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嗜热脂环酸芽孢杆菌鲨烯-葎草烯环化酶:Ala306 位的空间位阻的关键作用和 2,3-氧化鲨烯首次酶法合成环氧达玛烷。

Alicyclobacillus acidocaldarius Squalene-Hopene Cyclase: The Critical Role of Steric Bulk at Ala306 and the First Enzymatic Synthesis of Epoxydammarane from 2,3-Oxidosqualene.

机构信息

Graduate School of Science and Technology and, Department of Applied Biological Chemistry, Faculty of Agriculture, Niigata University, Ikarashi 2-8050, Nishi-ku, Niigata, 950-2181, Japan.

出版信息

Chembiochem. 2018 Sep 4;19(17):1873-1886. doi: 10.1002/cbic.201800281. Epub 2018 Jul 18.

DOI:10.1002/cbic.201800281
PMID:29911308
Abstract

The acyclic molecule squalene (1) is cyclized into 6,6,6,6,5-fused pentacyclic hopene (2) and hopanol (3; ca. 5:1) through the action of Alicyclobacillus acidocaldarius squalene-hopene cyclase (AaSHC). The polycyclization reaction proceeds with regio- and stereochemical specificity under precise enzymatic control. This pentacyclic hopane skeleton is generated by folding 1 into an all-chair conformation. The Ala306 residue in AaSHC is conserved in known squalene-hopene cyclases (SHCs); however, increasing the steric bulk (A306T and A306V) led to the accumulation of 6,6,6,5-fused tetracyclic scaffolds possessing 20R stereochemistry in high yield (94 % for A306V). The production of the 20R configuration indicated that 1 had been folded in a chair-chair-chair-boat conformation; in contrast, the normal chair-chair-chair-chair conformation affords the tetracycle with 20S stereochemistry, but the yield produced by the A306V mutant was very low (6 %). Consequently, bulk at position 306 significantly affects the stereochemical fate during the polycyclization reaction. The SHC also accepts (3R) and (3S)-2,3-oxidosqualenes (OXSQs) to generate 3α,β-hydroxyhopenes and 3α,β-hydroxyhopanols through polycyclization initiated at the epoxide ring. However, the Val and Thr mutants generated epoxydammarane scaffolds from (3R)-OXSQ; this indicated that the polycyclization cascade started in these instances at the terminal double bond position. This work is the first to report the polycyclization of oxidosqualene starting at the terminal double bond.

摘要

非环化分子角鲨烯(1)在极端嗜热脂环酸芽孢杆菌角鲨烯-双环烯环化酶(AaSHC)的作用下环化成 6,6,6,6,5-稠合的五环高烯(2)和高烯醇(3;约 5:1)。多环化反应在精确的酶控下具有区域和立体化学特异性。这种五环高烷骨架是通过将 1 折叠成全椅构象生成的。AaSHC 中的丙氨酸 306 残基在已知的角鲨烯-双环烯环化酶(SHCs)中保守;然而,增加空间位阻(A306T 和 A306V)会导致 6,6,6,5-稠合的四环骨架的积累,其具有 20R 立体化学,产率高(A306V 为 94%)。20R 构型的产生表明 1 已折叠成椅-椅-椅-船构象;相反,正常的椅-椅-椅-椅构象提供具有 20S 立体化学的四环,但 A306V 突变体产生的产率非常低(6%)。因此,位置 306 的位阻会显著影响多环化反应过程中的立体化学命运。该 SHC 还接受(3R)和(3S)-2,3-氧化角鲨烯(OXSQs),通过环氧环引发的多环化生成 3α,β-羟基高烯和 3α,β-羟基高烷醇。然而,Val 和 Thr 突变体从(3R)-OXSQ 生成环氧达玛烷骨架;这表明在这些情况下,多环化级联首先在末端双键位置开始。这项工作首次报道了从末端双键开始的氧化角鲨烯的多环化。

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