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Repeat performance: how do genome packaging and regulation depend on simple sequence repeats?

机译:重复表现:基因组包装和调控如何取决于简单的序列重复?

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Non-coding DNA has consistently increased during evolution of higher eukaryotes. Since the number of genes has remained relatively static during the evolution of complex organisms, it is believed that increased degree of sophisticated regulation of genes has contributed to the increased complexity. A higher proportion of non-coding DNA, including repeats, is likely to provide more complex regulatory potential. Here, we propose that repeats play a regulatory role by contributing to the packaging of the genome during cellular differentiation. Repeats, and in particular the simple sequence repeats, are proposed to serve as landmarks that can target regulatory mechanisms to a large number of genomic sites with the help of very few factors and regulate the linked loci in a coordinated manner. Repeats may, therefore, function as common target sites for regulatory mechanisms involved in the packaging and dynamic compartmentalization of the chromatin into active and inactive regions during cellular differentiation.
机译:在高级真核生物进化过程中,非编码DNA一直增加。由于在复杂生物的进化过程中基因的数量保持相对静态,因此人们认为基因复杂调控程度的提高导致了复杂性的提高。较高比例的非编码DNA(包括重复序列)可能会提供更复杂的调控潜力。在这里,我们提出重复序列通过促进细胞分化过程中基因组的包装而发挥调节作用。提议重复序列,特别是简单的序列重复序列,作为界标,可以借助很少的因素将调控机制靶向大量的基因组位点,并以协调的方式调控链接的基因座。因此,重复序列可以作为调控机制的共同目标位点,参与细胞分化过程中染色质的包装和动态区分开为活性和非活性区域。

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