化学
生物合成
黄多辛
立体化学
脱氧腺苷
ATP合酶
铁硫簇
立体选择性
生物催化
酶
生物化学
催化作用
反应机理
铁氧还蛋白
作者
Shusuke Sato,Fumitaka Kudo,Michel Rohmer,Tadashi Eguchi
标识
DOI:10.1002/anie.201911584
摘要
Abstract Adenosylhopane is a crucial intermediate in the biosynthesis of bacteriohopanepolyols, which are widespread prokaryotic membrane lipids. Herein, it is demonstrated that reconstituted HpnH, a putative radical S ‐adenosyl‐ l ‐methionine (SAM) enzyme, commonly encoded in the hopanoid biosynthetic gene cluster, converts diploptene into adenosylhopane in the presence of SAM, flavodoxin, flavodoxin reductase, and NADPH. NMR spectra of the enzymatic reaction product were identical to those of synthetic (22 R )‐adenosylhopane, indicating that HpnH catalyzes stereoselective C−C formation between C29 of diploptene and C5′ of 5′‐deoxyadenosine. Further, the HpnH reaction in D 2 O‐containing buffer revealed that a D atom was incorporated at the C22 position of adenosylhopane. Based on these results, we propose a radical addition reaction mechanism catalyzed by HpnH for the formation of the C 35 bacteriohopane skeleton.
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