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Engineering Escherichia coli for renewable production of the 5-carbon polyamide building-blocks 5-aminovalerate and glutarate

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논문

Engineering Escherichia coli for renewable production of the 5-carbon polyamide building-blocks 5-aminovalerate and glutarate

학술지

Biotechnology and bioengineering

저자명

Adkins, Jake; Jordan, Justin; Nielsen, David R.

초록

<P><B>Abstract</B></P><P>Through metabolic pathway engineering, novel microbial biocatalysts can be engineered to convert renewable resources into useful chemicals, including monomer building&#8208;blocks for bioplastics production. Here we describe the systematic engineering of <I>Escherichia coli</I> to produce, as individual products, two 5&#8208;carbon polyamide building blocks, namely 5&#8208;aminovalerate (AMV) and glutarate. The modular pathways were derived using &ldquo;parts&rdquo; from the natural lysine degradation pathway of <I>Pseudomonas putida</I> KT2440. Endogenous over&#8208;production of the required precursor, lysine, was first achieved through metabolic deregulation of its biosynthesis pathway by introducing feedback resistant mutants of aspartate kinase III and dihydrodipicolinate synthase. Further disruption of native lysine decarboxylase activity (by deleting <I>cadA</I> and <I>ldcC</I>) limited cadaverine by&#8208;product formation, enabling lysine production to 2.25&thinsp;g/L at a glucose yield of 138&thinsp;mmol/mol (18% of theoretical). Co&#8208;expression of lysine monooxygenase and 5&#8208;aminovaleramide amidohydrolase (encoded by <I>davBA</I>) then resulted in the production of 0.86&thinsp;g/L AMV in 48&thinsp;h. Finally, the additional co&#8208;expression of glutaric semialdehyde dehydrogenase and 5&#8208;aminovalerate aminotransferase (encoded by <I>davDT</I>) led to the production of 0.82&thinsp;g/L glutarate under the same conditions. At this output, yields on glucose were 71 and 68&thinsp;mmol/mol for AMV and glutarate (9.5 and 9.1% of theoretical), respectively. These findings further expand the number and diversity of polyamide monomers that can be derived directly from renewable resources. Biotechnol. Bioeng. 2013; 110: 1726&ndash;1734. &copy; 2013 Wiley Periodicals, Inc.</P>

발행연도

2013

발행기관

Wiley Subscription Services, Inc., A Wiley Company

ISSN

0006-3592

ISSN

1097-0290

110

6

페이지

pp.1726-1734

주제어

polyamide; nylon; 5&#x2010; aminovalerate; glutarate; bioplastic; biomonomer;

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1 2023-12-11
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논문; 2013-12-31

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