Engineering of a Malonyl-CoA Ligase for Production of Fluorinated Polyketide Extender Units. [PDF]
Paulsel TQ, Williams GJ.
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Branch point control at malonyl-CoA node: A computational framework to uncover the design principles of an ideal genetic-metabolic switch. [PDF]
Xu P.
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ReaL-MGE is a tool for enhanced multiplex genome engineering and application to malonyl-CoA anabolism. [PDF]
Zheng W +11 more
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Author Correction: ReaL-MGE is a tool for enhanced multiplex genome engineering and application to malonyl-CoA anabolism. [PDF]
Zheng W +11 more
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Establishing a Malonyl-CoA Biosensor for the Two Model Cyanobacteria <i>Synechocystis</i> sp. PCC 6803 and <i>Synechococcus elongatus</i> PCC 7942. [PDF]
Cengic I, Hudson EP.
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Hepatic malonyl-CoA synthesis restrains gluconeogenesis by suppressing fat oxidation, pyruvate carboxylation, and amino acid availability. [PDF]
Deja S +17 more
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Repurposing type III polyketide synthase as a malonyl-CoA biosensor for metabolic engineering in bacteria. [PDF]
Yang D +6 more
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A novel multidomain acyl-CoA carboxylase in Saccharopolyspora erythraea provides malonyl-CoA for de novo fatty acid biosynthesis. [PDF]
Livieri AL +4 more
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Loading of malonyl-CoA onto tandem acyl carrier protein domains of polyunsaturated fatty acid synthases. [PDF]
Santín O, Moncalián G.
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The Mammalian Malonyl-CoA Synthetase ACSF3 Is Required for Mitochondrial Protein Malonylation and Metabolic Efficiency. [PDF]
Bowman CE +8 more
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