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HRAD1 and MRAD1 encode mammalian homologues of the fission yeast rad1(+) cell cycle checkpoint control gene.

机译:HRAD1和MRAD1编码裂变酵母rad1(+)细胞周期检查点控制基因的哺乳动物同源物。

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摘要

Eukaryotic cells arrest at the G2checkpoint in the presence of DNA damage or incompletely replicated DNA. This cell cycle checkpoint prevents the development and propagation of genomic instability. In the fission yeast, this process requires the action of a number of genes, including rad1(+) . We report here the identification of human and mouse cDNAs that exhibit extensive sequence homology to rad1(+) . The human gene, called HRAD1 , encodes a 282 amino acid protein that is 27% identical and 53% similar to yeast Rad1p. The human homologue maintains its sequence similarity over the full length of the protein, including the three proposed 3'-->5' exonuclease domains, and the leucine rich repeat region. The mouse gene, called MRAD1 , encodes a 280 amino acid protein that is 90% identical and 96% similar to HRAD1 at the amino acid level. Expression of HRAD1 in yeast rad1 mutants partially restores radiation resistance and G2checkpoint proficiency to these mutants. Evolutionaryconservation of structure between HRAD1 , MRAD1 , rad1(+), Saccharomyces cerevisiae RAD17 and the Ustilago maydis REC1 checkpoint genes suggests that the function of the encoded proteins is conserved as well. The ability of HRAD1 to partially complement yeast rad1 mutants suggests that this gene is required for G2checkpoint control in human cells.
机译:真核细胞在存在DNA损伤或DNA复制不完全的情况下停在G2checkpoint。该细胞周期检查点阻止了基因组不稳定性的发展和传播。在裂变酵母中,此过程需要许多基因的作用,包括rad1(+)。我们在这里报告鉴定与rad1(+)具有广泛序列同源性的人和小鼠cDNA。人类基因HRAD1编码一个282个氨基酸的蛋白质,与酵母Rad1p的同源性为27%,相似性为53%。人类同源物在蛋白质的整个长度上都保持其序列相似性,包括三个提议的3'-> 5'核酸外切酶结构域和富含亮氨酸的重复区域。名为MRAD1的小鼠基因编码一个280个氨基酸的蛋白质,在氨基酸水平上与HRAD1的同源性为90%,相似性为96%。酵母rad1突变体中HRAD1的表达部分恢复了这些突变体的抗辐射性和G2checkpoint熟练程度。 HRAD1,MRAD1,rad1(+),酿酒酵母RAD17和Ustilago maydis REC1检查点基因之间结构的进化保守性表明,所编码蛋白的功能也被保守。 HRAD1部分补充酵母rad1突变体的能力表明该基因是人类细胞中G2检查点控制所必需的。

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