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着丝粒区 CENP-A 结构域的基因组大小与人类着丝粒处的总α卫星阵列大小成比例,并在癌细胞中扩增。

Genomic size of CENP-A domain is proportional to total alpha satellite array size at human centromeres and expands in cancer cells.

机构信息

Duke Institute for Genome Sciences & Policy, Duke University, Durham, NC 27708, USA.

出版信息

Chromosome Res. 2011 May;19(4):457-70. doi: 10.1007/s10577-011-9208-5. Epub 2011 Apr 12.

Abstract

Human centromeres contain multi-megabase-sized arrays of alpha satellite DNA, a family of satellite DNA repeats based on a tandemly arranged 171 bp monomer. The centromere-specific histone protein CENP-A is assembled on alpha satellite DNA within the primary constriction, but does not extend along its entire length. CENP-A domains have been estimated to extend over 2,500 kb of alpha satellite DNA. However, these estimates do not take into account inter-individual variation in alpha satellite array sizes on homologous chromosomes and among different chromosomes. We defined the genomic distance of CENP-A chromatin on human chromosomes X and Y from different individuals. CENP-A chromatin occupied different genomic intervals on different chromosomes, but despite inter-chromosomal and inter-individual array size variation, the ratio of CENP-A to total alpha satellite DNA size remained consistent. Changes in the ratio of alpha satellite array size to CENP-A domain size were observed when CENP-A was overexpressed and when primary cells were transformed by disrupting interactions between the tumor suppressor protein Rb and chromatin. Our data support a model for centromeric domain organization in which the genomic limits of CENP-A chromatin varies on different human chromosomes, and imply that alpha satellite array size may be a more prominent predictor of CENP-A incorporation than chromosome size. In addition, our results also suggest that cancer transformation and amounts of centromeric heterochromatin have notable effects on the amount of alpha satellite that is associated with CENP-A chromatin.

摘要

人类着丝粒包含着由α卫星 DNA 组成的、大小达数百万碱基对的阵列,这是一类基于串联排列的 171bp 单体的卫星 DNA 重复序列。着丝粒特异性组蛋白蛋白 CENP-A 组装在主缢痕内的α卫星 DNA 上,但不会沿着其全长延伸。CENP-A 结构域估计延伸超过 2500kb 的α卫星 DNA。然而,这些估计并未考虑到同源染色体上α卫星阵列大小以及不同染色体之间的个体间变异。我们定义了来自不同个体的人类染色体 X 和 Y 上 CENP-A 染色质的基因组距离。CENP-A 染色质占据了不同染色体上的不同基因组间隔,但尽管存在染色体间和个体间的阵列大小变异,CENP-A 与总α卫星 DNA 大小的比例仍然保持一致。当 CENP-A 过表达或通过破坏肿瘤抑制蛋白 Rb 与染色质之间的相互作用转化原代细胞时,观察到α卫星阵列大小与 CENP-A 结构域大小的比例发生变化。我们的数据支持着丝粒结构域组织的模型,其中 CENP-A 染色质的基因组限制在不同的人类染色体上有所不同,并暗示α卫星阵列大小可能比染色体大小更能预测 CENP-A 的掺入。此外,我们的结果还表明,癌症转化和着丝粒异染色质的数量对与 CENP-A 染色质相关的α卫星数量有显著影响。

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