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Lipids|March 30, 2007
Sterol biosynthesis inhibitors: potential for transition state analogs and mechanism-based inactivators targeted at sterol methyltransferaseZhihong Song, W David NesBioorganic & Medicinal Chemistry Letters|September 14, 2007
Inactivation of soybean sterol 24-C-methyltransferase by elongated sterol side chains at C26Zhihong Song, W David NesArchives of Biochemistry and Biophysics|November 19, 2003
Sterol methyltransferase2: purification, properties, and inhibitionWenxu Zhou, W David NesBioorganic & Medicinal Chemistry Letters|July 2, 2008
Cyclobranol: a substrate for C25-methyl sterol side chains and potent mechanism-based inactivator of plant sterol methyltransferaseJunqing Wang, W David NesLipids|June 20, 2008
Photoaffinity labeling and mutational analysis of 24-C-sterol methyltransferase defines the AdoMet binding sitePruthvi Jayasimha, W David NesPhytochemistry|May 2, 2006
Phytosterol biosynthesis pathway in Mortierella alpinaW David Nes, Shawn D NicholsArchives of Biochemistry and Biophysics|June 17, 2008
Yeast sterol C24-methyltransferase: role of highly conserved tyrosine-81 in catalytic competence studied by site-directed mutagenesis and thermodynamic analysisW David Nes, Pruthvi Jayasimha, Zhihong SongPhytochemistry|December 24, 2013
Both methylerythritol phosphate and mevalonate pathways contribute to biosynthesis of each of the major isoprenoid classes in young cotton seedlingsStefan Opitz, W David Nes, Jonathan GershenzonBiomolecules|March 28, 2024
Druggable Sterol Metabolizing Enzymes in Infectious Diseases: Cell Targets to Therapeutic LeadsW David Nes, Minu Chaudhuri, David J LeaverPageof 8