Mutations in structural genes of complex I associated with neurological diseases.

The Italian journal of biochemistry Pub Date : 2006-09-01
Salvatore Scacco, Vittoria Petruzzella, Enrico Bertini, Arcangela Luso, Francesco Papa, Francesco Bellomo, Anna Signorile, Alessandra Torraco, Sergio Papa
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Abstract

This paper summarizes observations on the genetic and biochemical basis of hereditary defects of complex I (NADH-ubiquinone oxidoreductase) of the respiratory chain in human neurological patients. Two different types of functional defects of the complex are described. In one type mutations in the NDUFS1 and NDUFS4 nuclear structural genes of the complex were identified in two unrelated families. Both NDUFS1 and NDUFS4 neurological disorders were transmitted by autosomic recessive inheritance. The two mutations resulted in different impact on cellular metabolism. The NDUFS4 mutation, giving a more severe, fatal pathological pattern, resulted in a defective assembly of the complex and complete suppression of the enzymatic activity. The NDUFS1 mutation, with less severe progressive pathology, caused only partial inhibition of the complex but enhanced production of oxygen free radicals. In the second type of deficiencies extensive mutational analysis did not reveal pathogenic mutations in complex I genes but a decline in the level and activity of complex I, III, and IV were found, apparently associated with alteration in the cardiolipin membrane distribution.

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与神经系统疾病相关的复合体I结构基因突变
本文综述了人类神经系统患者呼吸链复合体I (nadh -泛醌氧化还原酶)遗传缺陷的遗传和生化基础的观察结果。描述了该复合物的两种不同类型的功能缺陷。其中一种类型的NDUFS1和NDUFS4核结构基因在两个不相关的家族中被鉴定出突变。NDUFS1和NDUFS4神经系统疾病均为常染色体隐性遗传。这两种突变对细胞代谢的影响不同。NDUFS4突变,给出了更严重的,致命的病理模式,导致复合物的组装缺陷和酶活性的完全抑制。NDUFS1突变具有较不严重的进行性病理,仅引起部分复合物抑制,但增强了氧自由基的产生。在第二种缺陷中,广泛的突变分析没有发现复合物I基因的致病性突变,但发现复合物I、III和IV的水平和活性下降,这显然与心磷脂膜分布的改变有关。
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