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1.
Article in English | MEDLINE | ID: mdl-19596744

ABSTRACT

The budding yeast Saccharomyces cerevisiae is a valuable system to study cell-cycle regulation, which is defective in cancer cells. Due to the highly conserved nature of the cell-cycle machinery between yeast and humans, yeast studies are directly relevant to anticancer-drug discovery. The budding yeast is also an excellent model system for identifying and studying antifungal compounds because of the functional conservation of fungal genes. Moreover, yeast studies have also contributed greatly to our understanding of the biological targets and modes of action of bioactive compounds. Understanding the mechanism of action of clinically relevant compounds is essential for the design of improved second-generation molecules. Here we describe our methodology for screening a library of plant-derived natural products in yeast in order to identify and characterize new compounds with anti-proliferative properties.

2.
Nat Prod Res ; 22(7): 638-47, 2008 May 10.
Article in English | MEDLINE | ID: mdl-18569704

ABSTRACT

When defatted jojoba meal is used as animal food, it causes food-intake reduction and growth retardation. Detoxification procedures by chemical, microbiological, and solvent extraction methods are reported by several authors. Here we report a successful detoxification of jojoba meal using enzymes. We establish reaction conditions that yield new meal which has the same nutritional qualities in proteins as the original meal. The enzymatic reaction gives rise to one major compound to which the structure of an amide is assigned on the basis of IR, 1H and 13C NMR spectra. The effect of the resulting jojoba meal on the food intake in rats is checked. In contrast, the detoxified meal containing the amide derivatives shows no toxicological activity since rats receiving oral administration of the obtained meal show normal growth. Thus, it is expected that this meal could be used as an animal feed ingredient.


Subject(s)
Acetonitriles/chemistry , Animal Feed/toxicity , Cyclohexanes/chemistry , Eating/drug effects , Glucosides/chemistry , Magnoliopsida/chemistry , Seeds/chemistry , Acetonitriles/toxicity , Animals , Cyclohexanes/toxicity , Glucosides/toxicity , Magnoliopsida/enzymology , Magnoliopsida/toxicity , Male , Rats , Rats, Wistar , Seeds/enzymology , Seeds/toxicity
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