首页> 外文期刊>Journal of Molecular Biology >Recognition of cello-oligosaccharides by a family 17 carbohydrate-binding module: an X-ray crystallographic, thermodynamic and mutagenic study.
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Recognition of cello-oligosaccharides by a family 17 carbohydrate-binding module: an X-ray crystallographic, thermodynamic and mutagenic study.

机译:通过家族17碳水化合物结合模块识别纤维寡糖:X射线晶体学,热力学和诱变研究。

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摘要

The crystal structure of the Clostridium cellulovorans carbohydrate-binding module (CBM) belonging to family 17 has been solved to 1.7 A resolution by multiple anomalous dispersion methods. CBM17 binds to non-crystalline cellulose and soluble beta-1,4-glucans, with a minimal binding requirement of cellotriose and optimal affinity for cellohexaose. The crystal structure of CBM17 complexed with cellotetraose solved at 2.0 A resolution revealed that binding occurs in a cleft on the surface of the molecule involving two tryptophan residues and several charged amino acids. Thermodynamic binding studies and alanine scanning mutagenesis in combination with the cellotetraose complex structure allowed the mapping of the CBM17 binding cleft. In contrast to the binding groove characteristic of family 4 CBMs, family 17 CBMs appear to have a very shallow binding cleft that may be more accessible to cellulose chains in non-crystalline cellulose than the deeper binding clefts of family 4 CBMs. The structural differences in these two modules may reflect non-overlapping binding niches on cellulose surfaces. Copyright 2001 Academic Press.
机译:属于家族17的纤维梭菌碳水化合物结合模块(CBM)的晶体结构已通过多种异常分散方法解析为1.7 A分辨率。 CBM17与非晶纤维素和可溶性β-1,4-葡聚糖结合,对纤维素三糖的结合要求最低,并且对纤维素六糖的亲和力最佳。与纤维四糖复合的CBM17的晶体结构在2.0 A的分辨率下显示,结合发生在分子表面的裂缝中,涉及两个色氨酸残基和几个带电荷的氨基酸。热力学结合研究和丙氨酸扫描诱变与纤维四糖复合物结构相结合,可以绘制CBM17结合裂隙的图谱。与家族4 CBM的结合凹槽特征相反,家族17 CBM似乎具有非常浅的结合裂隙,与家族4 CBM的较深结合裂隙相比,非结晶纤维素中的纤维素链可能更易于接近。这两个模块的结构差异可能反映了纤维素表面上的非重叠结合位。版权所有2001学术出版社。

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