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首页> 外文期刊>Biotechnology Advances: An International Review Journal >Substrate channeling and enzyme complexes for biotechnological applications. [Review]
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Substrate channeling and enzyme complexes for biotechnological applications. [Review]

机译:用于生物技术应用的底物通道和酶复合物。 [评论]

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摘要

Substrate channeling is a process of transferring the product of one enzyme to an adjacent cascade enzyme or cell without complete mixing with the bulk phase. Such phenomena can occur in vivo, in vitro, or ex vivo. Enzyme-enzyme or enzyme-cell complexes may be static or transient. In addition to enhanced reaction rates through substrate channeling in complexes, numerous potential benefits of such complexes are protection of unstable substrates, circumvention of unfavorable equilibrium and kinetics imposed, forestallment of substrate competition among different pathways, regulation of metabolic fluxes, mitigation of toxic metabolite inhibition, and so on. Here we review numerous examples of natural and synthetic complexes featuring substrate channeling. Constructing synthetic in vivo, in vitro or ex vivo complexes for substrate channeling would have great biotechnological potentials in metabolic engineering, multi-enzyme-mediated biocatalysis, and cell-free synthetic pathway biotransformation (SyPaB). Copyright Copyright 2011 Elsevier Inc. All rights reserved.CAS Registry/EC Number/Name of Substance 0 (Enzymes, Immobilized). 0 (Multienzyme Complexes).
机译:底物通道化是将一种酶的产物转移到相邻的级联酶或细胞中而不与本体相完全混合的过程。这样的现象可以在体内,体外或离体发生。酶-酶或酶-细胞复合物可以是静态或瞬时的。除了通过复合物中的底物通道提高反应速率外,此类复合物的许多潜在好处还包括保护不稳定的底物,规避不利的平衡和动力学,阻止不同途径之间的底物竞争,调节代谢通量,减轻有毒代谢产物的抑制作用, 等等。在这里,我们回顾了许多具有底物通道特性的天然和合成配合物实例。构建用于底物通道的体内,体外或离体合成复合物在代谢工程,多酶介导的生物催化和无细胞合成途径生物转化(SyPaB)中将具有巨大的生物技术潜力。版权版权所有2011 Elsevier Inc.保留所有权利。CAS注册号/ EC编号/物质名称0(酶,固定化)。 0(多酶复合物)。

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