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Stereochemistry of the macrocyclization and elimination steps in taxadiene biosynthesis through deuterium labeling

机译:通过氘标记紫杉二烯生物合成中大环化和消除步骤的立体化学

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Taxadiene synthase catalyzes the cyclization of (E,E,E)-geranylgeranyl diphosphate (GGPP) to taxa-4(5),11(12)-diene (Scheme 1, 5 -> 2) as the first committed step of Taxol biosynthesis. Deuterated GGPPs labeled stereospecifically at C-1, C-4, and C-16 were synthesized and incubated with recombinant taxadiene synthase from Taxus brevifolia to elucidate the stereochemistry of the cyclization reaction at these positions. The deuterium-labeled taxadienes obtained from (R)-[1-H-2(1)]-, (S)-[1-H-2(1)]-, and [16,16,16-H-2(3)]GGPPs (9, 10, and 23b) were established to have deuterium in the 2 alpha and 2 beta CH2 and 16CH(3) positions, respectively, by high-field H-1 NMR spectroscopy (eqs 1-3). Incubation of (R)-[4-H-2(1)]GGPP (17) with the recombinant enzyme gave a 10:10:80 mixture of [5 beta-H-2(1)]taxa-3(4),11(12)-diene, [5 beta-H-2(1)]taxa-4(20),11(12)-diene, and unlabeled taxa-4(5),11(12)-diene according to GC/MS analyses of the products (eq 4). It follows that C-1 of GGPP underwent inversion of configuration, that the A ring cyclization occurs on the si face of C15, and that the terminating proton abstraction removes H5 beta from the final taxenyl carbocation intermediate. Thus, the C1-C14 and C15-C10 bonds are formed on the opposite faces of the 14,15 double bond of the substrate, i.e., overall anti electrophilic addition. The implications of these findings for the mechanism of the cyclization and rearrangement are discussed.
机译:紫杉二烯合酶催化将(E,E,E)-香叶基香叶基二磷酸(GGPP)环化为紫杉4(5),11(12)-二烯(方案1,5-> 2),这是紫杉醇生物合成的第一步。合成了在C-1,C-4和C-16立体标记的氘代GGPP,并与来自短叶红豆杉的重组紫杉二烯合酶孵育,以阐明这些位置上环化反应的立体化学。从(R)-[1-H-2(1)]-,(S)-[1-H-2(1)]-和[16,16,16-H-2]获得的氘标记的紫杉二烯(3)]通过高场H-1 NMR光谱法(方程1-3),建立了GGPP(9、10和23b),使其氘分别位于2 alpha和2 beta CH2和16CH(3)位置。 。 (R)-[4-H-2(1)] GGPP(17)与重组酶的温育产生[5 beta-H-2(1)]紫杉醇3(4)的10:10:80混合物,11(12)-二烯,[5 beta-H-2(1)]紫杉-4(20),11(12)-二烯和未标记的紫杉-4(5),11(12)-二烯,根据产品的GC / MS分析(等式4)。由此得出结论,GGPP的C-1进行了构型转换,A环环化发生在C15的表面,并且终止的质子抽象从最终的紫杉烯碳正离子化中间体中去除了H5β。因此,C1-C14和C15-C10键形成在底物的14,15双键的相对面上,即,整体地抗亲电加成。讨论了这些发现对环化和重排机制的影响。

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