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Initiation of DNA replication in the dihydrofolate reductase locus is confined to the early S period in CHO cells synchronized with the plant amino acid mimosine.

机译:在二氢叶酸还原酶基因座中DNA复制的起始被限制在与植物氨基酸含羞草碱同步的CHO细胞中的早期S期。

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摘要

In previous studies, we used two complementary two-dimensional gel electrophoretic methods to examine replication intermediates in the 240-kb amplified dihydrofolate reductase (DHFR) domain of methotrexate-resistant CHOC 400 cells (J. P. Vaughn, P. A. Dijkwel, and J. L. Hamlin, Cell 61:1075-1087, 1990). Surprisingly, in both asynchronous and early-S-phase cultures, initiation bubbles were detected in several contiguous fragments from a previously defined 28-kb initiation locus. However, because of the low levels of bubblelike structures observed on gels, it has been suggested that these structures might represent artifacts, possibly unrelated to replication per se. In this study, we have achieved much more synchronous entry into S phase by using a novel inhibitor and have isolated replication intermediates by a new procedure that largely eliminates branch migration and shear. Under these conditions, we find that (i) the relative number of bubblelike structures detected in fragments from the initiation locus is markedly increased, (ii) bubbles are detected at multiple sites scattered throughout the region lying between the DHFR and 2BE2121 genes, and (iii) bubbles appear and disappear in this region with the kinetics expected of an early-firing origin. These data strengthen the proposal that in vivo, initiation can occur at any of a large number of sites scattered throughout a broad zone in the DHFR domain.
机译:在以前的研究中,我们使用了两种互补的二维凝胶电泳方法来研究耐甲氨蝶呤的CHOC 400细胞240 kb扩增的二氢叶酸还原酶(DHFR)域中的复制中间体(JP Vaughn,PA Dijkwel和JL Hamlin,Cell 61) :1075-1087,1990)。令人惊讶的是,在异步培养和早期S期培养中,在先前定义的28kb起始位点的多个连续片段中均检测到起始气泡。然而,由于在凝胶上观察到的气泡状结构的水平较低,因此已经提出这些结构可能代表伪影,可能与复制本身无关。在这项研究中,我们已经通过使用新型抑制剂实现了更同步地进入S相,并通过一种新的程序分离了复制中间体,该程序可以很大程度上消除分支迁移和剪切。在这些条件下,我们发现(i)从起始基因座的片段中检测到的气泡状结构的相对数量显着增加,(ii)在分散在DHFR和2BE2121基因之间的整个区域的多个位点检测到气泡,并且( iii)气泡在该区域出现和消失,并具有预期的早期燃烧动力学。这些数据加强了这样的建议,即体内起始可以发生在分散在DHFR域中一个宽阔区域的大量位点中的任何位点。

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    Dijkwel, P A; Hamlin, J L;

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  • 年度 1992
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