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CRISPR EnAbled Trackable genome Engineering for isopropanol production in Escherichia coli

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논문

CRISPR EnAbled Trackable genome Engineering for isopropanol production in Escherichia coli

학술지

Metabolic engineering

저자명

Liang, Liya; Liu, Rongming; Garst, Andrew D.; Lee, Thomas; Nogué , Violeta Sà nchez i.; Beckham, Gregg T.; Gill, Ryan T.

초록

<P><B>Abstract</B></P> <P>Isopropanol is an important target molecule for sustainable production of fuels and chemicals. Increases in DNA synthesis and synthetic biology capabilities have resulted in the development of a range of new strategies for the more rapid design, construction, and testing of production strains. Here, we report on the use of such capabilities to construct and test 903 different variants of the isopropanol production pathway in <I>Escherichia coli</I>. We first constructed variants to explore the effect of codon optimization, copy number, and translation initiation rates on isopropanol production. The best strain (PA06) produced isopropanol at titers of 17.5g/L, with a yield of 0.62 (mol/mol), and maximum productivity of 0.40g/L/h. We next integrated the isopropanol synthetic pathway into the genome and then used the CRISPR EnAbled Trackable genome Engineering (CREATE) strategy to generate an additional 640 individual RBS library variants for further evaluation. After testing each of these variants, we constructed a combinatorial library containing 256 total variants from four different RBS levels for each gene. The best producing variant, PA14, produced isopropanol at titers of 7.1g/L at 24h, with a yield of 0.75 (mol/mol), and maximum productivity of 0.62g/L/h (which was 0.22g/L/h above the parent strain PA07). We demonstrate the ability to rapidly construct and test close to ~1000 designer strains and identify superior performers.</P> <P><B>Highlights</B></P> <P> <UL> <LI> Isopropanol synthetic pathway was rationally designed and constructed in <I>E. coli</I>. </LI> <LI> CREATE strategy was used for individual and combinatorial RBS library construction. </LI> <LI> The ability to rapidly construct close to ~1000 designer strains were demonstrated. </LI> <LI> 0.62g/L/h of productivity with yield of 0.75mol/mol was achieved in PA14. </LI> </UL> </P>

발행연도

2017

발행기관

Elsevier

라이선스

elsevier-specific: oa user license

ISSN

1096-7176

ISSN

1096-7184

41

페이지

pp.1-10

주제어

Isopropanol; CRISPR EnAbled Trackable genome Engineering; RBS library; Engineered Escherichia coli; Proteomic analysis

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1 2023-12-11

논문; 2017-05-01

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