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棒酸合酶潜在替代底物及基于机制的抑制剂的合成、反应与作用机制

Synthesis and reaction of potential alternate substrates and mechanism-based inhibitors of clavaminate synthase.

作者信息

Iwata-Reuyl D, Basak A, Silverman L S, Engle C A, Townsend C A

机构信息

Department of Chemistry, Johns Hopkins University, Baltimore, Maryland 21218.

出版信息

J Nat Prod. 1993 Aug;56(8):1373-96. doi: 10.1021/np50098a022.

Abstract

Clavaminate synthase is an FeII/alpha-ketoglutarate-dependent enzyme central to the biosynthesis of the beta-lactamase inhibitor clavulanic acid. In the presence of dioxygen it catalyzes the oxidative cyclization/desaturation of proclavaminic acid to clavaminic acid in a two-step process. Samples of (4'R)- and (4'S)-D,L-[4'-2H]proclavaminic acid have been prepared and used to demonstrate that oxazolidine ring formation occurs with retention of configuration. The stereochemical course of oxygen insertion from substrate that takes place in this oxidative cyclization is the same as that observed from molecular oxygen in several hydroxylation reactions catalyzed by other FeII/alpha-ketoglutarate-dependent enzymes. The ferryl (FeIV = O) species thought to be transiently involved in each of these processes was investigated in the present work with clavaminate synthase and three structural analogues of proclavaminic acid bearing vinyl or ethynyl groups at C-4' or a cyclopropyl at C-4. In the synthesis of the former two derivatives and proclavaminic acid stereoselectively labeled with deuterium at C-4', introduction of the unsaturated substituents in a stereochemically defined manner at C-4' relied upon ready access to (4R)-4-thiophenyl-2-azetidinone. Trimethylsilyl substitution could be easily achieved at C-3 of the optically pure starting material to give the readily separable cis and trans diastereomers. In radical chain reactions in which the thiophenyl was replaced by deuterium or in anionic reactions in which the thiophenyl was eliminated as its sulfone and replaced by addition of carbanions, the steric bulk of the trimethylsilyl group at C-3 governed the approach of incoming reagents to give the trans product. The enzymatic fate, however, of these derivatives was disappointing, yielding neither detectable reaction nor hoped-for inactivation of clavaminate synthase. Finally, as mixed competitive/noncompetitive inhibitors of catalysis, they gave unexceptional inhibition constants in the range 2-10 mM.

摘要

棒酸合酶是一种依赖亚铁离子/α-酮戊二酸的酶,在β-内酰胺酶抑制剂棒酸的生物合成中起核心作用。在氧气存在下,它通过两步过程催化前棒酸氧化环化/脱氢生成棒酸。制备了(4'R)-和(4'S)-D,L-[4'-2H]前棒酸样品,并用于证明恶唑烷环的形成是构型保持的。在这种氧化环化反应中,底物中氧插入的立体化学过程与其他依赖亚铁离子/α-酮戊二酸的酶催化的几种羟基化反应中从分子氧观察到的过程相同。本研究使用棒酸合酶和三种在前棒酸的C-4'处带有乙烯基或乙炔基或在C-4处带有环丙基的前棒酸结构类似物,对认为在这些过程中瞬时参与的高价铁(FeIV = O)物种进行了研究。在前两种衍生物和在C-4'处立体选择性地用氘标记的前棒酸的合成中,以立体化学定义的方式在C-4'处引入不饱和取代基依赖于易于获得(4R)-4-硫苯基-2-氮杂环丁酮。在光学纯起始原料的C-3处可以很容易地实现三甲基硅基取代,得到易于分离的顺式和反式非对映异构体。在硫苯基被氘取代的自由基链反应中,或者在硫苯基作为砜被消除并通过加入碳负离子被取代的阴离子反应中,C-3处三甲基硅基的空间位阻决定了进入试剂的进攻方式,从而得到反式产物。然而,这些衍生物的酶促反应结果令人失望,既没有检测到反应,也没有达到预期的棒酸合酶失活。最后,作为催化的混合竞争性/非竞争性抑制剂,它们给出的抑制常数在2-10 mM范围内,并无异常。

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