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The bacterial chromosome: architecture and action of bacterial SMC and SMC-like complexes

机译:细菌染色体:细菌SMC和SMC样复合物的结构和作用

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摘要

Structural Maintenance of Chromosomes (SMC) protein complexes are found in all three domains of life. They are characterized by a distinctive and conserved architecture in which a globular ATPase ‘head’ domain is formed by the N- and C-terminal regions of the SMC protein coming together, with a c. 50-nm-long antiparallel coiled-coil separating the head from a dimerization ‘hinge’. Dimerization gives both V- and O-shaped SMC dimers. The distinctive architecture points to a conserved biochemical mechanism of action. However, the details of this mechanism are incomplete, and the precise ways in which this mechanism leads to the biological functions of these complexes in chromosome organization and processing remain unclear. In this review, we introduce the properties of bacterial SMC complexes, compare them with eukaryotic complexes and discuss how their likely biochemical action relates to their roles in chromosome organization and segregation.
机译:在生活的所有三个领域中都发现了染色体(SMC)蛋白复合物的结构维护。它们的特点是独特且保守的结构,其中球形ATPase“头部”结构域由SMC蛋白的N和C末端区域结合在一起形成,并带有c。 50纳米长的反平行螺旋线圈将头部与二聚化的“铰链”分开。二聚化产生V型和O型SMC二聚体。独特的架构指向了保守的生物化学作用机制。但是,该机制的细节尚不完整,尚不清楚该机制导致这些复合物在染色体组织和加工中的生物学功能的确切方式。在这篇综述中,我们介绍了细菌SMC复合物的特性,将它们与真核复合物进行了比较,并讨论了它们可能的生化作用如何与其在染色体组织和分离中的作用有关。

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