Mass spectrometric evidence that agents that cause loss of Ca2+ from intracellular compartments induce hydrolysis of arachidonic acid from pancreatic islet membrane phospholipids by a mechanism that does not require a rise in cytosolic Ca2+ concentration

被引:53
作者
Nowatzke, W
Ramanadham, S
Ma, ZM
Hsu, FF
Bohrer, A
Turk, J
机构
[1] Washington Univ, Sch Med, Div Endocrinol Diabet & Metab, Dept Med, St Louis, MO 63110 USA
[2] Washington Univ, Sch Med, Div Lab Med, Dept Pathol, St Louis, MO 63110 USA
关键词
D O I
10.1210/en.139.10.4073
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Stimulation of pancreatic islets with glucose induces phospholipid hydrolysis and accumulation of nonesterified arachidonic acid, which may amplify the glucose-induced Ca2+ entry into islet beta-cells that triggers insulin secretion. Ca2+ loss from beta-cell intracellular compartments has been proposed to induce both Ca2+ entry and events dependent on arachidonate metabolism. We examine here effects of inducing Ca2+ loss from intracellular sequestration sites with ionophore A23187 and thapsigargin on arachidonate hydrolysis from islet phospholipids. A23187 induces a decline in islet arachidonate-containing phospholipids and release of nonesterified arachidonate. A23187-induced arachidonate release is of similar magnitude when islets are stimulated in Ca2+-replete or in Ca2+-free media or when islets loaded with the intracellular Ca2+ chelator BAPTA are stimulated in Ca2+-free medium, a condition in which A23187 induces no rise in beta-cell cytosolic [Ca2+]. Thapsigargin also induces islet arachidonate release under these conditions. A23187- or thapsigargin-induced arachidonate release is prevented by a bromoenol lactone (BEL) inhibitor of a beta-cell phospholipase A(2) (iPLA(2)), which does not require Ca2+ for catalytic activity and which is negatively modulated by and physically interacts with calmodulin by Ca2+-dependent mechanisms. Agents that cause Ca2+ loss from islet intracellular compartments thus induce arachidonate hydrolysis from phospholipids by a EEL-sensitive mechanism that does not require a rise in cytosolic [Ca2+], and a EEL-sensitive enzyme-like iPLA(2) or a related membranous activity may participate in sensing Ca2+ compartment content.
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页码:4073 / 4085
页数:13
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