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首页> 外文期刊>Journal of Molecular Biology >Crystal Structure of Exo-inulinase from Aspergillus awamori: The Enzyme Fold and Structural Determinants of Substrate Recognition.
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Crystal Structure of Exo-inulinase from Aspergillus awamori: The Enzyme Fold and Structural Determinants of Substrate Recognition.

机译:泡盛曲霉胞外菊糖酶的晶体结构:酶折叠和底物识别的结构决定因素。

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摘要

Exo-inulinases hydrolyze terminal, non-reducing 2,1-linked and 2,6-linked beta-d-fructofuranose residues in inulin, levan and sucrose releasing beta-d-fructose. We present the X-ray structure at 1.55A resolution of exo-inulinase from Aspergillus awamori, a member of glycoside hydrolase family 32, solved by single isomorphous replacement with the anomalous scattering method using the heavy-atom sites derived from a quick cryo-soaking technique. The tertiary structure of this enzyme folds into two domains: the N-terminal catalytic domain of an unusual five-bladed beta-propeller fold and the C-terminal domain folded into a beta-sandwich-like structure. Its structural architecture is very similar to that of another member of glycoside hydrolase family 32, invertase (beta-fructosidase) from Thermotoga maritima, determined recently by X-ray crystallography The exo-inulinase is a glycoprotein containing five N-linked oligosaccharides. Two crystal forms obtained under similar crystallization conditions differ by the degree of protein glycosylation. The X-ray structure of the enzyme:fructose complex, at a resolution of 1.87A, reveals two catalytically important residues: Asp41 and Glu241, a nucleophile and a catalytic acid/base, respectively. The distance between the side-chains of these residues is consistent with a double displacement mechanism of reaction. Asp189, which is part of the Arg-Asp-Pro motif, provides hydrogen bonds important for substrate recognition.
机译:外切菊糖酶水解菊粉,左旋糖和蔗糖中的末端,非还原性2,1-连接和2,6-连接的β-d-果糖呋喃糖残基,释放出β-d-果糖。我们提出了X射线结构,从泡盛曲霉,糖苷水解酶家族32的成员,泡盛曲霉的exo-菊粉酶的分辨率为1.55A,通过使用异常散射方法使用单种同构置换来解决,使用了快速冷冻浸泡衍生的重原子位点技术。该酶的三级结构折叠成两个结构域:一个不寻常的五叶β-螺旋桨折叠的N末端催化结构域和C末端结构域折叠成一个β-三明治状结构。其结构结构与糖苷水解酶家族32中另一个成员的结构相似,即最近通过X射线晶体学确定的来自滨海嗜热菌的转化酶(β-果糖苷酶)。菊糖外切菊糖酶是一种包含5个N-连接寡糖的糖蛋白。在相似的结晶条件下获得的两种晶体形式因蛋白质糖基化程度而异。酶:果糖复合物的X射线结构(分辨率为1.87A)揭示了两个重要的催化残基:Asp41和Glu241,分别为亲核试剂和催化酸/碱。这些残基的侧链之间的距离与反应的双重置换机制一致。 Asp189是Arg-Asp-Pro主题的一部分,提供了对底物识别很重要的氢键。

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