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单细胞分析揭示了纤维素酶协同作用的形态学靶点。

A single-molecule analysis reveals morphological targets for cellulase synergy.

机构信息

Energy Biosciences Institute, University of California, Berkeley, California, USA.

出版信息

Nat Chem Biol. 2013 Jun;9(6):356-61. doi: 10.1038/nchembio.1227. Epub 2013 Apr 7.

Abstract

The mechanisms of enzyme activity on solid substrates are not well understood. Unlike enzyme catalysis in aqueous solutions, enzyme activity on surfaces is complicated by adsorption steps and structural heterogeneities that make enzyme-substrate interactions difficult to characterize. Cellulase enzymes, which catalyze the depolymerization of cellulose, show binding specificities for different cellulose surface morphologies, but the influence of these specificities on the activity of multienzyme mixtures has remained unclear. We developed a metric to quantify binding-target arrangements determined by photoactivated localization microscopy, and we used that metric to show that combinations of cellulases designed to bind within similar but nonidentical morphologies can have synergistic activity. This phenomenon cannot be explained with the binary crystalline or amorphous classifications commonly used to characterize cellulase-binding targets. Our results reveal a strategy for improving the activity of cellulolytic mixtures and demonstrate a versatile method for investigating protein organization on heterogeneous surfaces.

摘要

酶在固体基质上的活性机制尚不清楚。与水溶液中的酶催化不同,表面上的酶活性受到吸附步骤和结构异质性的影响,使得酶-底物相互作用难以表征。纤维素酶能够催化纤维素的解聚,它们对不同的纤维素表面形态表现出结合特异性,但这些特异性对多酶混合物活性的影响仍不清楚。我们开发了一种度量标准来量化由光激活定位显微镜确定的结合靶位排列,并使用该度量标准表明,设计为在相似但不同形态内结合的纤维素酶组合可以具有协同活性。这种现象不能用通常用于表征纤维素酶结合靶位的二元结晶或无定形分类来解释。我们的结果揭示了一种提高纤维素分解混合物活性的策略,并展示了一种用于研究异质表面上蛋白质组织的通用方法。

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