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酵母THI4基因在硫胺素生物合成和DNA损伤耐受性中的双重作用。

Dual role for the yeast THI4 gene in thiamine biosynthesis and DNA damage tolerance.

作者信息

Machado C R, Praekelt U M, de Oliveira R C, Barbosa A C, Byrne K L, Meacock P A, Menck C F

机构信息

Depto. de Biologia, Universidade de São Paulo, Brazil.

出版信息

J Mol Biol. 1997 Oct 17;273(1):114-21. doi: 10.1006/jmbi.1997.1302.

Abstract

The THI4 gene of Saccharomyces cerevisiae encodes an enzyme of the thiamine biosynthetic pathway. The plant homolog thi1, from Arabidopsis thaliana, is also involved in thiamine biosynthesis; but was originally cloned due to its capacity to complement DNA repair deficient phenotypes in Escherichia coli. Here, the behavior of a thi4 disrupted strain was examined for increased sensitivity to treatment with the DNA damaging agents ultraviolet radiation (UV, 254 nm) and methyl methanesulfonate (MMS). Although the thi4 null mutant showed a similar level of survival as the wild-type strain, a higher frequency of respiratory mutants was induced by the two treatments. A similar phenotype was seen with wild-type strains expressing an antisense THI4 construct. Further analysis of respiratory mutants revealed that these were due to mutations of mitochondrial DNA (mtDNA) rather than nuclear DNA, consisting of rho-petite mutants. Moreover, the frequency of mutations was unaffected by the presence or absence of thiamine in the growth medium, and the defect leading to induction of petites in the thi4 mutant was corrected by expression of the Arabidopsis thi1 gene. Thus, Thi4 and its plant homolog appear to be dual functional proteins with roles in thiamine biosynthesis and mitochondrial DNA damage tolerance.

摘要

酿酒酵母的THI4基因编码硫胺素生物合成途径中的一种酶。来自拟南芥的植物同源物thi1也参与硫胺素的生物合成;但最初克隆它是因为它能够互补大肠杆菌中DNA修复缺陷型的表型。在此,检测了thi4缺失菌株对DNA损伤剂紫外线辐射(UV,254nm)和甲基磺酸甲酯(MMS)处理的敏感性增加情况。虽然thi4缺失突变体与野生型菌株的存活水平相似,但这两种处理诱导出更高频率的呼吸突变体。在表达反义THI4构建体的野生型菌株中也观察到类似表型。对呼吸突变体的进一步分析表明,这些突变是由于线粒体DNA(mtDNA)而非核DNA的突变引起的,由rho-小菌落突变体组成。此外,生长培养基中硫胺素的存在与否不影响突变频率,并且通过表达拟南芥thi1基因纠正了thi4突变体中导致小菌落诱导的缺陷。因此,Thi4及其植物同源物似乎是具有硫胺素生物合成和线粒体DNA损伤耐受性双重功能的蛋白质。

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