Literature DB >> 25940754

Synthesis of chemicals by metabolic engineering of microbes.

Xinxiao Sun1, Xiaolin Shen, Rachit Jain, Yuheng Lin, Jian Wang, Jing Sun, Jia Wang, Yajun Yan, Qipeng Yuan.   

Abstract

Metabolic engineering is a powerful tool for the sustainable production of chemicals. Over the years, the exploration of microbial, animal and plant metabolism has generated a wealth of valuable genetic information. The prudent application of this knowledge on cellular metabolism and biochemistry has enabled the construction of novel metabolic pathways that do not exist in nature or enhance existing ones. The hand in hand development of computational technology, protein science and genetic manipulation tools has formed the basis of powerful emerging technologies that make the production of green chemicals and fuels a reality. Microbial production of chemicals is more feasible compared to plant and animal systems, due to simpler genetic make-up and amenable growth rates. Here, we summarize the recent progress in the synthesis of biofuels, value added chemicals, pharmaceuticals and nutraceuticals via metabolic engineering of microbes.

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Year:  2015        PMID: 25940754     DOI: 10.1039/c5cs00159e

Source DB:  PubMed          Journal:  Chem Soc Rev        ISSN: 0306-0012            Impact factor:   54.564


  12 in total

1.  Energy- and carbon-efficient synthesis of functionalized small molecules in bacteria using non-decarboxylative Claisen condensation reactions.

Authors:  Seokjung Cheong; James M Clomburg; Ramon Gonzalez
Journal:  Nat Biotechnol       Date:  2016-04-18       Impact factor: 54.908

2.  Developing a pyruvate-driven metabolic scenario for growth-coupled microbial production.

Authors:  Jian Wang; Ruihua Zhang; Yan Zhang; Yaping Yang; Yuheng Lin; Yajun Yan
Journal:  Metab Eng       Date:  2019-07-23       Impact factor: 9.783

3.  Piceatannol Inhibits P. acnes-Induced Keratinocyte Proliferation and Migration by Downregulating Oxidative Stress and the Inflammatory Response.

Authors:  Tingting Zhu; Fumin Fang; Dongjie Sun; Shuyun Yang; Xiaoping Zhang; Xiuqin Yu; Li Yang
Journal:  Inflammation       Date:  2020-02       Impact factor: 4.092

4.  Engineering a microbial platform for de novo biosynthesis of diverse methylxanthines.

Authors:  Maureen McKeague; Yen-Hsiang Wang; Aaron Cravens; Maung Nyan Win; Christina D Smolke
Journal:  Metab Eng       Date:  2016-08-09       Impact factor: 9.783

5.  Analysis of the genomic sequences and metabolites of Serratia surfactantfaciens sp. nov. YD25T that simultaneously produces prodigiosin and serrawettin W2.

Authors:  Chun Su; Zhaoju Xiang; Yibo Liu; Xinqing Zhao; Yan Sun; Zhi Li; Lijun Li; Fan Chang; Tianjun Chen; Xinrong Wen; Yidan Zhou; Furong Zhao
Journal:  BMC Genomics       Date:  2016-11-03       Impact factor: 3.969

Review 6.  Microbial metabolites in nutrition, healthcare and agriculture.

Authors:  Rajendra Singh; Manoj Kumar; Anshumali Mittal; Praveen Kumar Mehta
Journal:  3 Biotech       Date:  2017-04-08       Impact factor: 2.406

7.  Light-powered Escherichia coli cell division for chemical production.

Authors:  Qiang Ding; Danlei Ma; Gao-Qiang Liu; Yang Li; Liang Guo; Cong Gao; Guipeng Hu; Chao Ye; Jia Liu; Liming Liu; Xiulai Chen
Journal:  Nat Commun       Date:  2020-05-08       Impact factor: 14.919

8.  Development of antisense RNA-mediated quantifiable inhibition for metabolic regulation.

Authors:  Ruihua Zhang; Yan Zhang; Jian Wang; Yaping Yang; Yajun Yan
Journal:  Metab Eng Commun       Date:  2021-02-19

9.  Engineering Escherichia coli to convert acetic acid to β-caryophyllene.

Authors:  Jianming Yang; Qingjuan Nie
Journal:  Microb Cell Fact       Date:  2016-05-05       Impact factor: 5.328

Review 10.  Bioprocess Optimization for the Production of Aromatic Compounds With Metabolically Engineered Hosts: Recent Developments and Future Challenges.

Authors:  Adelaide Braga; Nuno Faria
Journal:  Front Bioeng Biotechnol       Date:  2020-02-20
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