화학공학소재연구정보센터
검색결과 : 12건
No. Article
1 Identification of RoCYP01 (CYP716A155) enables construction of engineered yeast for high-yield production of betulinic acid
Huang JJ, Zha WL, An TY, Dong H, Huang Y, Wang D, Yu RM, Duan LX, Zhang XL, Peters RJ, Dai ZB, Zi JC
Applied Microbiology and Biotechnology, 103(17), 7029, 2019
2 Optimization of recombinant expression enables discovery of novel cytochrome P450 activity in rice diterpenoid biosynthesis
Kitaoka N, Wu YS, Xu MM, Peters RJ
Applied Microbiology and Biotechnology, 99(18), 7549, 2015
3 Biosynthesis of Lycosantalonol, a cis-Prenyl Derived Diterpenoid
Zi JC, Matsuba Y, Hong YJ, Jackson AJ, Tantillo DJ, Pichersky E, Peters RJ
Journal of the American Chemical Society, 136(49), 16951, 2014
4 Effect of Isotopically Sensitive Branching on Product Distribution for Pentalenene Synthase: Support for a Mechanism Predicted by Quantum Chemistry
Zu LS, Xu MM, Lodewyk MW, Cane DE, Peters RJ, Tantillo DJ
Journal of the American Chemical Society, 134(28), 11369, 2012
5 Increasing diterpene yield with a modular metabolic engineering system in E. coli: comparison of MEV and MEP isoprenoid precursor pathway engineering
Morrone D, Lowry L, Determan MK, Hershey DM, Xu MM, Peters RJ
Applied Microbiology and Biotechnology, 85(6), 1893, 2010
6 Edaxadiene: A New Bioactive Diterpene from Mycobacterium tuberculosis (vol 131, pg 17526, 2009)
Mann FM, Xu MM, Chen XM, Fulton DB, Russell DG, Peters RJ
Journal of the American Chemical Society, 132(31), 10953, 2010
7 Edaxadiene: A New Bioactive Diterpene from Mycobacterium tuberculosis
Mann FM, Xu MM, Chen XM, Fulton DB, Russell DG, Peters RJ
Journal of the American Chemical Society, 131(48), 17526, 2009
8 Increasing complexity of a diterpene synthase reaction with a single residue switch
Morrone D, Xu MM, Fulton DB, Determan MK, Peters RJ
Journal of the American Chemical Society, 130(16), 5400, 2008
9 A modular approach for facile biosynthesis of labdane-related diterpenes
Cyr A, Wilderman PR, Determan M, Peters RJ
Journal of the American Chemical Society, 129(21), 6684, 2007
10 16-aza-ent-beyerane and 16-aza-ent-trachylobane: Potent mechanism-based inhibitors of recombinant ent-kaurene synthase from Arabidopsis thaliana
Roy A, Roberts FG, Wilderman PR, Zhou K, Peters RJ, Coates RM
Journal of the American Chemical Society, 129(41), 12453, 2007