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磷酸甲羟戊酸激酶的动力学机制

The kinetic mechanism of phosphomevalonate kinase.

作者信息

Pilloff Daniel, Dabovic Kristina, Romanowski Michael J, Bonanno Jeffrey B, Doherty Mary, Burley Stephen K, Leyh Thomas S

机构信息

Department of Biochemistry, The Albert Einstein College of Medicine, Bronx, New York 10461-1926, USA.

出版信息

J Biol Chem. 2003 Feb 14;278(7):4510-5. doi: 10.1074/jbc.M210551200. Epub 2002 Nov 6.

Abstract

Phosphomevalonate kinase catalyzes an essential step in the so-called mevalonate pathway, which appears to be the sole pathway for the biosynthesis of sterols and other isoprenoids in mammals and archea. Despite the well documented importance of this pathway in the cause and prevention of human disease and that it is the biosynthetic root of an enormous diverse class of metabolites, the mechanism of phosphomevalonate kinase from any organism is not yet well characterized. The first structure of a phosphomevalonate kinase from Streptococcus pneumoniae was solved recently. The enzyme exhibits an atypical P-loop that is a conserved defining feature of the GHMP kinase superfamily. In this study, the kinetic mechanism of the S. pneumoniae enzyme is characterized in the forward and reverse directions using a combination of classical initial-rate methods including alternate substrate inhibition using ADPbetaS. The inhibition patterns strongly support that in either direction the substrates bind randomly to the enzyme prior to chemistry, a random sequential bi-bi mechanism. The kinetic constants are as follows: k(cat(forward)) = 3.4 s(-1), K(i(ATP)) = 137 microm, K(m(ATP)) = 74 microm, K(i(pmev)) = 7.7 microm, K(m(pmev)) = 4.2 microm; k(cat(reverse)) = 3.9 s(-1), K(i(ADP)) = 410 microm, K(m(ADP)) = 350 microm, K(i(ppmev)) = 14 microm, K(m(ppmev)) = 12 microm, where pmev and ppmev represent phosphomevalonate and diphosphomevalonate, respectively.

摘要

磷酸甲羟戊酸激酶催化所谓甲羟戊酸途径中的一个关键步骤,该途径似乎是哺乳动物和古细菌中甾醇及其他类异戊二烯生物合成的唯一途径。尽管该途径在人类疾病的病因和预防方面的重要性已有充分记载,而且它是一大类多样代谢物的生物合成根源,但来自任何生物体的磷酸甲羟戊酸激酶的机制尚未得到很好的表征。最近解析了肺炎链球菌磷酸甲羟戊酸激酶的首个结构。该酶呈现出一个非典型的P环,这是GHMP激酶超家族的一个保守特征。在本研究中,使用包括ADPβS交替底物抑制在内的经典初速率方法组合,对肺炎链球菌酶的正向和反向动力学机制进行了表征。抑制模式有力地支持了在任一方向上,底物在化学反应之前随机结合到酶上,即随机顺序双底物双产物机制。动力学常数如下:k(cat(正向)) = 3.4 s(-1),K(i(ATP)) = 137 μM,K(m(ATP)) = 74 μM,K(i(磷酸甲羟戊酸)) = 7.7 μM,K(m(磷酸甲羟戊酸)) = 4.2 μM;k(cat(反向)) = 3.9 s(-1),K(i(ADP)) = 410 μM,K(m(ADP)) = 350 μM,K(i(焦磷酸甲羟戊酸)) = 14 μM,K(m(焦磷酸甲羟戊酸)) = 12 μM,其中磷酸甲羟戊酸和焦磷酸甲羟戊酸分别用pmev和ppmev表示。

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