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细胞应激对紫外线诱变热点的调控

Modulation of ultraviolet light mutational hotspots by cellular stress.

作者信息

Seetharam S, Seidman M M

机构信息

Laboratory of Molecular Carcinogenesis, National Cancer Institute, NIH, Bethesda, MD 20892.

出版信息

J Mol Biol. 1992 Dec 20;228(4):1031-6. doi: 10.1016/0022-2836(92)90311-7.

Abstract

Stressful treatments of cells provoke broad, transient, changes in cellular physiology and gene expression. In addition to these effects, DNA-damaging agents often induce permanent change in the form of mutations. Mutational patterns in target genes typically show hotspots and coldspots, the molecular basis of which appears to lie in the sequence context of the particular site. We determined the mutational pattern in an ultraviolet light-modified (in vitro) marker gene in a shuttle vector passaged through repair deficient (xeroderma pigmentosum) cells and compared it with patterns obtained from cells exposed to stress imposed by a DNA-damaging agent or a calcium ionophore. We found that the mutational hotspot pattern was altered by both stress treatments. We conclude that the cellular environment can influence the probability of mutagenesis at specific sites and propose that some of these effects on mutagenesis are mediated by alterations in cellular calcium levels.

摘要

对细胞进行应激处理会引发细胞生理和基因表达广泛而短暂的变化。除了这些影响外,DNA损伤剂常常会以突变的形式诱导永久性变化。靶基因中的突变模式通常显示出热点和冷点,其分子基础似乎在于特定位点的序列背景。我们确定了穿梭载体中经紫外线修饰(体外)的标记基因在通过修复缺陷(着色性干皮病)细胞传代后的突变模式,并将其与从暴露于DNA损伤剂或钙离子载体施加的应激的细胞中获得的模式进行比较。我们发现两种应激处理都会改变突变热点模式。我们得出结论,细胞环境会影响特定位点诱变的概率,并提出其中一些对诱变的影响是由细胞钙水平的改变介导的。

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