Wheeler C J, Croteau R
Arch Biochem Biophys. 1986 May 1;246(2):733-42. doi: 10.1016/0003-9861(86)90330-9.
Enzymes from Salvia officinalis capable of catalyzing the isomerization and subsequent cyclization of geranyl pyrophosphate to the monoterpenes (+)-alpha-pinene and (+)-bornyl pyrophosphate were examined with the noncyclizable substrate analog 6,7-dihydrogeranyl pyrophosphate in an attempt to dissect the cryptic isomerization step from the normally coupled reaction sequence. The analog inhibited the cyclization of geranyl pyrophosphate and was itself catalytically active, affording acyclic terpene olefins and alcohols as products. The enzymatic products generated from 6,7-dihydrogeranyl pyrophosphate qualitatively resembled the solvolysis products of 6,7-dihydrolinalyl pyrophosphate, yet they constituted a far higher proportion of olefins, suggesting that enzymatic product formation occurs in an environment relatively inaccessible to water. Since the normal cyclization of geranyl pyrophosphate is considered to proceed via preliminary isomerization to the bound tertiary intermediate (3R)-linalyl pyrophosphate, the results suggest that the analog undergoes the normal pyrophosphate ionization-migration step, giving rise in this case to (3R)-6,7-dihydrolinalyl pyrophosphate which is reionized, and because the subsequent cyclizations are precluded, the resulting cation is either deprotonated or captured by water. In divalent metal ion requirement, pH optimum, and other characteristics, the enzymatic transformation of the analog resembles the normal monoterpene cyclase reaction.
对来自鼠尾草的能够催化香叶基焦磷酸异构化并随后环化生成单萜(+)-α-蒎烯和(+)-冰片基焦磷酸的酶,使用不可环化的底物类似物6,7-二氢香叶基焦磷酸进行了研究,试图从通常偶联的反应序列中剖析出隐秘的异构化步骤。该类似物抑制了香叶基焦磷酸的环化,并且其本身具有催化活性,生成无环萜烯烃和醇作为产物。由6,7-二氢香叶基焦磷酸产生的酶促产物在质量上类似于6,7-二氢芳樟基焦磷酸的溶剂解产物,但它们构成的烯烃比例要高得多,这表明酶促产物的形成发生在水相对难以到达的环境中。由于香叶基焦磷酸的正常环化被认为是通过先异构化为结合的叔中间体(3R)-芳樟基焦磷酸来进行的,结果表明该类似物经历了正常的焦磷酸离子化-迁移步骤,在这种情况下生成(3R)-6,7-二氢芳樟基焦磷酸,其再次离子化,并且由于随后的环化被阻止,生成的阳离子要么被去质子化,要么被水捕获。在二价金属离子需求(、)最适pH值和其他特性方面,该类似物的酶促转化类似于正常的单萜环化酶反应。 (注:原文中“ In divalent metal ion requirement, pH optimum, and other characteristics”逗号多余,译文已修正)