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删除复制起点对染色体稳定性的影响。

The effect on chromosome stability of deleting replication origins.

作者信息

Dershowitz A, Newlon C S

机构信息

Department of Microbiology and Molecular Genetics, UMDNJ-New Jersey Medical School, Newark 07103.

出版信息

Mol Cell Biol. 1993 Jan;13(1):391-8. doi: 10.1128/mcb.13.1.391-398.1993.

Abstract

The observed spacing between chromosomal DNA replication origins in Saccharomyces cerevisiae is at least four times shorter than should be necessary to ensure complete replication of chromosomal DNA during the S phase. To test whether all replication origins are required for normal chromosome stability, the loss rates of derivatives of chromosome III from which one or more origins had been deleted were measured. In the case of a 61-kb circular derivative of the chromosome that has two highly active origins and one origin that initiates only 10 to 20% of the time, deletion of either highly active origin increased its rate of loss two- to fourfold. Deletion of both highly active origins caused the ring chromosome to be lost in approximately 20% of cell divisions. This very high rate of loss demonstrates that there are no efficient cryptic origins on the ring chromosome that are capable of ensuring its replication in the absence of the origins that are normally used. Deletion of the same two origins from the full-length chromosome III, which contains more than six replication origins, had no effect on its rate of loss. These results suggest that the increase in the rate of loss of the small circular chromosome from which a single highly active origin was deleted was caused by the failure of the remaining highly active origin to initiate replication in a small fraction (approximately 0.003) of cell cycles.

摘要

在酿酒酵母中观察到的染色体DNA复制起点之间的间距,至少比在S期确保染色体DNA完全复制所需的间距短四倍。为了测试正常染色体稳定性是否需要所有复制起点,测量了已删除一个或多个起点的III号染色体衍生物的丢失率。对于该染色体的一个61 kb环状衍生物,其有两个高活性起点和一个启动频率仅为10%至20%的起点,删除任何一个高活性起点都会使其丢失率增加两到四倍。删除两个高活性起点导致环状染色体在约20%的细胞分裂中丢失。这种极高的丢失率表明,在环状染色体上不存在能够在通常使用的起点缺失时确保其复制的有效隐蔽起点。从包含六个以上复制起点的全长III号染色体中删除相同的两个起点,对其丢失率没有影响。这些结果表明,删除单个高活性起点的小环状染色体丢失率增加,是由于剩余的高活性起点在一小部分(约0.003)细胞周期中未能启动复制所致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6224/358919/a0057cbda6ea/molcellb00013-0421-a.jpg

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