Literature DB >> 21591680

Constructing de novo biosynthetic pathways for chemical synthesis inside living cells.

Amy M Weeks1, Michelle C Y Chang.   

Abstract

Living organisms have evolved a vast array of catalytic functions that make them ideally suited for the production of medicinally and industrially relevant small-molecule targets. Indeed, native metabolic pathways in microbial hosts have long been exploited and optimized for the scalable production of both fine and commodity chemicals. Our increasing capacity for DNA sequencing and synthesis has revealed the molecular basis for the biosynthesis of a variety of complex and useful metabolites and allows the de novo construction of novel metabolic pathways for the production of new and exotic molecular targets in genetically tractable microbes. However, the development of commercially viable processes for these engineered pathways is currently limited by our ability to quickly identify or engineer enzymes with the correct reaction and substrate selectivity as well as the speed by which metabolic bottlenecks can be determined and corrected. Efforts to understand the relationship among sequence, structure, and function in the basic biochemical sciences can advance these goals for synthetic biology applications while also serving as an experimental platform for elucidating the in vivo specificity and function of enzymes and reconstituting complex biochemical traits for study in a living model organism. Furthermore, the continuing discovery of natural mechanisms for the regulation of metabolic pathways has revealed new principles for the design of high-flux pathways with minimized metabolic burden and has inspired the development of new tools and approaches to engineering synthetic pathways in microbial hosts for chemical production.

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Year:  2011        PMID: 21591680      PMCID: PMC3768262          DOI: 10.1021/bi200416g

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  207 in total

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Review 5.  Enzyme (re)design: lessons from natural evolution and computation.

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Journal:  Curr Opin Chem Biol       Date:  2009-02-23       Impact factor: 8.822

6.  A novel semi-biosynthetic route for artemisinin production using engineered substrate-promiscuous P450(BM3).

Authors:  Jeffrey A Dietrich; Yasuo Yoshikuni; Karl J Fisher; Frank X Woolard; Denise Ockey; Derek J McPhee; Neil S Renninger; Michelle C Y Chang; David Baker; Jay D Keasling
Journal:  ACS Chem Biol       Date:  2009-04-17       Impact factor: 5.100

7.  Microbial conversion of glycerol to 1,3-propanediol by an engineered strain of Escherichia coli.

Authors:  Xueming Tang; Yongsong Tan; Hong Zhu; Kai Zhao; Wei Shen
Journal:  Appl Environ Microbiol       Date:  2009-01-09       Impact factor: 4.792

Review 8.  High-valent iron in chemical and biological oxidations.

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Review 9.  RNA-Seq: a revolutionary tool for transcriptomics.

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10.  Optimization of the mevalonate-based isoprenoid biosynthetic pathway in Escherichia coli for production of the anti-malarial drug precursor amorpha-4,11-diene.

Authors:  Jennifer R Anthony; Larry C Anthony; Farnaz Nowroozi; Gina Kwon; Jack D Newman; Jay D Keasling
Journal:  Metab Eng       Date:  2008-08-12       Impact factor: 9.783

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  11 in total

Review 1.  Computational tools for the synthetic design of biochemical pathways.

Authors:  Marnix H Medema; Renske van Raaphorst; Eriko Takano; Rainer Breitling
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2.  Expanding the fluorine chemistry of living systems using engineered polyketide synthase pathways.

Authors:  Mark C Walker; Benjamin W Thuronyi; Louise K Charkoudian; Brian Lowry; Chaitan Khosla; Michelle C Y Chang
Journal:  Science       Date:  2013-09-06       Impact factor: 47.728

3.  Using Chemical Knowledge to Uncover New Biological Function: Discovery of the Cylindrocyclophane Biosynthetic Pathway.

Authors:  Hitomi Nakamura; Emily P Balskus
Journal:  Synlett       Date:  2013-07       Impact factor: 2.454

4.  Cytochrome P450 Enzyme Metabolites in Lead Discovery and Development.

Authors:  Sylvie E Kandel; Larry C Wienkers; Jed N Lampe
Journal:  Annu Rep Med Chem       Date:  2014       Impact factor: 1.059

5.  Synthetic biology approaches to fluorinated polyketides.

Authors:  Benjamin W Thuronyi; Michelle C Y Chang
Journal:  Acc Chem Res       Date:  2015-02-26       Impact factor: 22.384

6.  Cylindrocyclophane biosynthesis involves functionalization of an unactivated carbon center.

Authors:  Hitomi Nakamura; Hilary A Hamer; Gopal Sirasani; Emily P Balskus
Journal:  J Am Chem Soc       Date:  2012-11-02       Impact factor: 15.419

7.  High-throughput sequencing and de novo transcriptome assembly of Swertia japonica to identify genes involved in the biosynthesis of therapeutic metabolites.

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8.  A general method for artificial metalloenzyme formation through strain-promoted azide-alkyne cycloaddition.

Authors:  Hao Yang; Poonam Srivastava; Chen Zhang; Jared C Lewis
Journal:  Chembiochem       Date:  2013-12-20       Impact factor: 3.164

Review 9.  Recent progress in the metabolic engineering of alkaloids in plant systems.

Authors:  Weslee S Glenn; Weerawat Runguphan; Sarah E O'Connor
Journal:  Curr Opin Biotechnol       Date:  2012-09-03       Impact factor: 10.279

10.  A highly selective biosynthetic pathway to non-natural C50 carotenoids assembled from moderately selective enzymes.

Authors:  Maiko Furubayashi; Mayu Ikezumi; Shinichi Takaichi; Takashi Maoka; Hisashi Hemmi; Takuya Ogawa; Kyoichi Saito; Alexander V Tobias; Daisuke Umeno
Journal:  Nat Commun       Date:  2015-07-14       Impact factor: 14.919

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