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By John G. Taylor

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And G. Stephanopoulos (2001). Metabolic engineering as an integrating platform for strain development, Curr Opin Microbiol 4:336-340. , P. Soucaille, G. Whited, and G. Chotani (2002). Genomics to fluxomics and physiomics—pathway engineering, Curr Opin Microbiol 5:318-322. [44] De Boer, A. , and C. Schmidt-Dannert (2003). Recent efforts in engineering microbial cells to produce new chemical compounds, Curr Opin Chem Biol 7:273-278. , T. C. Dodge, M. Pepsin, and W. Weyler (2002). Application of metabolic engineering to improve both the production and use of biotech indigo, J Ind Microbiol Biotechnol 28:127-133.

C. A. Voigt, and S. L. Mayo (2002). De novo design of biocatalysts, Curr Opin Chem Biol 6:125-129. 22 John G. Taylor [37] McKnight, S. , and R. Kingsbury (1982). Transcriptional control signals of a eukaryotic protein-coding gene, Science 217:316-324. [38] Wikipedia (2005). org/wiki/Proteomics. [39] Liebler, D. C. (2001). Introduction to Proteomics: Tools for the New Biology. Humana Press, Totowa, NJ. [40] Twyman, R. M. (2004). Principles of Proteomics. BIOS Scientific Publishers, New York. , and T.

M. (2003). Environmental biotechnology in the postgenomics era, Biotech Adv 22:3-8. Frazier, M. , G. M. Johnson, D. G. Thomassen, C. E. Oliver, and A. Patrinos (2003). Realizing the potential of the genome revolution: the Genomes to Life Program, Science 300:290-293. Glick, B. , and J. J. Pasternack (2003). Molecular Biotechnology. ASM Press. De Boer, H. , L. J. Comstock, and M. Vasser (1983). The tac promoter: a functional hybrid derived from the trp and lac promoters, Proc Natl Acad Sci 80:21-25.

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