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Titlebook: Biochemistry of Cell Walls and Membranes in Fungi; Paul J. Kuhn,Anthony P. J. Trinci,Leonard G. Coppi Conference proceedings 1990 Springer

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https://doi.org/10.1007/978-3-7908-1960-1otic cells (Kornfeld and Kornfeld 1985; Tanner and Lehle 1987). They are also found frequently, but not always, as constituents of cell envelopes of archaebacteria (Sumper 1987). The possibility of rare occurrence in eubacteria (Messner and Sleytr 1988) is still under debate.
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https://doi.org/10.1007/978-3-7908-1960-1ate and capable of rapid direct responses to manipulation of environmental factors, fungi have been relatively little exploited in fundamental studies on membrane composition and the roles of membrane lipids. Nevertheless, such investigations can often be carried out more directly and conveniently w
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https://doi.org/10.1007/978-3-7908-1960-1he association of proteins with lipids (Gibbons et al. 1982) or, as pointed out by Lewis Thomas (1974), “it takes a membrane to make sense out of disorder”. In these membranes, sterols play a major role both architecturally and functionally. The most common membrane sterol in animals is cholesterol
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Aufbau der modernen Kostenrechnung,way. The conversion of this 30-carbon hydrocarbon to the tetracyclic lanosterol structure was originally thought to occur in one step without intermediates. Tchen and Bloch (1957) showed that rat liver extracts require oxygen and reduced pyridine nucleotide to perform cyclisation of squalene. Yeast
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