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首页> 外文期刊>Biochimica et biophysica acta. Molecular basis of disease: BBA >Mitochondrial DNA defects in Saccharomyces cerevisiae caused by functional interactions between DNA polymerase gamma mutations associated with disease in human
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Mitochondrial DNA defects in Saccharomyces cerevisiae caused by functional interactions between DNA polymerase gamma mutations associated with disease in human

机译:酿酒酵母中线粒体DNA缺陷是由与人类疾病相关的DNA聚合酶γ突变之间的功能相互作用引起的

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The yeast mitochondrial DNA (mtDNA) replicase Mip1 has been used as a model to generate five mutations equivalent to POLG mutations associated with a broad spectrum of diseases in human. All mip1 mutations, alone or in combination in cis or in trans, increase mtDNA instability as measured by petite frequency and Ery(R) mutant accumulation. This phenotype is associated with decreased Mip1 levels in mitochondrial extracts and/or decreased polymerase activity. We have demonstrated that (1) in the mip1(G651S) (hG848S) mutant the high mtDNA instability and increased frequency of point Ery(R) mutations is associated with low Mip1 levels and polymerase activity; (2) in the mip1(A692T-E900G) (hA889T-hE1143G) mutant, A692T is the major contributor to mtDNA instability by decreasing polymerase activity, and E900G acts synergistically by decreasing Mip1 levels; (3) in the mip1(H734Y)/mip1(G807R) (hH932Y/hG1051R) mutant, H734Y is the most deleterious mutation and acts synergistically with G807R as a result of its dominant character; (4) the mip1(E900G) (h1143G) mutation is not neutral but results in a temperature-sensitive phenotype associated with decreased Mip1 levels, a property explaining its synergistic effect with mutations impairing the polymerase activity. Thus, the human E1143G mutation is not a true polymorphism. (c) 2007 Elsevier B.V. All rights reserved.
机译:酵母线粒体DNA(mtDNA)复制酶Mip1已被用作产生与人类广泛疾病相关的五个POLG突变的突变模型。如通过小频率和突变体积累所测量的,所有mip1突变,单独或以顺式或反式组合,都会增加mtDNA的不稳定性。该表型与线粒体提取物中Mip1水平降低和/或聚合酶活性降低相关。我们已经证明(1)在mip1(G651S)(hG848S)突变体中,高mtDNA不稳定性和点Ery(R)突变的频率增加与低Mip1水平和聚合酶活性有关; (2)在mip1(A692T-E900G)(hA889T-hE1143G)突变体中,A692T通过降低聚合酶活性是导致mtDNA不稳定的主要因素,而E900G通过降低Mip1的水平具有协同作用。 (3)在mip1(H734Y)/ mip1(G807R)(hH932Y / hG1051R)突变体中,H734Y是最有害的突变,并且由于其显性特征而与G807R协同作用; (4)mip1(E900G)(h1143G)突变不是中性的,但会导致温度敏感性表型与降低的Mip1水平相关,这一特性可解释其与突变削弱聚合酶活性的协同作用。因此,人类E1143G突变不是真正的多态性。 (c)2007 Elsevier B.V.保留所有权利。

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