Literature DB >> 2822851

Composition of lipids in elasmobranch electric organ and acetylcholine receptor membranes.

N P Rotstein1, H R Arias, F J Barrantes, M I Aveldaño.   

Abstract

The composition of phospholipids from electric organ and from membranes enriched in acetylcholine receptors (AChRs) is analyzed in three elasmobranch fish (Torpedo marmorata, Torpedo californica, and Discopyge tschudii). Irrespective of their purity, AChR-containing membranes are similar to electric organ in lipid and fatty acid composition. The following characteristics are common to the three species: (a) Choline, ethanolamine, and serine glycerophospholipids account for 80-90% of the phospholipids. (b) Their major fatty acid constituents are monoenes, saturates, and long-chain (n-3) polyenes (especially docosahexaenoate). (c) A large proportion of the ethanolamine glycerophospholipids (30-50%) is made up by plasmenylethanolamine, which contains fewer polyenes than phosphatidylethanolamine per mole of lipid. (d) Polyphosphoinositides represent 20-30% of the inositides of electric organ. (e) Phosphatidylinositol and phosphatidate have large proportions of 20- and 22-carbon polyenes. (f) Diphosphatidylglycerol and triacylglycerols are rich in oleate but also contain long-chain polyenes. (g) Sphingomyelin has monoenes and saturates ranging from 14 to 26 carbons. Species-related variations are observed (a) in the ratios between some phospholipid classes and subclasses and (b) in the relative abundance of the major polyunsaturated acyl chains of phospholipids. Despite these differences, the average unsaturation and length of fatty acids in major phospholipid classes are similar for the three species.

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Year:  1987        PMID: 2822851     DOI: 10.1111/j.1471-4159.1987.tb00996.x

Source DB:  PubMed          Journal:  J Neurochem        ISSN: 0022-3042            Impact factor:   5.372


  14 in total

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Authors:  M I Aveldaño; N P Rotstein; N T Vermouth
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Review 3.  Fluorescence Studies of Nicotinic Acetylcholine Receptor and Its Associated Lipid Milieu: The Influence of Erwin London's Methodological Approaches.

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Authors:  Ayman K Hamouda; David C Chiara; Michael P Blanton; Jonathan B Cohen
Journal:  Biochemistry       Date:  2008-12-02       Impact factor: 3.162

5.  Acidic hydrolysis of plasmalogens followed by high-performance liquid chromatography.

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Review 6.  Myelin in cartilaginous fish.

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Review 7.  Structural and functional crosstalk between acetylcholine receptor and its membrane environment.

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8.  Myogenic differentiation of the muscle clonal cell line BC3H-1 is accompanied by changes in its lipid composition.

Authors:  M F Pediconi; L E Politi; C B Bouzat; E B De Los Santos; F J Barrantes
Journal:  Lipids       Date:  1992-09       Impact factor: 1.880

9.  Uncovering the lipidic basis for the preparation of functional nicotinic acetylcholine receptor detergent complexes for structural studies.

Authors:  Orestes Quesada; Carol González-Freire; María Carla Ferrer; José O Colón-Sáez; Emily Fernández-García; Juan Mercado; Alejandro Dávila; Reginald Morales; José A Lasalde-Dominicci
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10.  Segregation of lipids near acetylcholine-receptor channels imaged by cryo-EM.

Authors:  Nigel Unwin
Journal:  IUCrJ       Date:  2017-05-02       Impact factor: 4.769

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