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Te N-hydroxycinnamoyl/benzoyltransferase from elicited cell cultures of carnation Dianthus caryophyllus L. Plant Mol Biol 1997, 35:77789. 36. D’Auria J: Acyltransferases in plants: a good time for you to be BAHD. Curr Opin Plant Biol 2006, 9:33140. 37. Hamberger B, Hahlbrock K: The 4-coumarate:CoA ligase gene family in Arabidopsis thaliana comprises a single rare, sinapate-activating and 3 usually occurring isoenzymes. Proc Natl Acad Sci USA 2004, 101:2209214. 38. Eudes A, Baidoo EE, Yang F, Burd H, Hadi MZ, Collins FW, Keasling JD, LoquD: Production of tranilast [N-(three,4-dimethoxycinnamoyl)anthranilic acid] and its analogs in yeast Saccharomyces cerevisiae. Appl Microbiol Biotechnol 2011, 89:989000. 39. Ajikumar PK, Tyo K, Carlsen S, Mucha O, Phon TH, Stephanopoulos G: Terpenoids: opportunities for biosynthesis of organic solution drugs applying engineered microorganisms. Mol Pharm 2008, five:16790. 40. Gosset G: Production of aromatic compounds in bacteria. Curr Opin Biotechnol 2009, 20:65158. 41. Balderas-Hern dez VE, Sabido-Ramos A, Silva P, Cabrera-Valladares N, Hern dez-Ch ez G, B z-Viveros JL, Mart ez A, Bol ar F, Gosset G: Metabolic engineering for improving anthranilate synthesis from glucose in Escherichia coli. Microb Cell Truth 2009, 8:19. 42. Yanofsky C, Horn V, Bonner M, Stasiowski S: Polarity and enzyme functions in mutants on the 1st 3 genes of your tryptophan operon of Escherichia col. Genetics 1971, 69:40933. 43. Vannelli T, Wei Qi W, Sweigard J, Gatenby AA, Sariaslani FS: Production of p-hydroxycinnamic acid from glucose in Saccharomyces cerevisiae and Escherichia coli by expression of heterologous genes from plants and fungi. Metab Eng 2007, 9:14251. 44. Qi WW, Vannelli T, Breinig S, Ben-Bassat A, Gatenby AA, Haynie SL, Sariaslani FS: Functional expression of prokaryotic and eukaryotic genes in Escherichia coli for conversion of glucose to p-hydroxystyrene.Palovarotene Metab Eng 2007, 9:26876.Bictegravir 45.PMID:24101108 Juminaga D, Baidoo EE, Redding-Johanson AM, Batth TS, Burd H, Mukhopadhyay A, Petzold CJ, Keasling JD: Modular engineering of L-tyrosine production in Escherichia coli. Appl Environ Microbiol 2012, 78:898. 46. Lin Y, Yan Y: Biosynthesis of caffeic acid in Escherichia coli working with its endogenous hydroxylase complicated. Microb Cell Reality 2012, 11:42. 47. Berner M, Krug D, Bihlmaier C, Vente A, M ler R, Bechthold A: Genes and enzymes involved in caffeic acid biosynthesis within the actinomyceteSaccharothrix espanaensis. J Bacteriol 2006, 188:2666673.Eudes et al. Microbial Cell Factories 2013, 12:62 http://www.microbialcellfactories/content/12/1/Page ten of48. Rautengarten C, Baidoo E, Keasling JD, Scheller HV: A straightforward process for enzymatic synthesis of unlabeled and radiolabeled hydroxycinnamateCoA. Bioenerg Res 2010, 3:11522. 49. Kang SY, Choi O, Lee JK, Hwang BY, Uhm TB, Hong YS: Artificial biosynthesis of phenylpropanoic acids in a tyrosine overproducing Escherichia coli strain. Microb Cell Reality 2012, 11:153. 50. Zhang H, Stephanopoulos G: Engineering E. coli for caffeic acid biosynthesis from renewable sugars. Appl Microbiol Biotechnol 2012, 97:3333. 51. Choi O, Wu CZ, Kang SY, Ahn JS, Uhm TB, Hong YS: Biosynthesis of plantspecific phenylpropanoids by construction of an artificial biosynthetic pathway in Escherichia coli. J Ind Microbiol Biotechnol 2011, 38:1657665. 52. Mu z AJ, Hern dez-Ch ez G, De Anda R, Mart ez A, Bol ar F, Gosset G: Metabolic engineering of Escherichia coli for enhancing L-3,4dihydroxyphenylalanine (L-DOPA) synthesis from glucose. J In.

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