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Advancing understanding of microbial bioenergy conversion processes by activity-based protein profiling

机译:通过基于活性的蛋白质谱分析来增进对微生物生物能转化过程的了解

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摘要

The development of renewable biofuels is a global priority, but success will require novel technologies that greatly improve our understanding of microbial systems biology. An approach with great promise in enabling functional characterization of microbes is activity-based protein profiling (ABPP), which employs chemical probes to directly measure enzyme function in discrete enzyme classes in vivo and/or in vitro, thereby facilitating the rapid discovery of new biocatalysts and enabling much improved biofuel production platforms. We review general design strategies in ABPP, and highlight recent advances that are or could be pivotal to biofuels processes including applications of ABPP to cellulosic bioethanol, biodiesel, and phototrophic production of hydrocarbons. We also examine the key challenges and opportunities of ABPP in renewable biofuels research. The integration of ABPP with molecular and systems biology approaches will shed new insight on the catalytic and regulatory mechanisms of functional enzymes and their synergistic effects in the field of biofuels production.
机译:可再生生物燃料的开发是全球优先事项,但是成功将需要新颖的技术,这些技术将大大提高我们对微生物系统生物学的理解。基于活性的蛋白质谱分析(ABPP)是一种能够实现微生物功能鉴定的方法,该方法采用化学探针在体内和/或体外直接测量离散酶类别中的酶功能,从而促进新生物催化剂的快速发现。并大大改善了生物燃料生产平台。我们回顾了ABPP中的一般设计策略,并重点介绍了对生物燃料工艺至关重要的最新进展,包括将ABPP应用于纤维素生物乙醇,生物柴油和光养性碳氢化合物的生产。我们还将研究可再生生物燃料研究中ABPP的主要挑战和机遇。 ABPP与分子生物学和系统生物学方法的集成将为功能酶的催化和调节机制及其在生物燃料生产领域的协同效应提供新的见解。

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