首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Tailored catalysts for plant cell-wall degradation: Redesigning the exo/endo preference of Cellvibrio japonicus arabinanase 43A
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Tailored catalysts for plant cell-wall degradation: Redesigning the exo/endo preference of Cellvibrio japonicus arabinanase 43A

机译:量身定制的植物细胞壁降解催化剂:重新设计日本棉弧菌阿拉伯聚糖酶43A的exo / endo偏好

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摘要

Enzymes acting on polymeric substrates are frequently classified as exo or endo, reflecting their preference for, or ignorance of, polymer chain ends. Most biotechnological applications, especially in the field of polysaccharide degradation, require either endo- or exo-acting hydrolases, or they harness the essential synergy between these two modes of action. Here, we have used genomic data in tandem with structure to modify, radically, the chain-end specificity of the Cellvibrio japonicus exo-arabinanase CjArb43A. The structure of Bacillus subtilis endo-arabinanase 43A (BsArb43A) in harness with chain-end recognition kinetics of CjArb43A directed a rational design approach that led to the conversion of the Cellvibrio enzyme from an exo to an endo mode of action. One of the exo-acting mutants, D35L/Q316A, displays similar activity to WT CjArb43A and the removal of the steric block mediated by the side chains of GIn-316 and Asp-53 at the -3 subsite confers its capacity to attack internal glycoside bonds. This study provides a template for the production of tailored industrial catalysts. The introduction of subtle changes informed by comparative 3D structural and genomic data can lead to fundamental changes in the mode of action of these enzymes.
机译:作用在聚合物底物上的酶经常被分类为外切酶或内切酶,反映了它们对聚合物链端的偏爱或无知。大多数生物技术应用,特别是在多糖降解领域,都需要内切或外切水解酶,或者它们需要在这两种作用方式之间发挥重要的协同作用。在这里,我们已将基因组数据与结构一并使用,从根本上改变了日本棉弧菌外阿拉伯聚糖酶CjArb43A的链端特异性。枯草芽孢杆菌内阿拉伯聚糖酶43A(BsArb43A)的结构与CjArb43A的链端识别动力学联系起来,指导了一种合理的设计方法,该方法导致了Cellvibrio酶从外切向内切作用的转化。一种exo-acting突变体D35L / Q316A显示出与WT CjArb43A相似的活性,Gin-316和Asp-53在-3个亚位点侧链介导的空间位阻的去除赋予了其攻击内部糖苷的能力债券。该研究为定制工业催化剂的生产提供了模板。通过比较3D结构和基因组数据得出的细微变化的引入可能导致这些酶的作用方式发生根本变化。

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