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CTCF: making the right connections

机译:CTCF:建立正确的连接

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摘要

The role of the zinc finger protein CTCF in organizing the genome within the nucleus is now well established. Widely separated sites on DNA, occupied by both CTCF and the cohesin complex, make physical contacts that create large loop domains. Additional contacts between loci within those domains, often also mediated by CTCF, tend to be favored over contacts between loci in different domains. A large number of studies during the past 2 years have addressed the questions: How are these loops generated? What are the effects of disrupting them? Are there rules governing large-scale genome organization? It now appears that the strongest and evolutionarily most conserved of these CTCF interactions have specific rules for the orientation of the paired CTCF sites, implying the existence of a nonequilibrium mechanism of generation. Recent experiments that invert, delete, or inactivate one of a mating CTCF pair result in major changes in patterns of organization and gene expression in the surrounding regions. What remain to be determined are the detailed molecular mechanisms for re-establishing loop domains and maintaining them after replication and mitosis. As recently published data show, some mechanisms may involve interactions with noncoding RNAs as well as protein cofactors. Many CTCF sites are also involved in other functions such as modulation of RNA splicing and specific regulation of gene expression, and the relationship between these activities and loop formation is another unanswered question that should keep investigators occupied for some time.
机译:锌指蛋白CTCF在组织细胞核内的基因组中的作用现已确立。 DNA上广泛分开的位点(由CTCF和粘着蛋白复合物占据)形成物理接触,从而形成大的环结构域。通常也由CTCF介导的那些域内基因座之间的其他接触往往比不同域内基因座之间的接触更受青睐。在过去的两年中,大量研究解决了以下问题:这些循环是如何产生的?破坏它们有什么影响?是否有管理大规模基因组组织的规则?现在看来,这些CTCF相互作用中最强且进化最保守的对于成对的CTCF位点的取向具有特定的规则,这意味着存在一种非平衡机制。反转,删除或使一对配对的CTCF对失活的最新实验导致周围区域的组织和基因表达模式发生重大变化。尚待确定的是重新建立环域并在复制和有丝分裂后维持它们的详细分子机制。如最近发表的数据所示,某些机制可能涉及与非编码RNA以及蛋白质辅因子的相互作用。许多CTCF位点还涉及其他功能,例如RNA剪接的调节和基因表达的特定调节,这些活动与环形成之间的关系是另一个悬而未决的问题,应该使研究人员占据一段时间。

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