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功能性人类新着丝粒内富含L1反转录元件的CENP-A簇的可变和分层大小分布。

Variable and hierarchical size distribution of L1-retroelement-enriched CENP-A clusters within a functional human neocentromere.

作者信息

Chueh Anderly C, Wong Lee H, Wong Nicholas, Choo K H Andy

机构信息

Chromosome Research Laboratory, Murdoch Childrens Research Institute, Melbourne University Department of Paediatrics, Royal Children's Hospital, Parkville, Australia.

出版信息

Hum Mol Genet. 2005 Jan 1;14(1):85-93. doi: 10.1093/hmg/ddi008. Epub 2004 Nov 10.

Abstract

Human neocentromeres are fully functional centromeres that arise epigenetically from non-centromeric precursor sequences that are devoid of alpha-satellite DNA. Using chromatin immunoprecipitation (ChIP) and BAC-array analysis, we have previously described a 330 kb binding domain for CENP-A (a histone H3 variant that confers centromere-specific nucleosomal property) at the 10q25 neocentromere found on a chromosome 10-derived marker chromosome mardel(10). For the further detailed analysis of the CENP-A-associated chromatin, we have generated a high-resolution genomic array consisting of PCR fragments with an average size of 8 kb, providing an approximately 20-fold increment in analytical resolution. ChIP and PCR-array analysis reveals seven distinct CENP-A-binding clusters within the 330 kb domain, demonstrating the interspersion of CENP-A-associated nucleosomal blocks within the neocentromeric chromatin. Independent ChIP-PCR analysis verified this distribution profile and indicated that histone H3-containing nucleosomes directly intervene the CENP-A-binding clusters. The CENP-A-binding clusters are uneven in size, with the central cluster (>50 kb) being significantly larger than the flanking ones (10-30 kb), and the flanking clusters arranged in an interesting hierarchical and symmetrical configuration of alternating larger and smaller sizes around the central cluster. In silico sequence analysis indicates an approximately 2.5-fold increase in the prevalence of L1 retroelements within the CENP-A-binding clusters when compared with the non-CENP-A-binding regions. These results provide insight into the possible role of retroelements in determining the positioning of CENP-A binding at human neocentromeres, and that a hierarchical and symmetrical arrangement of CENP-A-binding clusters of varying sizes may be an important structural requirement for mammalian kinetochore assembly and/or to provide stability to withstand polar microtubule forces.

摘要

人类新着丝粒是完全功能性的着丝粒,它们通过表观遗传方式从不含α-卫星DNA的非着丝粒前体序列产生。利用染色质免疫沉淀(ChIP)和BAC阵列分析,我们之前在源自10号染色体的标记染色体mardel(10)上发现的10q25新着丝粒处描述了一个330 kb的CENP-A结合结构域(一种赋予着丝粒特异性核小体特性的组蛋白H3变体)。为了进一步详细分析与CENP-A相关的染色质,我们构建了一个高分辨率基因组阵列,该阵列由平均大小为8 kb的PCR片段组成,分析分辨率提高了约20倍。ChIP和PCR阵列分析揭示了在330 kb结构域内有七个不同的CENP-A结合簇,表明新着丝粒染色质中与CENP-A相关的核小体块相互散布。独立的ChIP-PCR分析验证了这种分布模式,并表明含组蛋白H3的核小体直接介于CENP-A结合簇之间。CENP-A结合簇大小不均,中央簇(>50 kb)明显大于侧翼簇(10 - 30 kb),侧翼簇围绕中央簇以有趣的层次和对称配置排列,大小交替出现。计算机序列分析表明,与非CENP-A结合区域相比,CENP-A结合簇内L1逆转录元件的发生率增加了约2.5倍。这些结果为逆转录元件在确定人类新着丝粒处CENP-A结合定位中的可能作用提供了见解,并且不同大小的CENP-A结合簇的层次和对称排列可能是哺乳动物动粒组装和/或提供稳定性以承受极微管力的重要结构要求。

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