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首页> 外文期刊>Molecular and Cellular Biology >Human ERCC5 cDNA-cosmid complementation for excision repair and bipartite amino acid domains conserved with RAD proteins of Saccharomyces cerevisiae and Schizosaccharomyces pombe.
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Human ERCC5 cDNA-cosmid complementation for excision repair and bipartite amino acid domains conserved with RAD proteins of Saccharomyces cerevisiae and Schizosaccharomyces pombe.

机译:人ERCC5 cDNA-粘粒互补序列用于切除修复和二分氨基酸域,与酿酒酵母和粟酒裂殖酵母的RAD蛋白保守。

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Several human genes related to DNA excision repair (ER) have been isolated via ER cross-species complementation (ERCC) of UV-sensitive CHO cells. We have now isolated and characterized cDNAs for the human ERCC5 gene that complement CHO UV135 cells. The ERCC5 mRNA size is about 4.6 kb. Our available cDNA clones are partial length, and no single clone was active for UV135 complementation. When cDNAs were mixed pairwise with a cosmid clone containing an overlapping 5'-end segment of the ERCC5 gene, DNA transfer produced UV-resistant colonies with 60 to 95% correction of UV resistance relative to either a genomic ERCC5 DNA transformant or the CHO AA8 progenitor cells. cDNA-cosmid transformants regained intermediate levels (20 to 45%) of ER-dependent reactivation of a UV-damaged pSVCATgpt reporter plasmid. Our evidence strongly implicates an in situ recombination mechanism in cDNA-cosmid complementation for ER. The complete deduced amino acid sequence of ERCC5 was reconstructed from several cDNA clones encoding a predicted protein of 1,186 amino acids. The ERCC5 protein has extensive sequence similarities, in bipartite domains A and B, to products of RAD repair genes of two yeasts, Saccharomyces cerevisiae RAD2 and Schizosaccharomyces pombe rad13. Sequence, structural, and functional data taken together indicate that ERCC5 and its relatives are probable functional homologs. A second locus represented by S. cerevisiae YKL510 and S. pombe rad2 genes is structurally distinct from the ERCC5 locus but retains vestigial A and B domain similarities. Our analyses suggest that ERCC5 is a nuclear-localized protein with one or more highly conserved helix-loop-helix segments within domains A and B.
机译:已通过紫外线敏感的CHO细胞的ER跨物种互补(ERCC)分离了与DNA切除修复(ER)相关的几种人类基因。现在,我们已经分离并鉴定了与CHO UV135细胞互补的人ERCC5基因的cDNA。 ERCC5 mRNA大小约为4.6 kb。我们可用的cDNA克隆为部分长度,并且没有单个克隆对UV135互补具有活性。当cDNA与含有ERCC5基因重叠5'末端片段的粘粒克隆成对混合时,DNA转移产生的抗紫外线菌落相对于基因组ERCC5 DNA转化子或CHO AA8具有60%至95%的抗紫外线能力祖细胞。 cDNA粘粒转化体恢复了紫外线损伤的pSVCATgpt报告质粒的ER依赖性重新激活的中间水平(20%至45%)。我们的证据强烈暗示了ER的cDNA-粘粒互补中的原位重组机制。从几个编码1186个氨基酸的预测蛋白的cDNA克隆中重建了ERCC5的完整推导氨基酸序列。 ERCC5蛋白在二分域A和B中与两种酵母RAD修复基因的产物(酿酒酵母RAD2和粟酒裂殖酵母rad13)具有广泛的序列相似性。序列,结构和功能数据加在一起表明ERCC5及其亲缘可能是功能同源物。由酿酒酵母YKL510和粟酒裂殖酵母rad2基因代表的第二个基因座在结构上不同于ERCC5基因座,但保留了残留的A和B结构域相似性。我们的分析表明,ERCC5是一种核定位蛋白,在域A和B中具有一个或多个高度保守的螺旋-环-螺旋片段。

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