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保守精氨酸274以及组氨酸224和228残基在大肠杆菌复合体I的NuoCD亚基中的作用。

Role of the conserved arginine 274 and histidine 224 and 228 residues in the NuoCD subunit of complex I from Escherichia coli.

作者信息

Belevich Galina, Euro Liliya, Wikström Mårten, Verkhovskaya Marina

机构信息

Helsinki Bioenergetics Group, Institute of Biotechnology, University of Helsinki, P.O. Box 65 (Viikinkaari 1), Helsinki FIN-00014, Finland.

出版信息

Biochemistry. 2007 Jan 16;46(2):526-33. doi: 10.1021/bi062062t.

Abstract

The conserved arginine 274 and histidine 224 and 228 residues in subunit NuoCD of complex I from Escherichia coli were substituted for alanine. The wild-type and mutated NuoCD subunit was expressed on a plasmid in an E. coli strain bearing a nuoCD deletion. Complex I was fully expressed in the H224A and H228A mutants, whereas the R274A mutation yielded approximately 50% expression. Ubiquinone reductase activity of complex I was studied in membranes and with purified enzyme and was 50% and 30% of the wild-type activity in the H224A and H228A mutants, respectively. The activity of R274A was less than 5% of the wild type in membranes but 20% in purified complex I. Rolliniastatin inhibited quinone reductase activity in the mutants with similar affinity as in the wild type, indicating that the quinone-binding site was not significantly altered by the mutations. Ubiquinone-dependent superoxide production by complex I was similar to the wild type in the R274A mutant but slightly higher in the H224A and H228A mutants. The EPR spectra of purified complex I from the H224A and H228A mutants did not differ from the wild type. In contrast, the signals of the N2 cluster and another fast-relaxing [4Fe-4S] cluster, tentatively assigned as N6b, were drastically decreased in the NADH-reduced R274A mutant enzyme but reappeared on further reduction with dithionite. These findings show that the redox potential of the N2 and N6b centers is shifted to more negative values by the R274A mutation. Purified complex I was reconstituted into liposomes, and electric potential was generated across the membrane upon NADH addition in all three mutant enzymes, suggesting that none of the mutations directly affect the proton-pumping machinery.

摘要

将来自大肠杆菌的复合物I的NuoCD亚基中保守的精氨酸274、组氨酸224和228残基替换为丙氨酸。野生型和突变型NuoCD亚基在携带nuoCD缺失的大肠杆菌菌株的质粒上表达。复合物I在H224A和H228A突变体中完全表达,而R274A突变产生约50%的表达。在膜中以及使用纯化的酶研究了复合物I的泛醌还原酶活性,在H224A和H228A突变体中分别为野生型活性的50%和30%。R274A在膜中的活性小于野生型的5%,但在纯化的复合物I中为20%。罗利他汀以与野生型相似的亲和力抑制突变体中的醌还原酶活性,表明突变并未显著改变醌结合位点。复合物I依赖泛醌的超氧化物产生在R274A突变体中与野生型相似,但在H224A和H228A突变体中略高。来自H224A和H228A突变体的纯化复合物I的电子顺磁共振光谱与野生型无异。相比之下,在NADH还原的R274A突变体酶中,N2簇和另一个快速弛豫的[4Fe-4S]簇(暂定为N6b)的信号急剧下降,但在用连二亚硫酸盐进一步还原时重新出现。这些发现表明,R274A突变使N2和N6b中心的氧化还原电位向更负的值移动。将纯化的复合物I重构到脂质体中,在添加NADH时,所有三种突变酶的膜上都会产生电位,这表明没有一个突变直接影响质子泵机制。

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