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Forward design of a complex enzyme cascade reaction

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논문

Forward design of a complex enzyme cascade reaction

학술지

Nature communications

저자명

Hold, Christoph; Billerbeck, Sonja; Panke, Sven

초록

<▼1><P>Enzymatic reaction networks are unique in that one can operate a large number of reactions under the same set of conditions concomitantly in one pot, but the nonlinear kinetics of the enzymes and the resulting system complexity have so far defeated rational design processes for the construction of such complex cascade reactions. Here we demonstrate the forward design of an <I>in vitro</I> 10-membered system using enzymes from highly regulated biological processes such as glycolysis. For this, we adapt the characterization of the biochemical system to the needs of classical engineering systems theory: we combine online mass spectrometry and continuous system operation to apply standard system theory input functions and to use the detailed dynamic system responses to parameterize a model of sufficient quality for forward design. This allows the facile optimization of a 10-enzyme cascade reaction for fine chemical production purposes.</P></▼1><▼2><P>[GRAPHIC OMISSION]Building multi-component enzymatic processes in one pot is challenged by the inherent complexity of each biochemical system. Here, the authors use online mass spectroscopy and engineering systems theory to achieve forward design of a ten-membered reaction cascade.</P></▼2>

발행연도

2016

발행기관

Nature Publishing Group

라이선스

cc-by

ISSN

2041-1723

7

페이지

pp.12971

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논문; 2016-09-28

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