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测定嗜热纤维梭菌 Cel9A 内切纤维素酶在结晶纤维素解聚过程中的分子状态。

Determination of the molecular states of the processive endocellulase Thermobifida fusca Cel9A during crystalline cellulose depolymerization.

机构信息

Department of Molecular Biology and Genetics, Cornell University, Ithaca, New York 14853, USA.

出版信息

Biotechnol Bioeng. 2012 Jan;109(1):295-9. doi: 10.1002/bit.23299. Epub 2011 Aug 24.

Abstract

Detailed understanding of cell wall degrading enzymes is important for their modeling and industrial applications, including in the production of biofuels. Here we used Cel9A, a processive endocellulase from Thermobifida fusca, to demonstrate that cellulases that contain a catalytic domain (CD) attached to a cellulose binding module (CBM) by a flexible linker exist in three distinct molecular states. By measuring the ability of a soluble competitor to reduce Cel9A activity on an insoluble substrate, we show that the most common state of Cel9A is bound via its CBM, but with its CD unoccupied by the insoluble substrate. These findings are relevant for kinetic modeling and microscopy studies of modular glycoside hydrolases.

摘要

详细了解细胞壁降解酶对于它们的建模和工业应用非常重要,包括在生物燃料生产中的应用。在这里,我们使用了来自嗜热纤维梭菌的过程性内切纤维素酶 Cel9A,证明了那些含有通过柔性接头连接的催化结构域(CD)和纤维素结合模块(CBM)的纤维素酶存在三种不同的分子状态。通过测量可溶性竞争物在不溶性底物上降低 Cel9A 活性的能力,我们表明 Cel9A 最常见的状态是通过其 CBM 结合的,但它的 CD 没有被不溶性底物占据。这些发现对于模块化糖苷水解酶的动力学建模和显微镜研究具有重要意义。

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