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从酿酒酵母中分离并鉴定线粒体DNA聚合酶编码基因MIP1的十个突变等位基因。

Isolation and characterization of ten mutator alleles of the mitochondrial DNA polymerase-encoding MIP1 gene from Saccharomyces cerevisiae.

作者信息

Hu J P, Vanderstraeten S, Foury F

机构信息

Unité de Biochimie Physiologique, Université de Louvain, Louvain-la-Neuve, Belgium.

出版信息

Gene. 1995 Jul 4;160(1):105-10. doi: 10.1016/0378-1119(95)00215-r.

DOI:10.1016/0378-1119(95)00215-r
PMID:7628702
Abstract

Ten mutator alleles of MIP1, the gene encoding mitochondrial (mt) DNA polymerase, have been isolated after in vitro random mutagenesis. Five mutations causing a 100-400-fold increase in the frequency of erythromycin-resistant (ErR) mt mutants in yeast mapped to the 3'-5' exonuclease (Exo) domain, and mainly to the three conserved motifs Exo1, Exo2 and Exo3 of this domain, highlighting the importance of proofreading in accurate mt DNA replication. The essential role of the invariant glutamate at the Exo1 site was confirmed and the participation of four amino acids (aa) in the 3'-5' Exo function revealed. Another mutation that is located between the Exo1 and Exo2 sites produced an extremely strong mutator phenotype associated with impaired DNA replication, but could be assigned neither to a conserved aa nor to a conserved portion of the 3'-5' exonuclease domain. The importance of the polymerization domain in accurate mt DNA replication was pointed out by three mutator mutations. Two of these severely impaired mt DNA replication and were assigned to a subdomain of the polymerase which probably corresponds to the 'fingers' module of the Klenow (large) fragment of Escherichia coli DNA polymerase I (PolIk). The third, which did not alter the efficiency of DNA replication, was located at the active center of the polymerization reaction. Finally, the mutation, R1001I, mapped to the C-terminal part of the MIP1 protein which has no counterpart in prokaryotic DNA polymerases.

摘要

编码线粒体(mt)DNA聚合酶的基因MIP1的十个突变等位基因已通过体外随机诱变分离得到。五个导致酵母中抗红霉素(ErR)线粒体突变体频率增加100 - 400倍的突变定位于3'-5'核酸外切酶(Exo)结构域,且主要位于该结构域的三个保守基序Exo1、Exo2和Exo3,突出了校对在准确的线粒体DNA复制中的重要性。Exo1位点不变谷氨酸的关键作用得到证实,并揭示了四个氨基酸参与3'-5'核酸外切酶功能。位于Exo1和Exo2位点之间的另一个突变产生了与DNA复制受损相关的极强突变体表型,但既不能归因于保守氨基酸,也不能归因于3'-5'核酸外切酶结构域的保守部分。三个突变体突变指出了聚合结构域在准确的线粒体DNA复制中的重要性。其中两个严重损害线粒体DNA复制,并被定位于聚合酶的一个亚结构域,该亚结构域可能对应于大肠杆菌DNA聚合酶I(PolIk)的Klenow(大)片段的“手指”模块。第三个突变不改变DNA复制效率,位于聚合反应的活性中心。最后,R1001I突变定位于MIP1蛋白的C末端部分,该部分在原核DNA聚合酶中没有对应物。

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