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单个突变重塑了一个缺乏黏附功能的3型碳水化合物结合模块的结合活性。

A single mutation reforms the binding activity of an adhesion-deficient family 3 carbohydrate-binding module.

作者信息

Yaniv Oren, Petkun Svetlana, Shimon Linda J W, Bayer Edward A, Lamed Raphael, Frolow Felix

机构信息

Department of Molecular Microbiology and Biotechnology, Tel Aviv University, Tel Aviv 69978, Israel.

出版信息

Acta Crystallogr D Biol Crystallogr. 2012 Jul;68(Pt 7):819-28. doi: 10.1107/S0907444912013133. Epub 2012 Jun 15.

Abstract

The crystal structure of the family 3b carbohydrate-binding module (CBM3b) of the cellulosomal multimodular hydrolytic enzyme cellobiohydrolase 9A (Cbh9A) from Clostridium thermocellum has been determined. Cbh9A CBM3b crystallized in space group P4(1) with four molecules in the asymmetric unit and diffracted to a resolution of 2.20 Å using synchrotron radiation. The structure was determined by molecular replacement using C. thermocellum Cel9V CBM3b' (PDB entry 2wnx) as a model. The C. thermocellum Cbh9A CBM3b molecule forms a nine-stranded antiparallel β-sandwich similar to other family 3 carbohydrate-binding modules (CBMs). It has a short planar array of two aromatic residues that are assumed to bind cellulose, yet it lacks the ability to bind cellulose. The molecule contains a shallow groove of unknown function that characterizes other family 3 CBMs with high sequence homology. In addition, it contains a calcium-binding site formed by a group of amino-acid residues that are highly conserved in similar structures. After determination of the three-dimensional structure of Cbh9A CBM3b, the site-specific N126W mutant was produced with the intention of enhancing the cellulose-binding ability of the CBM. Cbh9A CBM3b(N126W) crystallized in space group P4(1)2(1)2, with one molecule in the asymmetric unit. The crystals diffracted to 1.04 Å resolution using synchrotron radiation. The structure of Cbh9A CBM3b(N126W) revealed incorporation of the mutated Trp126 into the putative cellulose-binding strip of residues. Cellulose-binding experiments demonstrated the ability of Cbh9A CBM3b(N126W) to bind cellulose owing to the mutation. This is the first report of the engineered conversion of a non-cellulose-binding CBM3 to a binding CBM3 by site-directed mutagenesis. The three-dimensional structure of Cbh9A CBM3b(N126W) provided a structural correlation with cellulose-binding ability, revealing a longer planar array of definitive cellulose-binding residues.

摘要

已确定来自嗜热栖热菌的纤维小体多模块水解酶纤维二糖水解酶9A(Cbh9A)的3b家族碳水化合物结合模块(CBM3b)的晶体结构。Cbh9A CBM3b以P4(1)空间群结晶,不对称单元中有四个分子,使用同步辐射衍射至2.20 Å的分辨率。该结构通过以嗜热栖热菌Cel9V CBM3b'(PDB编号2wnx)为模型的分子置换法确定。嗜热栖热菌Cbh9A CBM3b分子形成一个九股反平行β-折叠三明治结构,与其他3家族碳水化合物结合模块(CBM)相似。它有一个由两个芳香族残基组成的短平面阵列,推测可结合纤维素,但它缺乏结合纤维素的能力。该分子包含一个功能未知的浅沟,这是其他具有高度序列同源性的3家族CBM的特征。此外,它包含一个由一组在相似结构中高度保守的氨基酸残基形成的钙结合位点。在确定Cbh9A CBM3b的三维结构后,制备了位点特异性N126W突变体,旨在增强CBM的纤维素结合能力。Cbh9A CBM3b(N126W)以P4(1)2(1)2空间群结晶,不对称单元中有一个分子。晶体使用同步辐射衍射至1.04 Å的分辨率。Cbh9A CBM3b(N126W)的结构显示突变的Trp126掺入了假定的纤维素结合残基条带中。纤维素结合实验证明了Cbh9A CBM3b(N126W)由于该突变而具有结合纤维素的能力。这是通过定点诱变将非纤维素结合CBM3工程转化为结合CBM3的首次报道。Cbh9A CBM3b(N126W)的三维结构提供了与纤维素结合能力的结构关联,揭示了确定的纤维素结合残基的更长平面阵列。

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