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Physical and Functional Compartmentalization of Archaeal Chromosomes

机译:archaeal染色体的物理和功能性分区

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摘要

The three-dimensional organization of chromosomes can have a profound impact on their replication and expression. The chromosomes of higher eukaryotes possess discrete compartments that are characterized by differing transcriptional activities. Contrastingly, most bacterial chromosomes have simpler organization with local domains, the boundaries of which are influenced by gene expression. Numerous studies have revealed that the higher-order architectures of bacterial and eukaryotic chromosomes are dependent on the actions of structural maintenance of chromosomes (SMC) superfamily protein complexes, in particular, the near-universal condensin complex. Intriguingly, however, many archaea, including members of the genus Sulfolobus do not encode canonical condensin. We describe chromosome conformation capture experiments on Sulfolobus species. These reveal the presence of distinct domains along Sulfolobus chromosomes that undergo discrete and specific higher-order interactions, thus defining two compartment types. We observe causal linkages between compartment identity, gene expression, and binding of a uncharacterized SMC superfamily protein that we term "coalescin."
机译:染色体的三维组织可能对其复制和表达产生深远的影响。较高真核生物的染色体具有离散隔室,其特征在于不同的转录活动。比较方面,大多数细菌染色体具有更简单的局部结构域的组织,其界限受基因表达的影响。许多研究表明,细菌和真核染色体的高阶架构取决于染色体(SMC)超家族蛋白质复合物的结构维持的作用,特别是近乎通用的夹持复合物。然而,有趣的是,许多古老的古老,包括苏尔菲罗族属的成员不编码规范凝血素。我们描述了亚磺酚物种的染色体构象捕获实验。这些揭示了沿着磺酰染色体的不同结构域的存在,该染色体经历离散和特定的高阶相互作用,从而定义了两个隔间类型。我们观察室间同一性,基因表达和无论如何的无声的SMC超家族蛋白质之间的因果关系,即我们术语“拟合”。

著录项

  • 来源
    《Cell》 |2019年第1期|共33页
  • 作者单位

    Indiana Univ Mol &

    Cellular Biochem Dept Bloomington IN 47405 USA;

    Indiana Univ Mol &

    Cellular Biochem Dept Bloomington IN 47405 USA;

    Indiana Univ Mol &

    Cellular Biochem Dept Bloomington IN 47405 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

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