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Neocentromeres: A Place for Everything and Everything in Its Place

机译:新着丝粒:万物之地万物之地

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摘要

Centromeres are essential for chromosome inheritance and genome stability. Centromeric proteins, including the centromeric histone CENP-A, define the site of centromeric chromatin and kinetochore assembly. In many organisms, centromeres are located in or near regions of repetitive DNA. However, some atypical centromeres spontaneously form on unique sequences. These neocentromeres, or new centromeres, were first identified in humans, but have since been described in other organisms. Neocentromeres are functionally and structurally similar to endogenous centromeres, but lack the added complication of underlying repetitive sequences. Here, we discuss recent studies in chicken and fungal systems where genomic engineering can promote neocentromere formation. These studies reveal key genomic and epigenetic factors that support de novo centromere formation in eukaryotes.
机译:着丝粒对于染色体遗传和基因组稳定性至关重要。着丝粒蛋白,包括着丝粒组蛋白CENP-A,定义了着丝粒染色质和动粒组装的位点。在许多生物中,着丝粒位于重复DNA的区域内或附近。但是,一些非典型的着丝粒在独特序列上自发形成。这些新着丝粒或新着丝粒首先在人类中发现,但此后已在其他生物中得到描述。新着丝粒在功能和结构上与内源着丝粒相似,但是缺乏潜在的重复序列的复杂性。在这里,我们讨论了在鸡和真菌系统中的最新研究,其中基因组工程可以促进新着丝粒的形成。这些研究揭示了支持真核生物从新着丝粒形成的关键基因组和表观遗传因素。

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