首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >A full-length cDNA of hREV3 is predicted to encode DNA polymerase zeta for damage-induced mutagenesis in humans.
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A full-length cDNA of hREV3 is predicted to encode DNA polymerase zeta for damage-induced mutagenesis in humans.

机译:据预测,hREV3的全长cDNA编码DNA聚合酶zeta,用于在人类中引起损伤。

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摘要

DNA damage can cause mutations which in turn may lead to carcinogenesis. In the yeast Saccharomyces cerevisiae, DNA damage-induced mutagenesis pathway requires the REV3 gene. It encodes the catalytic subunit of DNA polymerase zeta that specifically functions in translesion DNA synthesis. We have cloned a cDNA of the human homologue of REV3 (hREV3), which consists of 10,716 bp and codes for a protein of 3130 amino acid residues (352,737 Da). Its C-terminal 755 amino acids show extensive homology with the yeast protein at the C-terminus: 43% identity and 74% similarity. This region contains the six highly conserved DNA polymerase motifs. Furthermore, we have identified four sequence motifs in the N-terminal region outside the polymerase domain that are conserved in DNA polymerase delta from various sources. Three of which are present in DNA polymerase zeta encoded by human, yeast, and plant REV3 genes, indicating that this protein is a member of the DNA polymerase delta family. DNA polymerases delta and zeta are structurally distinguished by the presence of a specific delta IV motif in the former and motifs zeta I and zeta II in the latter, respectively. Human DNA polymerase zeta is ubiquitously expressed in various tissues, consistent with the notion that the hREV3 pathway may be a fundamental mechanism of damage-induced mutagenesis in humans.
机译:DNA损伤可引起突变,进而可能导致癌变。在酵母酿酒酵母中,DNA损伤诱导的诱变途径需要REV3基因。它编码DNA聚合酶zeta的催化亚基,后者在跨病变的DNA合成中具有特殊功能。我们已经克隆了REV3(hREV3)人同源基因的cDNA,它由10,716 bp组成,编码3130个氨基酸残基(352,737 Da)的蛋白质。它的C端755个氨基酸在C端与酵母蛋白具有广泛的同源性:43%的同一性和74%的相似性。该区域包含六个高度保守的DNA聚合酶基序。此外,我们已经确定了聚合酶结构域外部N端区域中的四个序列基序,这些基序在来自各种来源的DNA聚合酶δ中是保守的。其中三个存在于人,酵母和植物REV3基因编码的DNA聚合酶zeta中,表明该蛋白是DNA聚合酶delta家族的成员。 DNA聚合酶delta和zeta在结构上分别通过在前者中存在特定的delta IV基序和在后者中存在zeta I和zeta II基序来区分。人类DNA聚合酶Zeta在各种组织中普遍表达,这与hREV3途径可能是人类损伤诱导的诱变的基本机制这一观念相一致。

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