首页> 美国卫生研究院文献>Nucleic Acids Research >A damage-recognition protein which binds to DNA containing interstrand cross-links is absent or defective in Fanconi anemia complementation group A cells.
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A damage-recognition protein which binds to DNA containing interstrand cross-links is absent or defective in Fanconi anemia complementation group A cells.

机译:在范可尼贫血(互补组A)的细胞中缺失或缺陷的与含有链间交联键的DNA结合的损伤识别蛋白。

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摘要

A DNA binding protein with specificity for DNA containing interstrand cross-links induced by 4,5',8-trimethylpsoralen (TMP) plus long wavelength ultraviolet (UVA) light has been identified in normal human chromatin. Protein binding to DNA was determined using a gel mobility shift assay and an oligonucleotide containing a hot spot for formation of psoralen interstrand cross-links. Specificity of the damage-recognition protein for cross-links was demonstrated both by a positive correlation between level of cross-link formation in DNA and extent of protein binding and by effective competition by treated but not undamaged DNA for the binding protein. Chromatin protein extracts from cells from individuals with the genetic disorder, Fanconi anemia, complementation group A (FA-A), which have decreased ability to repair damage produced by TMP plus UVA light, failed to show any protein binding to TMP plus UVA treated DNA. We have previously shown that these chromatin protein extracts contain a DNA endonuclease complex, pI 4.6, which specifically recognizes and incises DNA containing interstrand cross-links and which in FA-A cells is defective in its ability to incise this damaged DNA (Lambert et al. (1992) Mutation Res., 273, 57-71). Together, these findings suggest that the DNA binding protein identified is involved in recognition and repair of DNA interstrand cross-links.
机译:在正常的人类染色质中已鉴定出一种DNA结合蛋白,该蛋白对含有由4,5',8-三甲基补骨脂素(TMP)加上长波紫外线(UVA)诱导的链间交联的DNA具有特异性。使用凝胶迁移率移动测定法和包含用于形成补骨脂素链间交联的热点的寡核苷酸来确定与DNA的蛋白质结合。损伤识别蛋白对交联的特异性通过DNA中交联形成水平和蛋白结合程度之间的正相关以及通过已处理但未损坏的DNA对结合蛋白的有效竞争来证明。患有遗传性疾病,范科尼贫血,互补组A(FA-A)的个体细胞中的染色质蛋白提取物,其修复TMP和UVA光产生的损伤的能力降低,但未显示任何蛋白与TMP和UVA处理的DNA结合。先前我们已经证明这些染色质蛋白提取物包含DNA核酸内切酶复合物pI 4.6,该复合物特异性识别并切出含有链间交联的DNA,并且在FA-A细胞中其切割这种受损DNA的能力存在缺陷(Lambert等(1992)Mutation Res。,273,57-71)。总之,这些发现表明,鉴定出的DNA结合蛋白参与DNA链间交联的识别和修复。

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