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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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期刊全稱Biochemistry of Cell Walls and Membranes in Fungi
影響因子2023Paul J. Kuhn,Anthony P. J. Trinci,Leonard G. Coppi
視頻videohttp://file.papertrans.cn/187/186700/186700.mp4
圖書封面Titlebook: Biochemistry of Cell Walls and Membranes in Fungi;  Paul J. Kuhn,Anthony P. J. Trinci,Leonard G. Coppi Conference proceedings 1990 Springer
影響因子Despite the many advances made during the last decade in various aspects of fungal biochemistry, there have been very few volumes devoted to the sub- ject in recent years. This lack is all the more surprising in view of the increas- ing use of fungi in gene manipulation studies and in biotechnological ap- plications, and of the current interest in the biorational discovery of novel agents for the control of fungal pathogens of plants and humans. We hope that this book goes some way to rectifying this situation by providing an up- to-date account of selected developments in two important areas, namely cell walls and membranes. Topics included in the book concern both yeasts and filamentous fungi. Although the main emphasis is on biogenesis, functional aspects are also discussed, e.g. the role of glycoproteins in recognition of sterols in mem- branes and of calcium in regulation. Several contributions describe in- terference with the ‘normal‘ biochemistry of cell walls and membranes with a view to increasing fundamental knowledge, but also highly relevant to the design of new fungicides and antimycotics. The steadily increasing impact of molecular biology on the study of fungal bioch
Pindex Conference proceedings 1990
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Chitin Synthesis in Yeast (,),the structure of both lateral walls and septa. In the yeast, ., it is mainly found in the primary septum, although a small amount appears to be dispersed throughout the cell wall (Molano et al. 1980; Horisberger and Vonlanthen 1977; Mol and Wessels 1987). This localization suggested that the formati
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Inhibition of Chitin Metabolism,opathogenic fungi, and also of the skeletal structures of most invertebrates. As vertebrates and higher plants do not produce this polysaccharide, chitin metabolism is an attractive target for antifungal agents and pesticides (Gooday 1977). A clear analogy is with the peptidoglycan of bacterial wall
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Lipids in the Structure and Function of Fungal Membranes,ate 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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,Squalene Epoxidase — Enzymology and Inhibition,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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