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PMID: 9521776 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Electrospray ionization mass spectrometric analyses of phospholipids from rat and human pancreatic islets and subcellular membranes: comparison to other tissues and implications for membrane fusion in insulin exocytosis.

Biochemistry ·Vol. 37 ·No. 13 ·1998-03-31 ·Pages 4553-67

Ramanadham S, Hsu FF, Bohrer A, Nowatzke W, Ma Z, Turk J

Abstract

Glucose-induced insulin secretion from pancreatic islets involves hydrolysis of arachidonic acid from phospholipids as an intermediary event. Accumulation of nonesterified arachidonate in islet membranes may influence both ion fluxes that trigger insulin secretion and fusion of secretory granule and plasma membranes. Recent findings indicate that plasmenylethanolamine species may also participate in fusion of such membranes, but high-performance liquid chromatographic (HPLC) and gas chromatographic/mass spectrometric (GC/MS) analyses of islet secretory granule phospholipids suggested that they contain little plasmenylethanolamine. Here, electrospray ionization mass spectrometry (ESI/MS) of intact phospholipid molecules is used to demonstrate that the most prominent components of all major glycerophospholipid headgroup classes in islets are arachidonate-containing species. Such species contribute the majority of the ESI/MS negative ion current from rat and human islet glycerophosphoethanolamine (GPE), and the fraction of GPE negative ion current contributed by plasmenylethanolamine species in rat islets is higher than that for rat liver or heart and similar to that for brain. The most prominent sn-2 substituent of plasmenylethanolamine species in brain is docosahexaenoate and in islets is arachidonate. Arachidonate-containing plasmenylethanolamine species are also prominent components of GPE from islet secretory granules and plasma membranes. Fusion of islet secretory granule and plasma membranes is demonstrated to be catalyzed by cytosolic components from insulinoma cells and rat brain with chromatographic similarities to a rabbit brain factor that specifically catalyzes fusion of plasmenylethanolamine-containing membranes.

MeSH Terms
Animals Arachidonic Acid/chemistry Brain/metabolism Docosahexaenoic Acids/chemistry Exocytosis Humans In Vitro Techniques Insulin/metabolism Insulin Secretion Intracellular Membranes/chemistry,metabolism Islets of Langerhans/chemistry,metabolism,ultrastructure Liver/chemistry,metabolism Male Mass Spectrometry Membrane Fusion Membrane Lipids/chemistry,metabolism Myocardium/chemistry,metabolism Phosphatidylethanolamines/chemistry Phospholipids/chemistry,metabolism Rats Rats, Sprague-Dawley Subcellular Fractions/chemistry,metabolism Tumor Cells, Cultured
Chemicals
Insulin Membrane Lipids Phosphatidylethanolamines Phospholipids glycerophosphoethanolamine Docosahexaenoic Acids Arachidonic Acid
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Ramanadham S
Mass Spectrometry Resource, Division of Diabetes, Endocrinology, and Metabolism, Department of Medicine, Washington University School of Medicine, 660 South Euclid Avenue, St. Louis, Missouri 63110, USA.
Hsu F F
Bohrer A
Nowatzke W
Ma Z
Turk J
Article Info
Journal
Biochemistry
Abbr.
Biochemistry
ISSN
0006-2960
Published
1998-03-31
Pages
4553-67
Language
English
Region
United States
NLM ID
0370623
Subset
IM
Grants
NIDDK NIH HHS · DK34388 · United States
NCRR NIH HHS · RR00954 · United States
NCRR NIH HHS · S10-RR11260 · United States
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