Almeida T, Duarte M, Melo A M, Videira A
Instituto de Biologia Molecular e Celular, Porto, Portugal.
Eur J Biochem. 1999 Oct 1;265(1):86-93. doi: 10.1046/j.1432-1327.1999.00668.x.
We have cloned the nuclear gene encoding the 24-kDa iron-sulphur subunit of complex I from Neurospora crassa. The gene was inactivated in vivo by repeat-induced point-mutations, and mutant strains lacking the 24-kDa protein were isolated. Mutant nuo24 appears to assemble an almost intact complex I only lacking the 24-kDa subunit. However, we also found reduced levels of the NADH-binding, 51-kDa subunit of the enzyme. Surprisingly, the complex I from the nuo24 strain lacks NADH:ferricyanide reductase activity. In agreement with this, the respiration of intact mitochondria or mitochondrial membranes from the mutant strain is insensitive to rotenone inhibition. These results suggest that the nuo24 complex is not functioning in electron transfer and the 24-kDa protein is absolutely required for complex I activity. This phenotype may explain the findings that the 24-kDa iron-sulphur protein is reduced or absent in human mitochondrial diseases. In addition, selected substitutions of cysteine to alanine residues in the 24-kDa protein suggest that binding of the iron-sulphur centre is a requisite for protein assembly.
我们已经克隆了粗糙脉孢菌中编码复合体I的24 kDa铁硫亚基的核基因。该基因通过重复诱导点突变在体内失活,并分离出缺乏24 kDa蛋白的突变菌株。突变体nuo24似乎组装了一个几乎完整的复合体I,只是缺少24 kDa亚基。然而,我们还发现该酶的NADH结合51 kDa亚基水平降低。令人惊讶的是,来自nuo24菌株的复合体I缺乏NADH:铁氰化物还原酶活性。与此一致的是,突变菌株完整线粒体或线粒体膜的呼吸对鱼藤酮抑制不敏感。这些结果表明,nuo24复合体在电子传递中不起作用,并且24 kDa蛋白是复合体I活性绝对必需的。这种表型可能解释了在人类线粒体疾病中24 kDa铁硫蛋白减少或缺失的发现。此外,在24 kDa蛋白中选择将半胱氨酸替换为丙氨酸残基表明,铁硫中心的结合是蛋白质组装的必要条件。