Leucine zipper-mediated targeting of multi-enzyme cascade reactions to inclusion bodies in Escherichia coli for enhanced production of 1-butanol = 대장균에서 부탄올 생산을 위한 루신 지퍼 기반의 다중효소 연쇄반응

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dc.contributor.authorGui Hwan Han-
dc.contributor.authorWonjae Seong-
dc.contributor.authorY Fu-
dc.contributor.authorPaul Kyung Seok Yoon-
dc.contributor.authorSeong Keun Kim-
dc.contributor.authorSoo Jin Yeom-
dc.contributor.authorDae-Hee Lee-
dc.contributor.authorSeung Goo Lee-
dc.date.accessioned2017-08-29-
dc.date.available2017-08-29-
dc.date.issued2017-
dc.identifier.issn1096-7176-
dc.identifier.uri10.1016/j.ymben.2016.12.012ko
dc.identifier.urihttps://oak.kribb.re.kr/handle/201005/17076-
dc.description.abstractMetabolons in nature have evolved to facilitate more efficient catalysis of multistep reactions through the co-localization of functionally related enzymes to cellular organelles or membrane structures. To mimic the natural metabolon architecture, we present a novel artificial metabolon that was created by targeting multi-enzyme cascade reactions onto inclusion body (IB) in Escherichia coli. The utility of this system was examined by co-localizing four heterologous enzymes of the 1-butanol pathway onto an IB that was formed in E. coli through overexpression of the cellulose binding domain (CBD) of Cellulomonas fimi exoglucanase. To target the 1-butanol pathway enzymes to the CBD IB, we utilized a peptide-peptide interaction between leucine zipper (LZ) peptides. We genetically fused the LZ peptide to the N-termini of four heterologous genes involved in the synthetic 1-butanol pathway, whereas an antiparallel LZ peptide was fused to the CBD gene. The in vivo activity of the CBD IB-based metabolon was examined through the determination of 1-butanol synthesis using E. coli transformed with two plasmids containing the LZ-fused CBD and LZ-fused 1-butanol pathway genes, respectively. In vivo synthesis of 1-butanol using the engineered E. coli yielded 1.98g/L of 1-butanol from glucose, representing a 1.5-fold increase over that obtained from E. coli expressing the LZ-fused 1-butanol pathway genes alone. In an attempt to examine the in vitro 1-butanol productivity, we reconstituted CBD IB-based metabolon using CBD IB and individual enzymes of 1-butanol pathway. The 1-butanol productivity of in vitro reconstituted CBD IB-based metabolon using acetoacetyl-CoA as the starting material was 2.29mg/L/h, 7.9-fold higher than that obtained from metabolon-free enzymes of 1-butanol pathway. Therefore, this novel CBD-based artificial metabolon may prove useful in metabolic engineering both in vivo and in vitro for the efficient production of desired products.-
dc.publisherElsevier-
dc.titleLeucine zipper-mediated targeting of multi-enzyme cascade reactions to inclusion bodies in Escherichia coli for enhanced production of 1-butanol = 대장균에서 부탄올 생산을 위한 루신 지퍼 기반의 다중효소 연쇄반응-
dc.title.alternativeLeucine zipper-mediated targeting of multi-enzyme cascade reactions to inclusion bodies in Escherichia coli for enhanced production of 1-butanol-
dc.typeArticle-
dc.citation.titleMetabolic Engineering-
dc.citation.number0-
dc.citation.endPage49-
dc.citation.startPage41-
dc.citation.volume40-
dc.contributor.affiliatedAuthorGui Hwan Han-
dc.contributor.affiliatedAuthorWonjae Seong-
dc.contributor.affiliatedAuthorPaul Kyung Seok Yoon-
dc.contributor.affiliatedAuthorSeong Keun Kim-
dc.contributor.affiliatedAuthorSoo Jin Yeom-
dc.contributor.affiliatedAuthorDae-Hee Lee-
dc.contributor.affiliatedAuthorSeung Goo Lee-
dc.contributor.alternativeName한귀환-
dc.contributor.alternativeName성원재-
dc.contributor.alternativeNameFu-
dc.contributor.alternativeName윤경석-
dc.contributor.alternativeName김성근-
dc.contributor.alternativeName염수진-
dc.contributor.alternativeName이대희-
dc.contributor.alternativeName이승구-
dc.identifier.bibliographicCitationMetabolic Engineering, vol. 40, pp. 41-49-
dc.identifier.doi10.1016/j.ymben.2016.12.012-
dc.subject.keyword1-Butanol-
dc.subject.keywordCellulose binding domain-
dc.subject.keywordEnzyme cascade-
dc.subject.keywordInclusion body-
dc.subject.keywordLeucine zipper-
dc.subject.keywordMetabolon-
dc.subject.local1-butanol-
dc.subject.local1-Butanol-
dc.subject.localcellulose binding domain-
dc.subject.localCellulose binding domain-
dc.subject.localEnzyme cascade-
dc.subject.localinclusion body-
dc.subject.localInclusion bodies-
dc.subject.localInclusion body-
dc.subject.localLeucine zipper-
dc.subject.localMetabolon-
dc.description.journalClassY-
Appears in Collections:
Synthetic Biology and Bioengineering Research Institute > Synthetic Biology Research Center > 1. Journal Articles
Korea Biofoundry > 1. Journal Articles
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