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Titlebook: Research Methods in Neurochemistry; Volume 5 Neville Marks,Richard Rodnight Book 1981 Springer Science+Business Media New York 1981 brain.n

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Intracellular Phospholipid Transfer Proteins in the Central Nervous Systemembranes (Wirtz, 1970, 1974). Second, they represent useful tools for the study of protein—phospholipid interactions. Third, they can be employed as “nonpenetrating probes” for the study of phospholipid organization in membranes.
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Understanding Receptor-Binding Assays involved in interpreting binding data. Although technical methodology is briefly considered, the reader is referred to the original literature as well as monographs edited by Yamamura .. (1978) and Blecher (1976) for detailed laboratory procedures. It should be emphasized that a true insight into t
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Assay Methods, Purification, and Characterization of L-Glutamate Decarboxylase and GABA-Transaminaserankel, 1950; Udenfriend, 1950). Definitive evidence for an inhibitory function for GABA at synapses came several years later, originating from Florey’s observation of the inhibitory effects of crude brain extracts on the function of the crayfish stretch receptor system and the identification of GAB
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Intracellular Phospholipid Transfer Proteins in the Central Nervous Systemphospholipids between a variety of natural and artificial membrane structures. Since their discovery by Wirtz and Zilversmit (1968) these proteins have attracted considerable attention for a number of reasons. First, it has been postulated that they may be involved in the synthesis and turnover of m
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Methods for Studying Lipid-Mediated Glycosyltransferases Involved in the Assembly of Glycoproteins iex structures of protein-bound carbohydrate chains provides a means for altering the properties of the membrane surface during developmental changes. Consequently, membrane glycoproteins in nervous tissue could be involved in neural histogenesis, synaptogenesis, myelination of axons, and other neuro
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