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在着色性干皮病变异细胞中,在基因特异性水平检测到补骨脂素加合物的复制缺陷。

Defective replication of psoralen adducts detected at the gene-specific level in xeroderma pigmentosum variant cells.

作者信息

Misra R R, Vos J M

机构信息

UNC-Lineberger Comprehensive Cancer Center, Chapel Hill 27599-7295.

出版信息

Mol Cell Biol. 1993 Feb;13(2):1002-12. doi: 10.1128/mcb.13.2.1002-1012.1993.

Abstract

Replication of damaged DNA is suspected to play an important role in cell cycle, genetic stability, and survival pathways. Using psoralen photoaddition as prototype DNA damage and the renaturing agarose gel electrophoresis technique to measure DNA cross-linking in individual genes, Vos and Hanawalt previously observed efficient bypass replication of psoralen monoadducts in human genes (J.-M. H. Vos and P. C. Hanawalt, Cell 50:789-799, 1987). To understand the mechanism of bypass replication in human cells, mutants affected in such a process would be useful. We now report that cells from individuals suffering from the hereditary recessive syndrome xeroderma pigmentosum variant (XPV) are hypersensitive to killing induced by photoactivated psoralen. In addition, analysis of psoralen-mediated DNA cross-linking in the rRNA genes indicated that although repair of psoralen adducts was similar to that of normal individuals, XPV cells were markedly deficient in the ability to bypass psoralen adducts during replication; in comparison with normal cells, approximately half as many monoadducts were bypassed during replication in XPV cells. Furthermore, in contrast to normal cells, replication of interstrand cross-links was not detected in XPV. This is the first demonstration of a deficiency in bypass replication detected at the gene-specific level in vivo. A model involving a strand-specific defect in recombinational bypass in XPV is proposed.

摘要

受损DNA的复制被认为在细胞周期、遗传稳定性和生存途径中发挥重要作用。Vos和Hanawalt此前以补骨脂素光加成作为DNA损伤的原型,并使用复性琼脂糖凝胶电泳技术来测量单个基因中的DNA交联,观察到补骨脂素单加合物在人类基因中能有效进行跨损伤复制(J.-M. H. Vos和P. C. Hanawalt,《细胞》50:789 - 799,1987年)。为了解人类细胞中跨损伤复制的机制,在此过程中受影响的突变体将很有用。我们现在报告,患有遗传性隐性综合征着色性干皮病变异型(XPV)的个体的细胞对光活化补骨脂素诱导的杀伤高度敏感。此外,对rRNA基因中补骨脂素介导的DNA交联分析表明虽然补骨脂素加合物的修复与正常个体相似,但XPV细胞在复制过程中跨损伤绕过补骨脂素加合物的能力明显不足;与正常细胞相比在XPV细胞复制过程中跨损伤绕过的单加合物数量大约只有正常细胞的一半。此外,与正常细胞不同,在XPV细胞中未检测到链间交联的复制。这是首次在体内基因特异性水平检测到跨损伤复制缺陷。提出了一个涉及XPV重组跨损伤中链特异性缺陷的模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3fcf/358985/cc6d05807405/molcellb00014-0292-a.jpg

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