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染色体大小和起源作为人类着丝粒中CENP-A掺入水平的决定因素。

Chromosome size and origin as determinants of the level of CENP-A incorporation into human centromeres.

作者信息

Irvine Danielle V, Amor David J, Perry Jo, Sirvent Nicolas, Pedeutour Florence, Choo K H Andy, Saffery Richard

机构信息

The Murdoch Childrens Research Institute, Royal Children's Hospital, Flemington Road, Parkville 3052, Australia.

出版信息

Chromosome Res. 2004;12(8):805-15. doi: 10.1007/s10577-005-5377-4.

Abstract

We have expressed an EGFP-CENP-A fusion protein in human cells in order to quantitate the level of CENP-A incorporated into normal and variant human centromeres. The results revealed a 3.2-fold difference in the level of CENP-A incorporation into alpha-satellite repeat DNA-based centromeres, with the Y centromere showing the lowest level of all normal human chromosomes. Identification of individual chromosomes revealed a statistically significant, though not absolute, correlation between chromosome size and CENP-A incorporation. Analysis of three independent neocentromeres revealed a significantly reduced level of CENP-A compared to normal centromeres. Truncation of a neocentric marker chromosome to produce a minichromosome further reduced CENP-A levels, indicating a remodelling of centromeric chromatin. These results suggest a role for increased CENP-A incorporation in the faithful segregation of larger chromosomes and support a model of centromere evolution in which neocentromeres represent ancestral centromeres that, through adaptive evolution, acquire satellite repeats to facilitate the incorporation of higher numbers of CENP-A containing nucleosomes, thereby facilitating the assembly of larger kinetochore structures.

摘要

我们在人类细胞中表达了一种EGFP-CENP-A融合蛋白,以便定量掺入正常和变异人类着丝粒的CENP-A水平。结果显示,基于α-卫星重复DNA的着丝粒中CENP-A掺入水平存在3.2倍的差异,其中Y着丝粒在所有正常人类染色体中显示出最低水平。对单个染色体的鉴定揭示了染色体大小与CENP-A掺入之间存在统计学上显著但非绝对的相关性。对三个独立的新着丝粒的分析显示,与正常着丝粒相比,CENP-A水平显著降低。将一条新着丝粒标记染色体截短以产生一条小染色体,进一步降低了CENP-A水平,表明着丝粒染色质发生了重塑。这些结果表明,增加CENP-A掺入在较大染色体的忠实分离中发挥作用,并支持一种着丝粒进化模型,其中新着丝粒代表祖先着丝粒,通过适应性进化,获得卫星重复序列以促进更多含CENP-A核小体的掺入,从而促进更大动粒结构的组装。

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