Page 52 - Advances in bioenergy (2016)
P. 52
Escherichia coli. Appl Microbiol Biotechnol 2008, 77:1305–1316.
20. Shen CR, Lan EI, Dekishima Y, Baez A, Cho KM, Liao JC. Driving forces enable high-titer
anaerobic 1-butanol synthesis in Escherichia coli. Appl Environ Microbiol 2011,
77:2905–2915.
21. Bond-Watts BB, Bellerose RJ, Chang MCY. Enzyme mechanism as a kinetic control
element for designing synthetic biofuel pathways. Nat Chem Biol 2011, 7:222–227.
22. Atsumi S, Hanai T, Liao JC. Non-fermentative pathways for synthesis of branched-chain
higher alcohols as biofuels. Nature 2008, 451:86–89.
23. Bastian S, Liu X, Meyerowitz JT, Snow CD, Chen MMY, Arnold FH. Engineered ketol-
acid reductoisomerase and alcohol dehydrogenase enable anaerobic 2-methylpropan-1-ol
production at theoretical yield in Escherichia coli. Metab Eng 2011, 13:345–352.
24. Perlack RD, Wright LL, Turhollow AF, Graham RL, Stokes BJ, Erbach DC. Biomass as
feedstock for a bioenergy and bioproducts industry: the technical feasibility of a billion-ton
annual supply. 2005.
25. Jeffries TW. Engineering yeasts for xylose metabolism. Curr Opin Biotechnol 2006,
17:320–326.
26. Matsushika A, Inoue H, Kodaki T, Sawayama S. Ethanol production from xylose in
engineered Saccharomyces cerevisiae strains: current state and perspectives. Appl
Microbiol Biotechnol 2009, 84:37–53.
27. Jin Y-S, Laplaza JM, Jeffries TW. Saccharomyces cerevisiae engineered for xylose
metabolism exhibits a respiratory response. Appl Environ Microbiol 2004, 70:6816–6825.
28. Galazka JM, Tian C, Beeson WT, Martinez B, Glass NL, Cate JHD. Cellodextrin transport
in yeast for improved biofuel production. Science 2010, 330:84–86.
29. Ha S-J, Galazka JM, Rin Kim S, Choi J-H, Yang X, Seo J-H, Louise Glass N, Cate JHD,
Jin Y-S. Engineered Saccharomyces cerevisiae capable of simultaneous cellobiose and
xylose fermentation. Proc Natl Acad Sci 2011, 108:504–509.
30. Cho H, Cronan JE. Defective export of a periplasmic enzyme disrupts regulation of fatty
acid synthesis. J Biol Chem 1995, 270:4216–4219.
31. Steen EJ, Kang Y, Bokinsky G, Hu Z, Schirmer A, McClure A, del Cardayre SB, Keasling
JD. Microbial production of fatty-acid-derived fuels and chemicals from plant biomass.
Nature 2010, 463:559–562.
32. Lu X, Vora H, Khosla C. Overproduction of free fatty acids in E. coli: Implications for
biodiesel production. Metab Eng 2008, 10:333–339.
33. Lennen RM, Braden DJ, West RM, Dumesic JA, Pfleger BF. A process for microbial