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Tools for characterizing the whole-cell bio-oxidation of alkanes at microscale

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논문

Tools for characterizing the whole-cell bio-oxidation of alkanes at microscale

학술지

Biotechnology and bioengineering

저자명

Grant, Chris; da Silva Damas Pinto, Ana Catarina; Lui, Hai‐ Po; Woodley, John M.; Baganz, Frank

초록

<P><B>Abstract</B></P><P>This article describes the first reported microwell whole&#8208;cell bioconversion using a water immiscible substrate that matches the specific activity and yield achieved in a 1.2&thinsp;L stirred tank bioreactor. Maximum yields of 0.6&thinsp;g/L<SUB>total</SUB> 1&#8208;dodecanol achieved in 24&thinsp;h compare favorably to 0.28&thinsp;g/L<SUB>total</SUB> 1&#8208;dodecanol after 48&thinsp;h obtained in a stirred tank reactor. Using the microwell platform we present a rapid and systematic approach to identify the key bottlenecks in the bio&#8208;oxidation of long&#8208;chain alkanes using <I>Escherichia coli</I> expressing the alkane hydroxylase (alkB) complex. The results indicate that mass transfer rates limit productivity in the <I>n</I>&#8208;dodecane bio&#8208;oxidation system, rather than inherent enzyme activity. Furthermore, substrate solubility, oxygen availability and glucose concentration act cooperatively to affect the amount of by&#8208;product, dodecanoic acid. Optimizing these factors using response surface methodology enabled specific yields of 1&#8208;dodecanol to increase eightfold and overoxidation to dodecanoic acid to be reduced from 95% to 55%. This resulted in specific activities of 10.4&thinsp;&micro;mol/min/g<SUB>dcw</SUB> on <I>n</I>&#8208;dodecane; approximately 50% of the 21&thinsp;&micro;mol/min/g<SUB>dcw</SUB> obtained with <I>n</I>&#8208;octane. For the first time, this in vivo rate difference is within the range reported for the purified enzyme. Finally, the results obtained also provide strong evidence that the mechanism of <I>E. coli</I> interaction with alkanes is mainly via uptake of alkanes dissolved in the aqueous phase rather than by direct cell&ndash;droplet contact. Biotechnol. Bioeng. 2012;109: 2179&ndash;2189. &copy; 2012 Wiley Periodicals, Inc.</P>

발행연도

2012

발행기관

Wiley Subscription Services, Inc., A Wiley Company

ISSN

0006-3592

ISSN

1097-0290

109

9

페이지

pp.2179-2189

주제어

two&#x2010; liquid phase; monooxygenase; scale&#x2010; down; substrate solubility; design of experiments; whole&#x2010; cell biocatalysis;

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1 2023-12-11
2 2023-12-11

논문; 2012-04-17

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