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Rings bracelet or snaps: fashionable alternatives for Smc complexes

机译:戒指手镯或按扣:Smc配合物的时尚替代品

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摘要

The mechanism of higher order chromosome organization has eluded researchers for over 100 years. A breakthrough occurred with the discovery of multi-subunit protein complexes that contain a core of two molecules from the structural maintenance of chromosome (Smc) family. Smc complexes are important structural components of chromosome organization in diverse aspects of DNA metabolism, including sister chromatid cohesion, condensation, global gene repression, DNA repair and homologous recombination. In these different processes, Smc complexes may facilitate chromosome organization by tethering together two parts of the same or different chromatin strands. The mechanism of tethering by Smc complexes remains to be elucidated, but a number of intriguing topological alternatives are suggested by the unusual structural features of Smc complexes, including their large coiled-coil domains and ATPase activities. Distinguishing between these possibilities will require innovative new approaches.
机译:高阶染色体组织的机制已经使研究人员望而却步,已有100多年的历史了。突破发现了多亚基蛋白质复合物,该复合物包含来自染色体(Smc)家族结构的两个分子的核心。 Smc复合体是DNA代谢各个方面的染色体组织的重要结构组成部分,包括姐妹染色单体凝聚,凝聚,整体基因抑制,DNA修复和同源重组。在这些不同的过程中,Smc复合物可通过将相同或不同染色质链的两个部分拴在一起来促进染色体组织。 Smc配合物的束缚机制仍有待阐明,但是Smc配合物的不寻常结构特征(包括它们的大卷曲螺旋结构域和ATPase活性)提示了许多有趣的拓扑选择。在这些可能性之间进行区分将需要创新的新方法。

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