首页> 外文期刊>Biochimica et Biophysica Acta. Molecular and cell biology of Lipids >Electrospray ionization mass spectrometric analyses of phospholipids from INS-1 insulinoma cells: comparison to pancreatic islets and effects of fatty acid supplementation on phospholipid composition and insulin secretion
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Electrospray ionization mass spectrometric analyses of phospholipids from INS-1 insulinoma cells: comparison to pancreatic islets and effects of fatty acid supplementation on phospholipid composition and insulin secretion

机译:INS-1胰岛素瘤细胞中磷脂的电喷雾电离质谱分析:与胰岛的比较以及脂肪酸的补充对磷脂成分和胰岛素分泌的影响

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Insulin secretion by pancreatic islet β-cells is impaired in diabetes mellitus, and normal β-cells are enriched in phospholipids with arachidonate as sn-2 substituent. Such molecules may play structural roles in exocytotic membrane fusion or serve as substrates for phospholipase activated by insulin secretagogues. INS-1 insulinoma cells respond to secretagogues and permit the study of effects of culture with free fatty acids on phospholipid composition and secretion. INS-1 cell glycerophosphocholine (GPC) and glycerophosphoethanolamine (GPE) lipids are demonstrated here by electrospray ionization mass spectrometry to contain a lower fraction of molecules with arachidonate and a higher fraction with oleate as sn-2 substituent than native islets. Palmitic acid supplementation induces little change in these INS-1 cell lipids, but supplementation with linoleate or arachidonate induces a large rise in the fraction of INS-1 cell GPC species with polyunsaturated sn-2 substituents and a fall in oleate-containing species to yield a GPC profile similar to native islets. The fraction of GPE lipids comprised of plasmenylethanolamine species with polyunsaturated sn-2 substituents in early-passage INS-1 cells is similar to that of islets, but declines on serial passage. Such molecules might participate in exocytotic membrane fusion, and late-passage INS-1 cells have reduced insulin secretory responses. Arachidonate supplementation induces a rise in the fraction of INS-1 cell GPE lipids with polyunsaturated sn-2 substituents and partially restores responses to insulin secretagogues by late-passage INS-1 cells, but does not further amplify secretion by early-passage cells. Effects of extracellular free fatty acids on β-cell phospholipid composition and secretory responses could be involved in changes in β-cell function during the period of hyper-free fatty acidemia that precedes diabetes mellitus.
机译:糖尿病胰岛β细胞分泌的胰岛素受到损害,正常β细胞富含花生四烯酸作为sn-2取代基的磷脂。此类分子可在胞吐膜融合中发挥结构作用,或充当胰岛素促分泌剂激活的磷脂酶的底物。 INS-1胰岛素瘤细胞对促分泌素有反应,并允许研究游离脂肪酸培养对磷脂成分和分泌的影响。 INS-1细胞的甘油磷酸胆碱(GPC)和甘油磷酸乙醇胺(GPE)脂质在这里通过电喷雾电离质谱法证实,与天然胰岛相比,花生四烯酸的分子含量较低,而sn-2取代的油酸酯含量较高。棕榈酸的添加几乎不会引起这些INS-1细胞脂质的变化,但添加亚油酸酯或花生四烯酸会导致具有多不饱和sn-2取代基的INS-1细胞GPC种类的比例大幅增加,而含油酸酯的种类下降,从而产生与本地胰岛类似的GPC配置文件。在早期传代的INS-1细胞中,由具有多不饱和sn-2取代基的纤溶体乙醇胺类物质组成的GPE脂质部分与胰岛相似,但在连续传代时下降。这样的分子可能参与胞吐膜融合,并且晚期传代的INS-1细胞胰岛素分泌反应减少。花生四烯酸的添加诱导具有多不饱和sn-2取代基的INS-1细胞GPE脂质的比例增加,并部分地恢复了晚期传代INS-1细胞对胰岛素促分泌剂的反应,但并未进一步放大早期传代细胞的分泌。在糖尿病之前的高游离脂肪酸血症期间,细胞外游离脂肪酸对β细胞磷脂组成和分泌反应的影响可能与β细胞功能的变化有关。

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