Squalene–hopene cyclase: final deprotonation reaction, conformational analysis for the cyclization of (3R,S)-2,3-oxidosqualene and further evidence for the requirement of an isopropylidene moiety both for initiation of the polycyclization cascade and for the formation of the 5-membered E-ring

化学 角鲨烯 部分 立体化学 脱质子化 双键 戒指(化学) 甲基 环化酶 芳构化 群(周期表) 有机化学 催化作用 离子
作者
Tsutomu Hoshino,Schin-ichi Nakano,Tomohiro Kondo,Tsutomu Sato,Aya Miyoshi
出处
期刊:Organic and Biomolecular Chemistry [The Royal Society of Chemistry]
卷期号:2 (10): 1456-1470 被引量:48
标识
DOI:10.1039/b401172d
摘要

To provide insight into the polycyclization mechanism of squalene by squalene–hopene cyclase (SHC) from Alicyclobacilus acidocaldarius, some analogs of nor- and bisnorsqualenes were synthesized including the deuterium-labeled squalenes and incubated with the wild-type SHC, leading to the following inferences. (1) The deprotonation reaction for the introduction of the double bond of the hopene skeleton occurs exclusively from the Z-methyl group on the terminal double bond of squalene. (2) 3R-Oxidosqualene was folded in a boat conformation for the A-ring construction, while the 3S-form was in a chair structure. (3) The terminal two methyl groups are indispensable both for the formation of the 5-membered E-ring of the hopene skeleton and for the initiation of the polycyclization cascade, but the terminal Z-methyl group has a more crucial role for the construction of the 5-membered E-ring than the E-methyl group. (4) Some of the novel terpene skeletons, 36, 37, 39 and 40, were created from the analogs employed in this investigation.
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