这两种蛋白在同一蛋白复合物中相互作用。JIL-1和染色质调节蛋白功能同时降低会在发育过程中协同降低存活率,这一发现支持了这两种蛋白都是必需的且可能共同发挥作用的观点。覆盖分析和缺失构建体分析表明,JIL-1和染色质调节蛋白之间的相互作用是直接的,并且由染色质调节蛋白C末端结构域中的序列以及JIL-1 C末端结构域内的酸性区域介导。综上所述,这些发现表明染色质调节蛋白和JIL-1在一个间带特异性复合物中相互作用,该复合物在果蝇中发挥建立或维持多线染色体结构的作用。

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