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首页> 外文期刊>Journal of Molecular Biology >Crystal structure analysis of free and substrate-bound 6-hydroxy-L-nicotine oxidase from Arthrobacter nicotinovorans.
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Crystal structure analysis of free and substrate-bound 6-hydroxy-L-nicotine oxidase from Arthrobacter nicotinovorans.

机译:烟碱节杆菌中游离的与底物结合的6-羟基-L-烟碱氧化酶的晶体结构分析。

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摘要

The pathway for oxidative degradation of nicotine in Arthrobacter nicotinovorans includes two genetically and structurally unrelated flavoenzymes, 6-hydroxy-L-nicotine oxidase (6HLNO) and 6-hydroxy-D-nicotine oxidase, which act with absolute stereospecificity on the L- and D-forms, respectively, of 6-hydroxy-nicotine. We solved the crystal structure of 6HLNO at 1.95 A resolution by combined isomorphous/multiple-wavelength anomalous dispersion phasing. The overall structure of each subunit of the 6HLNO homodimer and the folds of the individual domains are closely similar as in eukaryotic monoamine oxidases. Unexpectedly, a diacylglycerophospholipid molecule was found to be non-covalently bound to each protomer of 6HLNO. The fatty acid chains occupy hydrophobic channels that penetrate deep into the interior of the substrate-binding domain of each subunit. The solvent-exposed glycerophosphate moiety is located at the subunit-subunit interface. We further solved the crystal structure of a complex of dithionite-reduced 6HLNO with the natural substrate 6-hydroxy-L-nicotine at 2.05 A resolution. The location of the substrate in a tight cavity suggests that the binding geometry of this unproductive complex may be closely similar as under oxidizing conditions. The observed orientation of the bound substrate relative to the isoalloxazine ring of the flavin adenine dinucleotide cofactor is suitable for hydride-transfer dehydrogenation at the carbon atom that forms the chiral center of the substrate molecule. A comparison of the substrate-binding modes of 6HLNO and 6-hydroxy-D-nicotine oxidase, based on models of complexes with the D-substrate, suggests an explanation for the stereospecificity of both enzymes. The two enzymes are proposed to orient the enantiomeric substrates in mirror symmetry with respect to the plane of the flavin.
机译:烟节杆菌中烟碱的氧化降解途径包括两种与遗传和结构无关的黄素酶,即6-羟基-L-烟碱氧化酶(6HLNO)和6-羟基-D-烟碱氧化酶,它们对L-和D具有绝对立体特异性分别形成6-羟基烟碱的-形式。通过结合同构/多波长异常色散定相,以1.95 A的分辨率解决了6HLNO的晶体结构。 6HLNO同源二聚体的每个亚基的整体结构和单个结构域的折叠与真核单胺氧化酶中的相似。出乎意料的是,发现二酰基甘油磷脂分子非共价结合到6HLNO的每个启动子上。脂肪酸链占据疏水通道,该通道深入渗透到每个亚基的底物结合结构域的内部。溶剂暴露的甘油磷酸酯部分位于亚基-亚基界面。我们进一步以2.05 A的分辨率解决了连二亚硫酸盐还原的6HLNO与天然底物6-羟基-L-烟碱的复合物的晶体结构。底物在紧密空腔中的位置表明,这种非生产性复合物的结合几何结构可能与氧化条件下的紧密相似。观察到的结合的底物相对于黄素腺嘌呤二核苷酸辅因子的异四恶嗪环的取向适合于在形成底物分子手性中心的碳原子处进行氢化物转移脱氢。基于与D-底物复合物的模型,比较6HLNO和6-羟基-D-烟碱氧化酶的底物结合模式,可以解释这两种酶的立体特异性。提出了两种酶以使对映体底物相对于黄素的平面镜对称。

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