Literature DB >> 22941373

Improved 2-methyl-1-propanol production in an engineered Bacillus subtilis by constructing inducible pathways.

Shanshan Li1, Xiaoqiang Jia, Jianping Wen.   

Abstract

High-level constitutive gene expression can result in cellular metabolic imbalance and limit production. To circumvent these problems, a P(alsSD)-controlled auto-inducible 2-ketoisovalerate biosynthetic pathway and a P(spac)-controlled IPTG-inducible Ehrlich pathway were constructed in Bacillus subtilis to modulate gene expression. Based on the precise gene expression characteristics of the two inducible pathways, the optimal IPTG induction time point and dose for 2-methyl-1-propanol biosynthesis were determined as 9.5 h and 300 μM, respectively. Under the optimized conditions, strain BSUΔL-03 with inducible pathways produced up to 3.83 ± 0.46 g 2-methyl-1-propanol/l, which was about 60 % higher than BSUL04 with constitutive pathways.

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Year:  2012        PMID: 22941373     DOI: 10.1007/s10529-012-1041-1

Source DB:  PubMed          Journal:  Biotechnol Lett        ISSN: 0141-5492            Impact factor:   2.461


  4 in total

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Journal:  AMB Express       Date:  2022-06-18       Impact factor: 4.126

Review 2.  Metabolic engineering of microorganisms for the production of higher alcohols.

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Journal:  mBio       Date:  2014-09-02       Impact factor: 7.867

Review 3.  Toward bioproduction of oxo chemicals from C1 feedstocks using isobutyraldehyde as an example.

Authors:  Liwei Guo; Lichao Sun; Yi-Xin Huo
Journal:  Biotechnol Biofuels Bioprod       Date:  2022-08-09

4.  Model-driven redox pathway manipulation for improved isobutanol production in Bacillus subtilis complemented with experimental validation and metabolic profiling analysis.

Authors:  Haishan Qi; Shanshan Li; Sumin Zhao; Di Huang; Menglei Xia; Jianping Wen
Journal:  PLoS One       Date:  2014-04-04       Impact factor: 3.240

  4 in total

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