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Enhanced production of n-alkanes in Escherichia coli by spatial organization of biosynthetic pathway enzymes

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논문

Enhanced production of n-alkanes in Escherichia coli by spatial organization of biosynthetic pathway enzymes

학술지

Journal of biotechnology

저자명

Rahman, Z.; Sung, B.H.; Yi, J.Y.; Bui, L.M.; Lee, J.H.; Kim, S.C.

초록

Alkanes chemically mimic hydrocarbons found in petroleum, and their demand as biofuels is steadily increasing. Biologically, n-alkanes are produced from fatty acyl-ACPs by acyl-ACP reductases (AARs) and aldehyde deformylating oxygenases (ADOs). One of the major impediments in n-alkane biosynthesis is the low catalytic turnover rates of ADOs. Here, we studied n-alkane biosynthesis in Escherichia coli using a chimeric ADO-AAR fusion protein or zinc finger protein-guided ADO/AAR assembly on DNA scaffolds to control their stoichiometric ratios and spatial arrangements. Bacterial production of n-alkanes with the ADO-AAR fusion protein was increased 4.8-fold (24mg/L) over a control strain expressing ADO and AAR separately. Optimal n-alkane biosynthesis was achieved when the ADO:AAR binding site ratio on a DNA scaffold was 3:1, yielding an 8.8-fold increase (44mg/L) over the control strain. Our findings indicate that the spatial organization of alkane-producing enzymes is critical for efficient n-alkane biosynthesis in E. coli.

발행연도

2014

발행기관

Elsevier Science Publishers

ISSN

0168-1656

ISSN

1873-4863

192

1

페이지

pp.187-191

주제어

Alkanes; Synthetic biology; DNA scaffold; Chimeric expression; Biofuel

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1 2023-12-11

논문; 2014-12-01

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