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对呼吸性NADH脱氢酶的线粒体DNA编码亚基有缺陷的人类细胞系突变体进行有效筛选和鉴定。

Efficient selection and characterization of mutants of a human cell line which are defective in mitochondrial DNA-encoded subunits of respiratory NADH dehydrogenase.

作者信息

Hofhaus G, Attardi G

机构信息

Division of Biology, California Institute of Technology, Pasadena 91125.

出版信息

Mol Cell Biol. 1995 Feb;15(2):964-74. doi: 10.1128/MCB.15.2.964.

Abstract

The mitochondrial NADH dehydrogenase (complex I) in mammalian cells is a multimeric enzyme consisting of approximately 40 subunits, 7 of which are encoded in mitochondrial DNA (mtDNA). Very little is known about the function of these mtDNA-encoded subunits. In this paper, we describe the efficient isolation from a human cell line of mutants affected in any of these subunits. In the course of analysis of eight mutants of the human cell line VA2B selected for their resistance to high concentrations of the complex I inhibitor rotenone, seven were found to be respiration deficient, and among these, six exhibited a specific defect of complex I. Transfer of mitochondria from these six mutants into human mtDNA-less cells revealed, surprisingly, in all cases a cotransfer of the complex I defect but not of the rotenone resistance. This result indicated that the rotenone resistance resulted from a nuclear mutation, while the respiration defect was produced by an mtDNA mutation. A detailed molecular analysis of the six complex I-deficient mutants revealed that two of them exhibited a frameshift mutation in the ND4 gene, in homoplasmic or in heteroplasmic form, resulting in the complete or partial loss, respectively, of the ND4 subunit; two other mutants exhibited a frameshift mutation in the ND5 gene, in near-homoplasmic or heteroplasmic form, resulting in the ND5 subunit being undetectable or strongly decreased, respectively. It was previously reported (G. Hofhaus and G. Attardi, EMBO J. 12:3043-3048, 1993) that the mutant completely lacking the ND4 subunit exhibited a total loss of NADH:Q1 oxidoreductase activity and a lack of assembly of the mtDNA-encoded subunits of complex I. By contrast, in the mutant characterized in this study in which the ND5 subunit was not detectable and which was nearly totally deficient in complex I activity, the capacity to assemble the mtDNA-encoded subunits of the enzyme was preserved, although with a decreased efficiency or a reduced stability of the assembled complex. The two remaining complex I-deficient mutants exhibited a normal rate of synthesis and assembly of the mtDNA-encoded subunits of the enzyme, and the mtDNA mutation(s) responsible for their NADH dehydrogenase defect remains to be identified. The selection scheme used in this work has proven to be very valuable for the isolation of mutants from the VA2B cell line which are affected in different mtDNA-encoded subunits of complex I and may be applicable to other cell lines.

摘要

哺乳动物细胞中的线粒体NADH脱氢酶(复合体I)是一种多聚体酶,由大约40个亚基组成,其中7个由线粒体DNA(mtDNA)编码。关于这些mtDNA编码亚基的功能,人们了解甚少。在本文中,我们描述了从人细胞系中高效分离出在这些亚基中任何一个受到影响的突变体。在分析为对高浓度复合体I抑制剂鱼藤酮具有抗性而选择的人细胞系VA2B的8个突变体的过程中,发现其中7个呼吸缺陷,其中6个表现出复合体I的特异性缺陷。令人惊讶的是,将这6个突变体的线粒体转移到人mtDNA缺失细胞中,在所有情况下都伴随着复合体I缺陷的共转移,但鱼藤酮抗性并未共转移。这一结果表明,鱼藤酮抗性是由核突变引起的,而呼吸缺陷是由mtDNA突变产生的。对这6个复合体I缺陷突变体的详细分子分析表明,其中2个在ND4基因中表现出移码突变,呈纯质或异质形式,分别导致ND4亚基完全或部分缺失;另外2个突变体在ND5基因中表现出移码突变,呈近纯质或异质形式,分别导致ND5亚基无法检测到或大量减少。先前有报道(G. Hofhaus和G. Attardi,《欧洲分子生物学组织杂志》12:3043 - 3048,1993)称,完全缺乏ND4亚基的突变体表现出NADH:Q1氧化还原酶活性完全丧失,且复合体I的mtDNA编码亚基组装缺失。相比之下,在本研究中表征的ND5亚基无法检测到且复合体I活性几乎完全缺乏的突变体中,该酶的mtDNA编码亚基的组装能力得以保留,尽管组装复合体的效率降低或稳定性降低。其余2个复合体I缺陷突变体表现出该酶的mtDNA编码亚基正常的合成和组装速率,导致其NADH脱氢酶缺陷的mtDNA突变仍有待确定。这项工作中使用的选择方案已被证明对于从VA2B细胞系中分离在复合体I的不同mtDNA编码亚基中受到影响的突变体非常有价值,并且可能适用于其他细胞系。

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