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Titlebook: Cholesterol; Its Functions and Me Robert Bittman Book 1997 Springer Science+Business Media New York 1997 Lipid.development.metabolism.nervo

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https://doi.org/10.1007/978-3-642-83452-3olism between fungi and animals. Unlike animals that synthesize 24-desalkyl sterols, such as cholesterol (cholest-5-en-3β-ol), many pathogenic fungi synthesize 24-alkylsterols, such as ergosterol (24β-methyl cholesta-5,7,22-trien-3β-ol). The major difference in the two sterols stems structurally from the presence and nature of the 24-alkyl group.
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Antifungal Sterol Biosynthesis Inhibitors,olism between fungi and animals. Unlike animals that synthesize 24-desalkyl sterols, such as cholesterol (cholest-5-en-3β-ol), many pathogenic fungi synthesize 24-alkylsterols, such as ergosterol (24β-methyl cholesta-5,7,22-trien-3β-ol). The major difference in the two sterols stems structurally from the presence and nature of the 24-alkyl group.
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,Cholesterol-Sphingomyelin Interactions in Cells—Effects on Lipid Metabolism,h cellular lipid traffic (van Meer, 1989;Pagano, 1990; Voelker, 1991; Allan and Kallen, 1993), with transport and metabolism of sphingomyelin (Koval and Pagano, 1991), and with the role of sphingolipids in cell signaling (Kolesnick, 1991, 1994; Hannun and Bell, 1993; Hannun, 1994), may also be of interest to the reader.
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Regulation of Mitochondrial Cholesterol Metabolism, acids and steroid hormones. Because of cholesterol’s importance to cellular function, intracellular cholesterol concentrations are highly regulated (Yeagle, 1985; Lange and Ramos, 1983). Indeed, increases or decreases in this sterol can produce major alterations in cell physiology.
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