Ma Z, Ramanadham S, Hu Z, Turk J
Mass Spectrometry Resource, Division of Endocrinology, Diabetes, and Metabolism, Department of Medicine, Washington University School of Medicine, St. Louis, MO 63110, USA.
Biochim Biophys Acta. 1998 Apr 22;1391(3):384-400. doi: 10.1016/s0005-2760(98)00027-7.
Stimulation of pancreatic islets with glucose induces phospholipid hydrolysis and accumulation of nonesterified arachidonic acid, which may play signaling or effector roles in insulin secretion. Of enzymes that catalyze phospholipid hydrolysis, islet beta-cells express low molecular weight secretory phospholipases A2 (PLA2) and a Group VI, Ca2+-independent PLA2 (iPLA2). Previous studies indicate that islets also express a protein recognized by antibodies against a Group IV, cytosolic, Ca2+-dependent PLA2 (cPLA2). To further examine the possible expression of cPLA2 by islets, we screened a rat islet cDNA library with a probe that recognizes cPLA2 sequence, and isolated a full-length cPLA2 cDNA. The rat islet cPLA2-deduced amino acid sequence is 96% identical to those of human and mouse cPLA2. Transfection of COS-7 cells with cPLA2 cDNA in an expression vector induced expression of Ca2+-dependent PLA2 activity and of a protein recognized by anti-cPLA2 antibody. Comparison of recombinant islet cPLA2 and iPLA2 activities expressed in transfected COS-7 cells indicated that iPLA2 but not cPLA2 is stimulated by ATP. Both activities are similarly sensitive to inhibition by arachidonyltrifluoromethyl ketone, but iPLA2 is more effectively inhibited by a haloenol lactone suicide substrate than cPLA2. RT-PCR experiments with RNA from purified islet beta-cells and from an alpha-cell-enriched population prepared by fluorescence-activated cell-sorting indicated that cPLA2 mRNA is more abundant in the beta-cell population. Immunoblotting analyses indicate that islets express cPLA2-immunoreactive protein, and that interleukin-1 does not affect its expression. The cPLA2 is thus one of at least three classes of PLA2 enzymes with distinct properties expressed in beta-cells.
用葡萄糖刺激胰岛可诱导磷脂水解和非酯化花生四烯酸的积累,这可能在胰岛素分泌中起信号传导或效应作用。在催化磷脂水解的酶中,胰岛β细胞表达低分子量分泌型磷脂酶A2(PLA2)和一种Ⅵ型、不依赖Ca2+的PLA2(iPLA2)。先前的研究表明,胰岛还表达一种可被抗Ⅳ型胞质Ca2+依赖性PLA2(cPLA2)抗体识别的蛋白质。为了进一步研究胰岛中cPLA2的可能表达,我们用识别cPLA2序列的探针筛选大鼠胰岛cDNA文库,并分离出一个全长cPLA2 cDNA。大鼠胰岛cPLA2推导的氨基酸序列与人和小鼠cPLA2的序列有96%的同一性。用表达载体中的cPLA2 cDNA转染COS-7细胞可诱导Ca2+依赖性PLA2活性和一种可被抗cPLA2抗体识别的蛋白质的表达。对转染的COS-7细胞中表达的重组胰岛cPLA2和iPLA2活性的比较表明,ATP可刺激iPLA2而不是cPLA2。两种活性对花生四烯酰三氟甲基酮的抑制同样敏感,但iPLA2比cPLA2更有效地被卤代烯醇内酯自杀底物抑制。用来自纯化的胰岛β细胞和通过荧光激活细胞分选制备的富含α细胞群体的RNA进行的RT-PCR实验表明,cPLA2 mRNA在β细胞群体中更为丰富。免疫印迹分析表明,胰岛表达cPLA2免疫反应性蛋白,白细胞介素-1不影响其表达。因此,cPLA2是至少三类在β细胞中表达的具有不同特性的PLA2酶之一。