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甘氨酸179的诱变作用可调节细胞色素b5还原酶的催化效率和还原型吡啶核苷酸特异性。

Mutagenesis of Glycine 179 modulates both catalytic efficiency and reduced pyridine nucleotide specificity in cytochrome b5 reductase.

作者信息

Roma Glenn W, Crowley Louis J, Davis C Ainsley, Barber Michael J

机构信息

Department of Biochemistry and Molecular Biology, College of Medicine and the H. Lee Moffitt Cancer Center and Research Institute, University of South Florida, Tampa, Florida 33612, USA.

出版信息

Biochemistry. 2005 Oct 18;44(41):13467-76. doi: 10.1021/bi051165t.

Abstract

Cytochrome b5 reductase (cb5r), a member of the ferredoxin:NADP+ reductase family of flavoprotein transhydrogenases, catalyzes the NADH-dependent reduction of cytochrome b5. Within this family, a conserved "GxGxxP" sequence motif has been implicated in binding reduced pyridine nucleotides. However, Glycine 179, a conserved residue in cb5r primary structures, precedes this six-residue "180GxGxxP185" motif that has been identified as binding the adenosine moiety of NADH. To investigate the role of G179 in NADH complex formation and NAD(P)H specificity, a series of rat cb5r variants were generated, corresponding to G179A, G179P, G179T, and G179V, recombinantly expressed in Escherichia coli and purified to homogeneity. Each mutant protein was found to incorporate FAD in a 1:1 cofactor/protein stoichiometry and exhibited absorption and CD spectra that were identical to those of wild-type cb5r, indicating both correct protein folding and similar flavin environments, while oxidation-reduction potentials for the FAD/FADH2 couple (n = 2) were also comparable to the wild-type protein (E(o)' = -272 mV). All four mutants showed decreased NADH:ferricyanide reductase activities, with kcat decreasing in the order WT > G179A > G179P > G179T > G179V, with the G179V variant retaining only 1.5% of the wild-type activity. The affinity for NADH also decreased in the order WT > G179A > G179P > G179T > G179V, with the Km(NADH) for G179V 180-fold greater than that of the wild type. Both Ks(H4NAD) and Ks(NAD+) values confirmed that the G179 mutants had both compromised NADH- and NAD+-binding affinities. Determination of the NADH/NADPH specificity constant for the various mutants indicated that G179 also participated in pyridine nucleotide selectivity, with the G179V variant preferring NADPH approximately 8000 times more than wild-type cb5r. These results demonstrated that, while G179 was not critical for either flavin incorporation or maintenance of the appropriate flavin environment in cb5r, G179 was required for both effective NADH/NADPH selectivity and to maintain the correct orientation and position of the conserved cysteine in the proline-rich "CGpppM" motif that is critical for optimum NADH binding and efficient hydride transfer.

摘要

细胞色素b5还原酶(cb5r)是铁氧化还原蛋白:NADP +还原酶家族的黄素蛋白转氢酶成员,催化细胞色素b5的NADH依赖性还原反应。在这个家族中,一个保守的“GxGxxP”序列基序与结合还原型吡啶核苷酸有关。然而,甘氨酸179是cb5r一级结构中的一个保守残基,位于已被确定为结合NADH腺苷部分的六残基“180GxGxxP185”基序之前。为了研究G179在NADH复合物形成和NAD(P)H特异性中的作用,构建了一系列大鼠cb5r变体,分别对应G179A、G179P、G179T和G179V,在大肠杆菌中进行重组表达并纯化至均一性。发现每个突变蛋白均以1:1的辅因子/蛋白质化学计量比结合FAD,并且其吸收光谱和圆二色光谱与野生型cb5r相同,表明蛋白质折叠正确且黄素环境相似,同时FAD/FADH2电对的氧化还原电位(n = 2)也与野生型蛋白相当(E(o)' = -272 mV)。所有四个突变体的NADH:铁氰化物还原酶活性均降低,kcat以WT > G179A > G179P > G179T > G179V的顺序递减,G179V变体仅保留野生型活性的1.5%。对NADH的亲和力也以WT > G179A > G179P > G179T > G179V的顺序降低,G179V的Km(NADH)比野生型大180倍。Ks(H4NAD)和Ks(NAD+)值均证实G179突变体的NADH和NAD +结合亲和力均受损。对各种突变体的NADH/NADPH特异性常数的测定表明,G179也参与吡啶核苷酸的选择性,G179V变体对NADPH的偏好性比野生型cb5r高约8000倍。这些结果表明,虽然G179对于cb5r中黄素的掺入或维持合适的黄素环境并非至关重要,但G179对于有效的NADH/NADPH选择性以及维持富含脯氨酸的“CGpppM”基序中保守半胱氨酸的正确取向和位置是必需的,而该基序对于最佳NADH结合和有效的氢化物转移至关重要。

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