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依米丁可通过不平衡的DNA合成来识别哺乳动物DNA复制的起源,而不是通过保守的核小体分离。

Emetine allows identification of origins of mammalian DNA replication by imbalanced DNA synthesis, not through conservative nucleosome segregation.

作者信息

Burhans W C, Vassilev L T, Wu J, Sogo J M, Nallaseth F S, DePamphilis M L

机构信息

Department of Cell and Developmental Biology, Roche Institute of Molecular Biology, Roche Research Center, Nutley, NJ 07110.

出版信息

EMBO J. 1991 Dec;10(13):4351-60. doi: 10.1002/j.1460-2075.1991.tb05013.x.

Abstract

In the presence of emetine, an inhibitor of protein synthesis, nascent DNA on forward arms of replication forks in hamster cell lines containing either single or amplified copies of the DHFR gene region was enriched 5- to 7-fold over nascent DNA on retrograde arms. This forward arm bias was observed on both sides of the specific origin of bidirectional DNA replication located 17 kb downstream of the hamster DHFR gene (OBR-1), consistent with at least 85% of replication forks within this region emanating from OBR-1. However, the replication fork asymmetry induced by emetine does not result from conservative nucleosome segregation, as previously believed, but from preferentially inhibiting Okazaki fragment synthesis on retrograde arms of forks to produce 'imbalanced DNA synthesis'. Three lines of evidence support this conclusion. First, the bias existed in long nascent DNA strands prior to nuclease digestion of non-nucleosomal DNA. Second, the fraction of RNA-primed Okazaki fragments was rapidly diminished. Third, electron microscopic analysis of SV40 DNA replicating in the presence of emetine revealed forks with single-stranded DNA on one arm, and nucleosomes randomly distributed to both arms. Thus, as with cycloheximide, nucleosome segregation in the presence of emetine was distributive.

摘要

在蛋白质合成抑制剂吐根碱存在的情况下,在含有二氢叶酸还原酶(DHFR)基因区域单拷贝或扩增拷贝的仓鼠细胞系中,复制叉前导链上的新生DNA比后随链上的新生DNA富集了5至7倍。在仓鼠DHFR基因下游17 kb处的双向DNA复制的特定起始点(OBR - 1)两侧均观察到这种前导链偏向,这表明该区域内至少85%的复制叉起源于OBR - 1。然而,吐根碱诱导的复制叉不对称并非如先前认为的那样是由于保守的核小体分离,而是由于优先抑制复制叉后随链上冈崎片段的合成以产生“不平衡的DNA合成”。三条证据支持这一结论。第一,在对非核小体DNA进行核酸酶消化之前,长新生DNA链中就存在这种偏向。第二,RNA引发的冈崎片段的比例迅速降低。第三,对在吐根碱存在下复制的SV40 DNA进行电子显微镜分析,结果显示复制叉的一条臂上有单链DNA, 而核小体随机分布在两条臂上。因此,与放线菌酮一样,在吐根碱存在下核小体的分离是分散性的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f862/453188/7c88a107cbea/emboj00111-0354-a.jpg

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