Glycosphingolipids Signaling, 1st ed. 2020

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Language: English

Approximative price 158.24 €

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Glycosphingolipids Signaling
Publication date:
181 p. · 15.5x23.5 cm · Paperback

Approximative price 158.24 €

In Print (Delivery period: 15 days).

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Glycosphingolipids Signaling
Publication date:
181 p. · 15.5x23.5 cm · Hardback

This book presents the latest knowledge and the most recent research results on glycosphingolipid (GSL)-mediated signaling. GSLs are important constituents of the plasma membrane that exert their distinct functions through binding to certain functional proteins. They play a role in various human diseases and also function as human alloantigens. Cellular GSLs are associated with many biological functions such as cellular oncotransformation, phenotype change, neuronal or embryonic development, regulation of cell division, cell?cell interaction, cell attachment, adhesion, and motility, and intracellular signaling via protein?carbohydrate or carbohydrate?carbohydrate interactions. This book opens by providing the key background on GSL glycan?receptor interactions and mammalian GSL synthesis. Up-to-date information is then presented on all aspects of GSL-dependent signaling. Viral protein and bacterial toxin protein interactions with host cell GSLs are examined in depth, and the concluding chapter is devoted to signaling regulation. The book should assist in the further development of new strategies against emerging infectious agents and intractable diseases.

1. Glycosphingolipids (GSLs).- 2. Mammal GSL synthesis via ER and Golgi network.- 3. The GSL dependent signaling.- 4. Viral protein interaction with host cells GSLs.- 5. Bacterial toxin protein interaction with host cells GSL.- 6. GSL signaling regulation.

Prof. Cheorl-Ho Kim

Molecular and Cellular Glycobiology Unit, Department of Biological Sciences, Sungkyunkwan University


Presents the latest research results in the field

Covers all aspects of GSL-mediated signaling and its regulation

Examines in depth viral protein and bacterial toxin protein interactions with host cell GSLs