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Condensin and cohesin display different arm conformations with characteristic hinge angles

机译:凝集素和黏附素显示不同的臂构型,并具有特征性的铰链角度

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摘要

Structural maintenance of chromosomes (SMC) proteins play central roles in higher-order chromosome dynamics from bacteria to humans. In eukaryotes, two different SMC protein complexes, condensin and cohesin, regulate chromosome condensation and sister chromatid cohesion, respectively. Each of the complexes consists of a heterodimeric pair of SMC subunits and two or three non-SMC subunits. Previous studies have shown that a bacterial SMC homodimer has a symmetrical structure in which two long coiled-coil arms are connected by a flexible hinge. A catalytic domain with DNA- and ATP-binding activities is located at the distal end of each arm. We report here the visualization of vertebrate condensin and cohesin by electron microscopy. Both complexes display the two-armed structure characteristic of SMC proteins, but their conformations are remarkably different. The hinge of condensin is closed and the coiled-coil arms are placed close together. In contrast, the hinge of cohesin is wide open and the coiled-coils are spread apart from each other. The non-SMC subunits of both condensin and cohesin form a globular complex bound to the catalytic domains of the SMC heterodimers. We propose that the "closed" conformation of condensin and the "open" conformation of cohesin are important structural properties that contribute to their specialized biochemical and physiological functions.
机译:染色体的结构维持(SMC)蛋白在从细菌到人类的高阶染色体动力学中起着核心作用。在真核生物中,两种不同的SMC蛋白复合物,即凝集素和黏附素,分别调节染色体凝缩和姐妹染色单体黏​​附。每个复合物由SMC亚基的异二聚体对和两个或三个非SMC亚基组成。先前的研究表明,细菌SMC同型二聚体具有对称结构,其中两个长螺旋线圈臂通过柔性铰链连接。具有DNA和ATP结合活性的催化域位于每个臂的远端。我们在这里报告了通过电子显微镜观察的脊椎动物凝缩蛋白和粘着蛋白的可视化。两种复合物均显示SMC蛋白的两臂结构特征,但它们的构象明显不同。冷凝素的铰链关闭,螺旋线圈臂放置在一起。相反,粘着蛋白的铰链是敞开的,并且盘绕的线圈彼此分开。凝集素和粘着素两者的非SMC亚单位形成与SMC异二聚体的催化结构域结合的球形复合物。我们提出凝缩蛋白的“封闭”构象和粘着蛋白的“开放”构象是重要的结构性质,有助于它们的专门生化和生理功能。

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