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代谢工程的观点:理解细胞调控以控制代谢途径。

Perspectives in metabolic engineering: understanding cellular regulation towards the control of metabolic routes.

机构信息

David Geffen School of Medicine, University of California, Los Angeles, CA, USA.

出版信息

Appl Biochem Biotechnol. 2013 Jan;169(1):55-65. doi: 10.1007/s12010-012-9951-x. Epub 2012 Nov 9.

Abstract

Metabolic engineering seeks to redirect metabolic pathways through the modification of specific biochemical reactions or the introduction of new ones with the use of recombinant technology. Many of the chemicals synthesized via introduction of product-specific enzymes or the reconstruction of entire metabolic pathways into engineered hosts that can sustain production and can synthesize high yields of the desired product as yields of natural product-derived compounds are frequently low, and chemical processes can be both energy and material expensive; current endeavors have focused on using biologically derived processes as alternatives to chemical synthesis. Such economically favorable manufacturing processes pursue goals related to sustainable development and "green chemistry". Metabolic engineering is a multidisciplinary approach, involving chemical engineering, molecular biology, biochemistry, and analytical chemistry. Recent advances in molecular biology, genome-scale models, theoretical understanding, and kinetic modeling has increased interest in using metabolic engineering to redirect metabolic fluxes for industrial and therapeutic purposes. The use of metabolic engineering has increased the productivity of industrially pertinent small molecules, alcohol-based biofuels, and biodiesel. Here, we highlight developments in the practical and theoretical strategies and technologies available for the metabolic engineering of simple systems and address current limitations.

摘要

代谢工程旨在通过使用重组技术修改特定的生化反应或引入新的生化反应来重新定向代谢途径。许多通过引入产物特异性酶或通过将整个代谢途径重建到能够维持生产并能够合成高产量所需产物的工程宿主中而合成的化学物质,其产量通常较低,并且化学过程既耗能又耗材料;目前的努力集中在使用生物衍生过程替代化学合成。这些具有经济优势的制造工艺追求与可持续发展和“绿色化学”相关的目标。代谢工程是一种多学科的方法,涉及化学工程、分子生物学、生物化学和分析化学。分子生物学、基因组规模模型、理论理解和动力学建模的最新进展增加了人们对使用代谢工程来重新定向代谢通量以实现工业和治疗目的的兴趣。代谢工程的使用提高了工业相关小分子、基于酒精的生物燃料和生物柴油的生产力。在这里,我们重点介绍了简单系统代谢工程中可用的实用和理论策略和技术的发展,并解决了当前的局限性。

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