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单萜类化合物的生物合成。香叶基焦磷酸酶促环化生成(-)-内式葑醇的立体化学。

Biosynthesis of monoterpenes. Stereochemistry of the enzymatic cyclization of geranyl pyrophosphate to (-)-endo-fenchol.

作者信息

Croteau R, Satterwhite D M, Wheeler C J, Felton N M

机构信息

Institute of Biological Chemistry, Washington State University, Pullman 99164-6340.

出版信息

J Biol Chem. 1988 Oct 25;263(30):15449-53.

PMID:3170591
Abstract

The conversion of geranyl pyrophosphate to (-)-endo-fenchol is considered to proceed by the initial isomerization of the substrate to (-)-(3R)-linalyl pyrophosphate and the subsequent cyclization of this bound intermediate. Incubation of (1R)-[2-14C,1-3H]- and (1S)-[2-14C,1-3H]geranyl pyrophosphate with a preparation of (-)-endo-fenchol cyclase (synthase) from common fennel (Foeniculum vulgare) gave labeled product of unchanged 3H:14C ratio in both cases, and each was dehydrated to a mixture of alpha- and beta-fenchene which were oxidized to the corresponding alpha- and beta-fenchocamphorones, again without change in isotope ratio. The location of the tritium label was deduced in each case by stereoselective, base-catalyzed exchange of the exo-alpha-hydrogen of the derived ketone. The findings indicated that the configuration at C1 of the substrate was retained in the enzymatic transformation to (-)-endo-fenchol which is entirely consistent with the syn-isomerization of geranyl pyrophosphate to (3R)-linalyl pyrophosphate and cyclization of the latter via the anti-endo-conformer. These absolute stereochemical elements of the reaction sequence were confirmed by the enzymatic conversion of (3R)-1Z-[1-3H]linalyl pyrophosphate to (-)-endo-fenchol and by the location of the tritium in the derived fenchocamphorones as before. The summation of the results fully defines the overall stereochemistry of the coupled isomerization and cyclization of geranyl pyrophosphate to (-)-endo-fenchol.

摘要

香叶基焦磷酸转化为(-)-内式葑醇被认为是通过底物先异构化为(-)-(3R)-芳樟基焦磷酸,随后该结合中间体进行环化反应来进行的。用来自小茴香(Foeniculum vulgare)的(-)-内式葑醇环化酶(合酶)制剂分别与(1R)-[2-¹⁴C,1-³H]-和(1S)-[2-¹⁴C,1-³H]香叶基焦磷酸一起温育,在两种情况下均得到³H:¹⁴C比值不变的标记产物,并且每种产物都脱水生成α-和β-葑烯的混合物,这些混合物又被氧化为相应的α-和β-葑酮樟脑,同样同位素比值没有变化。在每种情况下,通过对衍生酮的外式-α-氢进行立体选择性、碱催化交换来推断氚标记的位置。研究结果表明,底物C1位的构型在酶促转化为(-)-内式葑醇的过程中得以保留,这与香叶基焦磷酸向(3R)-芳樟基焦磷酸的顺式异构化以及后者通过反-内式构象体进行环化完全一致。反应序列的这些绝对立体化学元素通过(3R)-1Z-[1-³H]芳樟基焦磷酸酶促转化为(-)-内式葑醇以及如前所述氚在衍生的葑酮樟脑中的位置得到了证实。这些结果的总和完全确定了香叶基焦磷酸异构化和环化生成(-)-内式葑醇的整体立体化学。

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