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脱水鲨烯合酶的作用机制和抑制作用。

Mechanism of action and inhibition of dehydrosqualene synthase.

机构信息

Center for Biophysics and Computational Biology, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.

出版信息

Proc Natl Acad Sci U S A. 2010 Dec 14;107(50):21337-42. doi: 10.1073/pnas.1010907107. Epub 2010 Nov 23.

DOI:10.1073/pnas.1010907107
PMID:21098670
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3003041/
Abstract

"Head-to-head" terpene synthases catalyze the first committed steps in sterol and carotenoid biosynthesis: the condensation of two isoprenoid diphosphates to form cyclopropylcarbinyl diphosphates, followed by ring opening. Here, we report the structures of Staphylococcus aureus dehydrosqualene synthase (CrtM) complexed with its reaction intermediate, presqualene diphosphate (PSPP), the dehydrosqualene (DHS) product, as well as a series of inhibitors. The results indicate that, on initial diphosphate loss, the primary carbocation so formed bends down into the interior of the protein to react with C2,3 double bond in the prenyl acceptor to form PSPP, with the lower two-thirds of both PSPP chains occupying essentially the same positions as found in the two farnesyl chains in the substrates. The second-half reaction is then initiated by the PSPP diphosphate returning back to the Mg(2+) cluster for ionization, with the resultant DHS so formed being trapped in a surface pocket. This mechanism is supported by the observation that cationic inhibitors (of interest as antiinfectives) bind with their positive charge located in the same region as the cyclopropyl carbinyl group; that S-thiolo-diphosphates only inhibit when in the allylic site; activity results on 11 mutants show that both DXXXD conserved domains are essential for PSPP ionization; and the observation that head-to-tail isoprenoid synthases as well as terpene cyclases have ionization and alkene-donor sites which spatially overlap those found in CrtM.

摘要

"头对头"萜烯合酶催化甾醇和类胡萝卜素生物合成的第一个关键步骤:两个异戊烯二磷酸的缩合形成环丙基carbinyl 二磷酸,然后开环。在这里,我们报告了金黄色葡萄球菌脱水鲨烯合酶(CrtM)与反应中间体、前鲨烯二磷酸(PSPP)、脱水鲨烯(DHS)产物以及一系列抑制剂复合物的结构。结果表明,在初始二磷酸丢失后,形成的初级碳正离子向下弯曲到蛋白质内部,与烯丙基受体中的 C2,3 双键反应,形成 PSPP,PSPP 链的较低的三分之二基本上占据了与底物中两个法呢基链相同的位置。然后,通过将 PSPP 二磷酸返回 Mg(2+)簇进行离子化,启动后半部分反应,形成的 DHS 被捕获在表面口袋中。这种机制得到了以下观察结果的支持:阳离子抑制剂(作为抗感染剂很有意义)的正电荷位于与环丙基 carbinyl 基团相同的区域内;只有当 S-硫代二磷酸酯处于烯丙基位点时才会抑制;11 个突变体的活性结果表明,两个 DXXXD 保守结构域对于 PSPP 离子化都是必需的;并且观察到头对头异戊烯基合成酶和萜烯环化酶的离子化和烯供体位点与在 CrtM 中发现的那些位点在空间上重叠。