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IIa型纤维素结合结构域中的所有三个表面色氨酸在结合可溶性和不溶性配体方面都起着关键作用。

All three surface tryptophans in Type IIa cellulose binding domains play a pivotal role in binding both soluble and insoluble ligands.

作者信息

Nagy T, Simpson P, Williamson M P, Hazlewood G P, Gilbert H J, Orosz L

机构信息

Department of Biological and Nutritional Sciences, University of Newcastle upon Tyne, UK.

出版信息

FEBS Lett. 1998 Jun 16;429(3):312-6. doi: 10.1016/s0014-5793(98)00625-5.

Abstract

The three surface tryptophans of the Type IIa cellulose binding domain of Pseudomonas fluorescens subsp. cellulosa xylanase A (CBD(XYLA)) were independently mutated to alanine, to create the mutants W13A, W49A and W66A. The three mutant proteins were purified, and their capacity to bind to a variety of ligands was determined. The mutant proteins have native-like structures but exhibited much weaker affinity for crystalline and amorphous cellulose and for cellohexaose than the wild type. These data indicate that all three tryptophans are important for binding to cellulose, and support a model in which the three tryptophans form an aromatic strip on the surface of the protein that binds to a single cellulose.

摘要

荧光假单胞菌纤维素亚种木聚糖酶A(CBD(XYLA))的IIa型纤维素结合结构域的三个表面色氨酸被独立突变为丙氨酸,从而产生突变体W13A、W49A和W66A。对这三种突变蛋白进行了纯化,并测定了它们与多种配体结合的能力。这些突变蛋白具有类似天然的结构,但与野生型相比,它们对结晶纤维素、无定形纤维素和纤维六糖的亲和力要弱得多。这些数据表明,所有这三个色氨酸对于与纤维素的结合都很重要,并支持这样一种模型,即这三个色氨酸在蛋白质表面形成一条芳香带,该芳香带与单一纤维素结合。

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