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人类端粒区域(16p13.3)的复制模式:其与染色体结构和基因表达的关系。

The pattern of replication at a human telomeric region (16p13.3): its relationship to chromosome structure and gene expression.

作者信息

Smith Z E, Higgs D R

机构信息

MRC Molecular Haematology Unit, Institute of Molecular Medicine, John Radcliffe Hospital, Headington, Oxford OX3 9DS, UK.

出版信息

Hum Mol Genet. 1999 Aug;8(8):1373-86. doi: 10.1093/hmg/8.8.1373.

Abstract

We have studied replication throughout 325 kb of the telomeric region of a human chromosome (16p13.3) and related the findings to various aspects of chromosome structure and function (DNA sequence organization, nuclease-hypersensitive sites, nuclear matrix attachment sites, patterns of methylation and gene expression). The GC-rich isochore lying adjacent to the telomere, which contains the alpha-globin locus and many widely expressed genes, replicates early in the cell cycle regardless of the pattern of gene expression. In subtelomeric DNA, replication occurs later in the cell cycle and the most telomeric region (20 kb) is late replicating. Juxtaposition of early replicating DNA next to the telomere causes it to replicate later in S-phase. Analysis of the timing of replication in chromosomes with deletions, or in transgenes containing various segments of this telomeric region, suggests that there are no critical origins or zones that initiate replication, rather the pattern of replication appears to be related to the underlying chromatin structure which may restrict or facilitate access to multiple, redundant origins. These results contrast with the pattern of replication at the human beta-globin locus and this may similarly reflect the different chromosomal environments containing these gene clusters.

摘要

我们研究了人类染色体(16p13.3)端粒区域325kb范围内的复制情况,并将研究结果与染色体结构和功能的各个方面(DNA序列组织、核酸酶超敏位点、核基质附着位点、甲基化模式和基因表达)相关联。与端粒相邻的富含GC的等臂染色体,包含α-珠蛋白基因座和许多广泛表达的基因,无论基因表达模式如何,在细胞周期早期进行复制。在亚端粒DNA中,复制发生在细胞周期后期,最靠近端粒的区域(20kb)复制较晚。端粒旁早期复制DNA的并列使其在S期后期复制。对缺失染色体或含有该端粒区域不同片段的转基因的复制时间分析表明,不存在启动复制的关键起始点或区域,相反,复制模式似乎与潜在的染色质结构有关,染色质结构可能会限制或促进对多个冗余起始点的访问。这些结果与人类β-珠蛋白基因座的复制模式形成对比,这同样可能反映了包含这些基因簇的不同染色体环境。

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