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首页> 外文期刊>Angewandte Chemie >Characterization of Radical SAM Adenosylhopane Synthase, HpnH, which Catalyzes the 5 '-Deoxyadenosyl Radical Addition to Diploptene in the Biosynthesis of C-35 Bacteriohopanepolyols
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Characterization of Radical SAM Adenosylhopane Synthase, HpnH, which Catalyzes the 5 '-Deoxyadenosyl Radical Addition to Diploptene in the Biosynthesis of C-35 Bacteriohopanepolyols

机译:基团Sam腺苷酸合成酶,HPNH的表征,催化5'-氧化腺苷基的C-35菌磷溶胶生物合成中的铝开孔

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摘要

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 (22R)-adenosylhopane, indicating that HpnH catalyzes stereoselective C-C formation between C29 of diploptene and C5 ' of 5 '-deoxyadenosine. Further, the HpnH reaction in D2O-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.
机译:腺苷己烷是Bigsiohopanopolyols的生物合成中的至关重要的中间体,其是广泛的原核膜脂质。 在此,证明重构的HPNH,一种推定的基因S-腺苷-1-甲硫氨酸(SAM)酶,通常编码在Hopanoid生物合成基因簇中,将铝开光转化为亚苯基丙烷,在SAM,黄酮毒素,黄酮毒素还原酶和NADPH存在下 。 酶促反应产物的NMR光谱与合成(22R) - 茚烷基丙烷的NMR光谱相同,表明HPNH催化在-DeoxyadenoSine的铝开光和C5'的C29之间的立体选择性C-C形成。 此外,含D2O的缓冲液中的HPNH反应显示D原子在腺苷己烷的C22位置掺入。 基于这些结果,我们提出了通过HPNH催化的基底加成反应机制,用于形成C-35抗菌骨架骨架。

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