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The Journal of Biological Chemistry|May 25, 1980
Cycloheximide inhibits sterol biosynthesis in cell-free preparations of rat liverD L Raulston, L R Miller, G J SchroepferChemistry and Physics of Lipids|February 1, 1988
Inhibitors of sterol biosynthesis. Synthesis and activities of ring C oxygenated sterolsG J Schroepfer, E J Parish, A A KandutschJournal of Lipid Research|November 1, 1987
Inhibitors of sterol synthesis. Spectral characterization of derivatives of 5 alpha-cholest-8(14)-en-3 beta-ol-15-oneJ St Pyrek, W K Wilson, G J SchroepferThe Journal of Biological Chemistry|July 25, 1976
Sphingolipid base metabolism. Stereospecific uptake of proton in the enzymatic conversion of sphinganine 1-phosphate to ethanolamine 1-phosphateT Shimojo, T Akino, Y Miura, et al.The Journal of Biological Chemistry|August 10, 1981
Inhibitors of sterol synthesis. Differential effects of 14 alpha-hydroxymethyl-5 alpha-cholest-7-ene-3 beta, 15 alpha-diol and 14 alpha-hydroxymethyl-5 alpha-cholest-6-ene-3 beta, 15 alpha-diol on sterol synthesis in cell-free homogenates of rat liverL R Miller, R A Pascal, G J SchroepferChemistry and Physics of Lipids|April 1, 1977
Sterol synthesis. Chemical synthesis of 3beta-benzoyloxy -14alpha, 15alpha-epoxy-5alpha-cholest-7-ene, a key intermediate in the synthesis of 15-oxygenated sterolsE J Parish, T E Spike, G J SchroepferChemistry and Physics of Lipids|November 1, 1979
Further studies on the inhibition of sterol biosynthesis in animal cells by 15-oxygenated sterolsG J Schroepfer, E J Parish, A A KandutschChemistry and Physics of Lipids|May 23, 1994
Inhibitors of sterol synthesis. An improved chemical synthesis of 26-oxygenated delta 8(14)-15-ketosterols having the 25R configurationA U Siddiqui, W K Wilson, G J SchroepferJournal of Lipid Research|January 1, 1989
24,25-epoxysterols. Differentiation of 24R and 24S epimers by 13C nuclear magnetic resonance spectroscopyG T Emmons, W K Wilson, G J SchroepferBiochemical and Biophysical Research Communications|August 14, 1987
5 alpha-Cholest-8(14)-en-3 beta-ol-15-one. In vivo conversion to cholesterol upon oral administration to a nonhuman primateG J Schroepfer, T N Pajewski, M Hylarides, et al.Pageof 12