首页> 外文期刊>Acta crystallographica. Section D, Structural biology >Crystal structure of a novel homodimeric d‐allulose 3‐epimerase from a Clostridia bacterium
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Crystal structure of a novel homodimeric d‐allulose 3‐epimerase from a Clostridia bacterium

机译:小说homodimeric的晶体结构d必经阿洛酮糖3量差向异构酶梭状芽胞杆菌细菌

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摘要

d‐Allulose, a low‐calorie rare sugar with various physiological functions, is mainly produced through the isomerization of d‐fructose by ketose 3‐epimerases (KEases), which exhibit various substrate specificities. A novel KEase from a Clostridia bacterium (CDAE) was identified to be a d‐allulose 3‐epimerase and was further characterized as thermostable and metal‐dependent. In order to explore its structure–function relationship, the crystal structure of CDAE was determined using X‐ray diffraction at 2.10?? resolution, revealing a homodimeric d‐allulose 3‐epimerase structure with extensive interactions formed at the dimeric interface that contribute to structure stability. Structural analysis identified the structural features of CDAE, which displays a common (β/α)8‐TIM barrel and an ordered Mn2+‐binding architecture at the active center, which may explain the positive effects of Mn2+ on the activity and stability of CDAE. Furthermore, comparison of CDAE and other KEase structures revealed several structural differences, highlighting the remarkable differences in enzyme–substrate binding at the O4, O5 and O6 sites of the bound substrate, which are mainly induced by distinct hydrophobic pockets in the active center. The shape and hydrophobicity of this pocket appear to produce the differences in specificity and affinity for substrates among KEase family enzymes. Exploration of the crystal structure of CDAE provides a better understanding of its structure–function relationship, which might provide a basis for molecular modification of CDAE and further provides a reference for other KEases.
机译:d高阿洛酮糖在一个低热量的稀有糖与不同生理功能,主要是生产通过d高果糖的异构化酮糖3量差向异构酶(当)表现出不同底物特异性。梭状芽胞杆菌细菌(CDAE)被发现一个d阿洛酮糖3的差向异构酶和进一步和耐热性的特点金属的依赖。结构和功能的关系,晶体CDAE结构是决定使用X射线衍射为2.10 ? ?homodimeric d量3差向异构酶结构与阿洛酮糖广泛的相互作用形成二聚的界面,导致结构的稳定性。结构分析鉴定结构CDAE特性,显示一个常见(β/α)8蒂姆桶和有序Mn2 +绑定在活性中心结构,这可能解释Mn2 +上的积极作用活动和CDAE的稳定。CDAE和其他KEase结构的比较透露一些结构上的差异,突出的显著的差异es绑定在O4, O5 O6主要是网站绑定的衬底引起不同的疏水里活性中心。这口袋似乎产生的差异对底物的特异性和亲和力KEase家族酶。CDAE结构提供了一个更好的理解的结构关系可能会提供一个分子改性的基础CDAE和进一步提供了参考其他keas公司。

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