Division of Medicinal Chemistry, College of Pharmacy, Department of Chemistry and Biochemistry, and Institute of Cellular and Molecular Biology, University of Texas, Austin, Texas 78712, USA.
J Am Chem Soc. 2010 Jul 28;132(29):9994-6. doi: 10.1021/ja104090m.
The type II isopentenyl diphosphate:dimethylallyl diphosphate isomerase (IDI-2) catalyzes the reversible isomerization of the two ubiquitous isoprene units, isopentenyl pyrophosphate (IPP) and dimethylallyl pyrophosphate (DMAPP), which are required to initiate the biosynthesis of all isoprenoid compounds found in nature. The overall chemical transformation catalyzed by IDI-2 involves a net 1,3-proton addition/elimination reaction. Surprisingly, IDI-2 requires a reduced flavin mononucleotide (FMN) coenzyme to carry out this redox neutral isomerization. The exact function of FMN in catalysis has not yet been clearly defined. To provide mechanistic insight into the role of the reduced flavin in IDI-2 catalysis, several FMN analogues with altered electronic properties were chemoenzymatically prepared, and their effects on the kinetic properties of the IDI-2 catalyzed reaction were investigated. Linear free energy relationships (LFERs) between the electronic properties of the flavin and the steady state kinetic parameters of the IDI-2 catalyzed reaction were observed. The LFER studies are complemented with kinetic isotope effect studies and kinetic characterization of an active site mutant enzyme (Q154N). Cumulatively, the data presented in this work (and in other studies) suggest that the reduced FMN coenzyme of IDI-2 functions as an acid/base catalyst, with the N5 atom of the flavin likely playing a critical role in the deprotonation of IPP en route to DMAPP formation. Several potential chemical mechanisms involving the reduced flavin as an acid/base catalyst are presented and discussed.
II 型异戊烯二磷酸:二甲基烯丙基二磷酸异构酶(IDI-2)催化两种普遍存在的异戊二烯单元,即异戊烯焦磷酸(IPP)和二甲基烯丙基焦磷酸(DMAPP)的可逆异构化,这是自然界中所有异戊烯类化合物生物合成所必需的。IDI-2 催化的总体化学转化涉及净 1,3-质子加成/消除反应。令人惊讶的是,IDI-2 需要还原黄素单核苷酸(FMN)辅酶来进行这种氧化还原中性异构化。FMN 在催化中的确切功能尚未明确界定。为了深入了解还原黄素在 IDI-2 催化中的作用机制,化学酶法制备了几种具有改变的电子性质的 FMN 类似物,并研究了它们对 IDI-2 催化反应动力学性质的影响。观察到黄素的电子性质与 IDI-2 催化反应的稳态动力学参数之间的线性自由能关系(LFER)。LFER 研究与动力学同位素效应研究以及活性位点突变酶(Q154N)的动力学表征互补。总的来说,本工作(和其他研究)中提出的数据表明,IDI-2 的还原 FMN 辅酶作为酸/碱催化剂发挥作用,黄素的 N5 原子可能在 IPP 向 DMAPP 形成过程中的去质子化中发挥关键作用。提出并讨论了几种涉及还原黄素作为酸/碱催化剂的潜在化学机制。