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着丝粒形成与功能中的DNA序列

DNA Sequences in Centromere Formation and Function.

作者信息

Dumont M, Fachinetti D

机构信息

Institut Curie, PSL Research University, CNRS, UMR 144, 26 rue d'Ulm, 75005, Paris, France.

出版信息

Prog Mol Subcell Biol. 2017;56:305-336. doi: 10.1007/978-3-319-58592-5_13.

Abstract

Faithful chromosome segregation during cell division depends on the centromere, a complex DNA/protein structure that links chromosomes to spindle microtubules. This chromosomal domain has to be marked throughout cell division and its chromosomal localization preserved across cell generations. From fission yeast to human, centromeres are established on a series of repetitive DNA sequences and on specialized centromeric chromatin. This chromatin is enriched with the histone H3 variant, named CENP-A, that was demonstrated to be the epigenetic mark that maintains centromere identity and function indefinitely. Although centromere identity is thought to be exclusively epigenetic, the presence of specific DNA sequences in the majority of eukaryotes and of the centromeric protein CENP-B that binds to these sequences, suggests the existence of a genetic component as well. In this review, we will highlight the importance of centromeric sequences for centromere formation and function, and discuss the centromere DNA sequence/CENP-B paradox.

摘要

细胞分裂过程中染色体的忠实分离依赖于着丝粒,着丝粒是一种复杂的DNA/蛋白质结构,它将染色体与纺锤体微管相连。这个染色体区域在整个细胞分裂过程中都必须被标记,并且其染色体定位在细胞世代间得以保留。从裂殖酵母到人类,着丝粒建立在一系列重复DNA序列和特殊的着丝粒染色质上。这种染色质富含组蛋白H3变体,名为CENP - A,已证明它是一种表观遗传标记,可无限期维持着丝粒的特性和功能。尽管着丝粒特性被认为完全是表观遗传的,但大多数真核生物中特定DNA序列的存在以及与这些序列结合的着丝粒蛋白CENP - B的存在,表明也存在遗传成分。在这篇综述中,我们将强调着丝粒序列对着丝粒形成和功能的重要性,并讨论着丝粒DNA序列/CENP - B的矛盾之处。

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