Kostyrko Vitaly A, Bertsova Yulia V, Serebryakova Marina V, Baykov Alexander A, Bogachev Alexander V
Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Moscow, Russia.
Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Moscow, Russia
J Bacteriol. 2015 Dec 7;198(4):655-63. doi: 10.1128/JB.00757-15.
Na(+)-translocating NADH:quinone oxidoreductase (Na(+)-NQR) catalyzes electron transfer from NADH to ubiquinone in the bacterial respiratory chain, coupled with Na(+) translocation across the membrane. Na(+)-NQR maturation involves covalent attachment of flavin mononucleotide (FMN) residues, catalyzed by flavin transferase encoded by the nqr-associated apbE gene. Analysis of complete bacterial genomes has revealed another putative gene (duf539, here renamed nqrM) that usually follows the apbE gene and is present only in Na(+)-NQR-containing bacteria. Expression of the Vibrio harveyi nqr operon alone or with the associated apbE gene in Escherichia coli, which lacks its own Na(+)-NQR, resulted in an enzyme incapable of Na(+)-dependent NADH or reduced nicotinamide hypoxanthine dinucleotide (dNADH) oxidation. However, fully functional Na(+)-NQR was restored when these genes were coexpressed with the V. harveyi nqrM gene. Furthermore, nqrM lesions in Klebsiella pneumoniae and V. harveyi prevented production of functional Na(+)-NQR, which could be recovered by an nqrM-containing plasmid. The Na(+)-NQR complex isolated from the nqrM-deficient strain of V. harveyi lacks several subunits, indicating that nqrM is necessary for Na(+)-NQR assembly. The protein product of the nqrM gene, NqrM, contains a single putative transmembrane α-helix and four conserved Cys residues. Mutating one of these residues (Cys33 in V. harveyi NqrM) to Ser completely prevented Na(+)-NQR maturation, whereas mutating any other Cys residue only decreased the yield of the mature protein. These findings identify NqrM as the second specific maturation factor of Na(+)-NQR in proteobacteria, which is presumably involved in the delivery of Fe to form the (Cys)4[Fe] center between subunits NqrD and NqrE.
Na(+)-translocating NADH:quinone oxidoreductase complex (Na(+)-NQR) is a unique primary Na(+) pump believed to enhance the vitality of many bacteria, including important pathogens such as Vibrio cholerae, Vibrio parahaemolyticus, Haemophilus influenzae, Neisseria gonorrhoeae, Pasteurella multocida, Porphyromonas gingivalis, Enterobacter aerogenes, and Yersinia pestis. Production of Na(+)-NQR in bacteria requires Na(+)-NQR-specific maturation factors. We earlier identified one such factor (ApbE) that covalently attaches flavin residues to Na(+)-NQR. Here we identify the other protein factor, designated NqrM, and show that NqrM and ApbE suffice to produce functional Na(+)-NQR from the Vibrio harveyi nqr operon. NqrM may be involved in Fe delivery to a unique Cys4[Fe] center during Na(+)-NQR assembly. Besides highlighting Na(+)-NQR biogenesis, these findings suggest a novel drug target to combat Na(+)-NQR-containing bacteria.
钠离子转运型烟酰胺腺嘌呤二核苷酸:醌氧化还原酶(Na(+)-NQR)在细菌呼吸链中催化电子从烟酰胺腺嘌呤二核苷酸(NADH)转移至泛醌,同时伴随着钠离子跨膜转运。Na(+)-NQR的成熟涉及黄素单核苷酸(FMN)残基的共价连接,由nqr相关的apbE基因编码的黄素转移酶催化。对完整细菌基因组的分析揭示了另一个推定基因(duf539,此处重命名为nqrM),该基因通常紧跟在apbE基因之后,且仅存在于含有Na(+)-NQR的细菌中。单独表达哈维弧菌nqr操纵子或与相关的apbE基因一起在缺乏自身Na(+)-NQR的大肠杆菌中表达,产生的酶无法进行依赖钠离子的NADH或还原型烟酰胺次黄嘌呤二核苷酸(dNADH)氧化。然而,当这些基因与哈维弧菌nqrM基因共表达时,可恢复产生功能完全的Na(+)-NQR。此外,肺炎克雷伯菌和哈维弧菌中的nqrM损伤阻止了功能性Na(+)-NQR的产生,而含有nqrM的质粒可使其恢复。从哈维弧菌nqrM缺陷菌株中分离出的Na(+)-NQR复合物缺少几个亚基,表明nqrM对Na(+)-NQR的组装是必需的。nqrM基因的蛋白质产物NqrM包含一个推定的跨膜α螺旋和四个保守的半胱氨酸残基。将其中一个残基(哈维弧菌NqrM中的Cys33)突变为丝氨酸完全阻止了Na(+)-NQR的成熟,而将任何其他半胱氨酸残基突变只会降低成熟蛋白的产量。这些发现确定NqrM是变形菌中Na(+)-NQR的第二个特异性成熟因子,推测其参与铁的传递以在亚基NqrD和NqrE之间形成(半胱氨酸)4[铁]中心。
钠离子转运型烟酰胺腺嘌呤二核苷酸:醌氧化还原酶复合物(Na(+)-NQR)是一种独特的初级钠离子泵,被认为可增强许多细菌的活力,包括霍乱弧菌、副溶血性弧菌、流感嗜血杆菌、淋病奈瑟菌、多杀巴斯德菌、牙龈卟啉单胞菌、产气肠杆菌和鼠疫耶尔森菌等重要病原体。细菌中Na(+)-NQR的产生需要Na(+)-NQR特异性成熟因子。我们之前鉴定了一种这样的因子(ApbE),它将黄素残基共价连接到Na(+)-NQR上。在此我们鉴定了另一种蛋白质因子,命名为NqrM,并表明NqrM和ApbE足以从哈维弧菌nqr操纵子产生功能性Na(+)-NQR。NqrM可能在Na(+)-NQR组装过程中参与铁向独特的(半胱氨酸)4[铁]中心的传递。除了突出Na(+)-NQR的生物合成外,这些发现还提示了一个对抗含Na(+)-NQR细菌的新药物靶点。