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金黄色葡萄球菌II类3-羟基-3-甲基戊二酰辅酶A还原酶的必需性、表达及特性

Essentiality, expression, and characterization of the class II 3-hydroxy-3-methylglutaryl coenzyme A reductase of Staphylococcus aureus.

作者信息

Wilding E I, Kim D Y, Bryant A P, Gwynn M N, Lunsford R D, McDevitt D, Myers J E, Rosenberg M, Sylvester D, Stauffacher C V, Rodwell V W

机构信息

Department of Microbiology, SmithKline Beecham Pharmaceuticals, Collegeville, Pennsylvania 19426, USA.

出版信息

J Bacteriol. 2000 Sep;182(18):5147-52. doi: 10.1128/JB.182.18.5147-5152.2000.

Abstract

Sequence comparisons have implied the presence of genes encoding enzymes of the mevalonate pathway for isopentenyl diphosphate biosynthesis in the gram-positive pathogen Staphylococcus aureus. In this study we showed through genetic disruption experiments that mvaA, which encodes a putative class II 3-hydroxy-3-methylglutaryl coenzyme A (HMG-CoA) reductase, is essential for in vitro growth of S. aureus. Supplementation of media with mevalonate permitted isolation of an auxotrophic mvaA null mutant that was attenuated for virulence in a murine hematogenous pyelonephritis infection model. The mvaA gene was cloned from S. aureus DNA and expressed with an N-terminal His tag in Escherichia coli. The encoded protein was affinity purified to apparent homogeneity and was shown to be a class II HMG-CoA reductase, the first class II eubacterial biosynthetic enzyme isolated. Unlike most other HMG-CoA reductases, the S. aureus enzyme exhibits dual coenzyme specificity for NADP(H) and NAD(H), but NADP(H) was the preferred coenzyme. Kinetic parameters were determined for all substrates for all four catalyzed reactions using either NADP(H) or NAD(H). In all instances optimal activity using NAD(H) occurred at a pH one to two units more acidic than that using NADP(H). pH profiles suggested that His378 and Lys263, the apparent cognates of the active-site histidine and lysine of Pseudomonas mevalonii HMG-CoA reductase, function in catalysis and that the general catalytic mechanism is valid for the S. aureus enzyme. Fluvastatin inhibited competitively with HMG-CoA, with a K(i) of 320 microM, over 10(4) higher than that for a class I HMG-CoA reductase. Bacterial class II HMG-CoA reductases thus are potential targets for antibacterial agents directed against multidrug-resistant gram-positive cocci.

摘要

序列比较表明,在革兰氏阳性病原体金黄色葡萄球菌中存在编码用于异戊烯基二磷酸生物合成的甲羟戊酸途径酶的基因。在本研究中,我们通过基因破坏实验表明,编码假定的II类3-羟基-3-甲基戊二酰辅酶A(HMG-CoA)还原酶的mvaA对金黄色葡萄球菌的体外生长至关重要。用甲羟戊酸补充培养基可以分离出一种营养缺陷型mvaA缺失突变体,该突变体在鼠血源性肾盂肾炎感染模型中的毒力减弱。从金黄色葡萄球菌DNA中克隆出mvaA基因,并在大肠杆菌中用N端His标签进行表达。编码的蛋白质经亲和纯化至表观均一性,并被证明是一种II类HMG-CoA还原酶,这是分离出的首个II类真细菌生物合成酶。与大多数其他HMG-CoA还原酶不同,金黄色葡萄球菌酶对NADP(H)和NAD(H)表现出双重辅酶特异性,但NADP(H)是首选辅酶。使用NADP(H)或NAD(H)测定了所有四种催化反应的所有底物的动力学参数。在所有情况下,使用NAD(H)时的最佳活性出现在比使用NADP(H)时酸性高1至2个单位的pH值下。pH曲线表明,His378和Lys263,即恶臭假单胞菌HMG-CoA还原酶活性位点组氨酸和赖氨酸的明显同源物,在催化中起作用,并且一般催化机制对金黄色葡萄球菌酶有效。氟伐他汀与HMG-CoA竞争性抑制,K(i)为320 microM,比I类HMG-CoA还原酶高10(4)倍以上。因此,细菌II类HMG-CoA还原酶是针对多重耐药革兰氏阳性球菌的抗菌剂的潜在靶点。

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