Mapping of the genes of some components of the electron transport chain (complex I) on the X chromosome of mammals.

C E Day, I E Scheffler
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引用次数: 16

Abstract

This paper describes genetic mapping studies with several respiration-deficient mutants of Chinese hamster fibroblasts which have a defect in complex I of the electron transport chain (NADH-coenzyme Q reductase). The mutations associated with two different complementation groups map on the X chromosome. In two cases (G14 and G20) karyotypic and isozyme analyses in hybrids have shown that a gene(s) on the mouse X chromosome complements the mutation(s) in the hamster cell mutant(s). A cosegregation analysis in hybrid cells has shown the corresponding genes to be linked to the HPRT genes (hamster-mouse hybrids of G14, and hamster-hamster hybrids for G14 and G20). By the same method the defective gene in a third mutant (G4) was also shown to be X-linked. A mutation representing a third complementation group (G11) was shown to be on an autosomal gene. These results provide an explanation for our observation that cells with recessive mutations in complementation groups I and II can be selected at relatively high frequencies.

哺乳动物X染色体上电子传递链(复合体I)某些组分的基因图谱。
本文介绍了几种具有电子传递链(nadh -辅酶Q还原酶)复合物I缺陷的中国仓鼠成纤维细胞呼吸缺陷突变体的遗传定位研究。与两个不同的互补组相关的突变映射在X染色体上。在两个案例(G14和G20)中,杂交体的核型和同工酶分析表明,小鼠X染色体上的一个基因与仓鼠细胞突变体中的突变互补。杂交细胞的共分离分析表明,相应的基因与HPRT基因(G14的仓鼠-小鼠杂交,以及G14和G20的仓鼠-仓鼠杂交)相关。通过同样的方法,第三个突变体(G4)中的缺陷基因也被证明是x连锁的。代表第三互补组(G11)的突变显示在常染色体基因上。这些结果解释了我们观察到的在互补组I和II中具有隐性突变的细胞可以以相对高的频率被选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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