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Assembly and multiple gene expression of thermophilic enzymes in Escherichia coli for in vitro metabolic engineering

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바이오화학분류
    • 바이오플라스틱
      1. 플라스틱
    • 바이오정밀화학
      1. 기타
    • 화장품용 기능성소재
      1. 계면활성제⁄증점제
    • 의료용 화학소재
      1. 치료제
      2. 건강보조식품
      3. 식품첨가제
논문

Assembly and multiple gene expression of thermophilic enzymes in Escherichia coli for in vitro metabolic engineering

학술지

Biotechnology and bioengineering

저자명

Ninh, Pham Huynh; Honda, Kohsuke; Sakai, Takaaki; Okano, Kenji; Ohtake, Hisao

초록

<P><B>ABSTRACT</B></P><P>In vitro reconstitution of an artificial metabolic pathway is an emerging approach for the biocatalytic production of industrial chemicals. However, several enzymes have to be separately prepared (and purified) for the construction of an in vitro metabolic pathway, thereby limiting the practical applicability of this approach. In this study, genes encoding the nine thermophilic enzymes involved in a non&#8208;ATP&#8208;forming chimeric glycolytic pathway were assembled in an artificial operon and co&#8208;expressed in a single recombinant <I>Escherichia coli</I> strain. Gene expression levels of the thermophilic enzymes were controlled by their sequential order in the artificial operon. The specific activities of the recombinant enzymes in the cell&#8208;free extract of the multiple&#8208;gene&#8208;expression <I>E. coli</I> were 5.0&ndash;1,370 times higher than those in an enzyme cocktail prepared from a mixture of single&#8208;gene&#8208;expression strains, in each of which a single one of the nine thermophilic enzymes was overproduced. Heat treatment of a crude extract of the multiple&#8208;gene&#8208;expression cells led to the denaturation of indigenous proteins and one&#8208;step preparation of an in vitro synthetic pathway comprising only a limited number of thermotolerant enzymes. Coupling this in vitro pathway with other thermophilic enzymes including the H<SUB>2</SUB>O&#8208;forming NADH oxidase or the malate/lactate dehydrogenase facilitated one&#8208;pot conversion of glucose to pyruvate or lactate, respectively. Biotechnol. Bioeng. 2015;112: 189&ndash;196. &copy; 2014 Wiley Periodicals, Inc.</P>

발행연도

2015

ISSN

0006-3592

ISSN

1097-0290

112

1

페이지

pp.189-196

주제어

in vitro metabolic engineering; gene assembly; multiple&#x2010; gene expression; thermophilic enzymes;

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논문; 2015-12-31

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