首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Crystal structures of Melanocarpus albomyces cellobiohydrolase Cel7B in complex with cello-oligomers show high flexibility in the substrate binding
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Crystal structures of Melanocarpus albomyces cellobiohydrolase Cel7B in complex with cello-oligomers show high flexibility in the substrate binding

机译:棉果黑果纤维二糖水解酶Cel7B与纤维寡聚体复合物的晶体结构在底物结合中显示出高度的灵活性

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摘要

Cellobiohydrolase from Melanocarpus albomyces (Cel7B) is a thermostable, single-module, cellulose-degrading enzyme. It has relatively low catalytic activity under normal temperatures, which allows structural studies of the binding of unmodified substrates to the native enzyme. In this study, we have determined the crystal structure of native Ma Cel7B free and in complex with three different cello-oligomers: cellobiose (Glc2), cellotriose (Glc3), and cellotetraose (Glc4), at high resolution (1.6–2.1 Å). In each case, four molecules were found in the asymmetric unit, which provided 12 different complex structures. The overall fold of the enzyme is characteristic of a glycoside hydrolase family 7 cellobiohydrolase, where the loops extending from the core β-sandwich structure form a long tunnel composed of multiple subsites for the binding of the glycosyl units of a cellulose chain. The catalytic residues at the reducing end of the tunnel are conserved, and the mechanism is expected to be retaining similarly to the other family 7 members. The oligosaccharides in different complex structures occupied different subsite sets, which partly overlapped and ranged from −5 to +2. In four cellotriose and one cellotetraose complex structures, the cello-oligosaccharide also spanned over the cleavage site (−1/+1). There were surprisingly large variations in the amino acid side chain conformations and in the positions of glycosyl units in the different cello-oligomer complexes, particularly at subsites near the catalytic site. However, in each complex structure, all glycosyl residues were in the chair (4C1) conformation. Implications in relation to the complex structures with respect to the reaction mechanism are discussed.
机译:来自黑皮果树的纤维二糖水解酶(Cel7B)是一种热稳定的单模块纤维素降解酶。它在常温下具有相对较低的催化活性,因此可以进行未修饰底物与天然酶结合的结构研究。在这项研究中,我们以高分辨率(1.6–2.1Å)确定了游离的Ma Cel7B的晶体结构,并与三种不同的纤维寡聚物:纤维二糖(Glc2),纤维三糖(Glc3)和纤维四糖(Glc4)形成了复合物。 。在每种情况下,在不对称单元中发现了四个分子,它们提供了12种不同的复杂结构。酶的整体折叠是糖苷水解酶家族7纤维二糖水解酶的特征,其中从核心β-三明治结构延伸的环形成由多个亚位点组成的长隧道,用于结合纤维素链的糖基单元。隧道还原端的催化残留物得以保留,其机理预计将与其他7号家族成员相似。不同复杂结构中的寡糖占据不同的亚位点集,部分重叠且范围为-5至+2。在四个纤维三糖和一个纤维四糖复合结构中,纤维寡糖也跨越了裂解位点(-1 / + 1)。在不同的纤维-低聚物复合物中,特别是在催化位点附近的亚位点,氨基酸侧链构象和糖基单元的位置出乎意料地大变化。但是,在每个复杂的结构中,所有糖基残基均位于椅子( 4 C1)构象中。讨论了与复杂结构有关的反应机理的含义。

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