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线粒体DNA 14577位点T/C处的一个新突变可能是母系遗传2型糖尿病的主要致病突变。

A new mitochondrial DNA mutation at 14577 T/C is probably a major pathogenic mutation for maternally inherited type 2 diabetes.

作者信息

Tawata M, Hayashi J I, Isobe K, Ohkubo E, Ohtaka M, Chen J, Aida K, Onaya T

机构信息

Third Department of Internal Medicine, Yamanashi Medical University, Tamaho, Japan.

出版信息

Diabetes. 2000 Jul;49(7):1269-72. doi: 10.2337/diabetes.49.7.1269.

Abstract

From a family of 16 diabetic patients with typical maternal inheritance, we investigated a 69-year-old woman with type 2 diabetes. The proband showed no major deletions in the mitochondrial DNA (mtDNA). Direct sequencing revealed 7 missense and 5 ribosomal RNA homoplasmic nucleotide substitutions when compared with the Cambridge Sequence and its recent revision. When compared with the control cybrid cells, the proband cybrid cells showed 6 nucleotide substitutions. Among these, 14577 T/C, which turned out to be 98.9% heteroplasmic, is a new missense substitution in the NADH dehydrogenase 6 gene. We also observed 2 other patients with 14577 T/C substitution from another group of 252 unrelated diabetic patients, whereas no individual from a group of 529 control subjects had 14577 T/C substitution. Furthermore, these 6 substitutions were in linkage disequilibrium. Mitochondrial respiratory chain complex I activity and O2 consumption rates of the proband cybrid cells, which were obtained by the fusion of mtDNA-deleted (rho0) HeLa cells and mtDNA from the proband, showed 64.5 and 61.5% reductions, respectively, compared with control cybrid cells. The present study strongly indicates that the new mtDNA mutation at 14577 T/C is probably a major pathogenic mutation for type 2 diabetes in this family.

摘要

在一个有16名典型母系遗传糖尿病患者的家族中,我们对一名69岁的2型糖尿病女性进行了研究。先证者的线粒体DNA(mtDNA)未发现重大缺失。与剑桥序列及其最新修订版相比,直接测序显示有7个错义突变和5个核糖体RNA同质性核苷酸替换。与对照胞质杂种细胞相比,先证者的胞质杂种细胞显示有6个核苷酸替换。其中,14577 T/C在NADH脱氢酶6基因中是一个新的错义替换,结果显示其异质性为98.9%。我们还在另一组252名无亲缘关系的糖尿病患者中观察到另外2名有14577 T/C替换的患者,而在529名对照受试者中没有个体有14577 T/C替换。此外,这6个替换处于连锁不平衡状态。通过将mtDNA缺失的(rho0)HeLa细胞与先证者的mtDNA融合获得的先证者胞质杂种细胞的线粒体呼吸链复合体I活性和氧气消耗率,与对照胞质杂种细胞相比,分别降低了64.5%和61.5%。本研究强烈表明,14577 T/C处的新mtDNA突变可能是该家族2型糖尿病的主要致病突变。

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