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胰岛酸性葡聚糖-1,4-α-葡萄糖苷酶:营养物质刺激胰岛素分泌中的一种假定关键酶。

Islet acid glucan-1,4-alpha-glucosidase: a putative key enzyme in nutrient-stimulated insulin secretion.

作者信息

Lundquist I, Panagiotidis G, Salehi A

机构信息

Department of Pharmacology, University of Lund, S-223 62 Lund, Sweden.

出版信息

Endocrinology. 1996 Apr;137(4):1219-25. doi: 10.1210/endo.137.4.8625892.

Abstract

Little attention has been paid to a possible relationship between lysosomal function and stimulation of secretory processes in endocrine cells. The last few years it has become increasingly evident that the secretion of insulin from the pancreatic beta-cell is the result of a very complex cascade of events, the details of which are far from elucidated and indeed may include the participation of the lysosomal system. We report here, with a combined in vitro and in vivo approach, that selective inhibition of islet lysosomal glycogenolytic acid glucan-1,4-alpha-glucosidase activity by the long-acting 1-deoxynojirimycin derivative emiglitate induces a profound suppression of nutrient-induced insulin release. In islet homogenate emiglitate strongly and dose-dependently inhibited the activity of acid glucan-1,4-alpha-glucosidase (EC50 approximately 10(-6) M) without affecting other classical lysosomal enzyme activities. The emiglitate-induced inhibition curve for glucose-stimulated insulin secretion from isolated islets was remarkably similar to the inhibition curve for acid glucan-1,4-alpha-glucosidase. Moreover, insulin release stimulated by the nonglucose nutrient secretagogues, leucine, and alpha-ketoisocaproic acid (KIC) was totally suppressed by emiglitate. In contrast, receptor activated insulin secretion induced by the insulinotropic hormone cholecystokinin (CCK-8) was unaffected by the drug. Further, parenteral pretreatment of mice with emiglitate markedly suppressed the insulin secretory response to an iv injection of glucose or KIC, whereas the response to an iv injection of CCK-8 was unaffected. In accordance with this, islets isolated from emiglitate-treated mice showed a reduced activity of acid glucan-1,4-alpha-glucosidase and, moreover, such islets incubated in vitro, secreted less insulin in response to glucose than did control islets. Finally, pretreatment of mice with purified fungal acid glucan-1,4-alpha-glucosidase, enzyme replacement, brought about a markedly increased insulin secretory response after an iv injection of KIC, whereas the insulin response after CCK-8 injection was unaffected. Taken together with previous observations, the present data strongly suggest that islet lysosomal acid alpha-glucosidehydrolases are involved in the multifactorial process of nutrient-induced insulin secretion. The existence of hitherto unresolved and complex interactions between different beta-cell organelles in the insulin secretory processes should be thoroughly reevaluated.

摘要

溶酶体功能与内分泌细胞分泌过程刺激之间可能存在的关系一直未受到太多关注。在过去几年中,越来越明显的是,胰腺β细胞分泌胰岛素是一系列非常复杂事件的结果,其细节远未阐明,实际上可能包括溶酶体系统的参与。我们在此报告,通过体外和体内相结合的方法,长效1-脱氧野尻霉素衍生物依米格列抑制胰岛溶酶体糖原分解性酸性葡聚糖-1,4-α-葡糖苷酶活性,可显著抑制营养物质诱导的胰岛素释放。在胰岛匀浆中,依米格列强烈且剂量依赖性地抑制酸性葡聚糖-1,4-α-葡糖苷酶的活性(半数有效浓度约为10^(-6) M),而不影响其他经典溶酶体酶的活性。依米格列诱导的对分离胰岛葡萄糖刺激的胰岛素分泌抑制曲线与酸性葡聚糖-1,4-α-葡糖苷酶的抑制曲线非常相似。此外,非葡萄糖营养促分泌剂亮氨酸和α-酮异己酸(KIC)刺激的胰岛素释放被依米格列完全抑制。相反,促胰岛素激素胆囊收缩素(CCK-8)诱导的受体激活胰岛素分泌不受该药物影响。此外,用依米格列对小鼠进行肠胃外预处理可显著抑制静脉注射葡萄糖或KIC后的胰岛素分泌反应,而对静脉注射CCK-8的反应不受影响。与此一致的是,从经依米格列处理的小鼠分离的胰岛显示酸性葡聚糖-1,4-α-葡糖苷酶活性降低,而且,与对照胰岛相比,这种体外培养的胰岛对葡萄糖刺激分泌的胰岛素较少。最后,用纯化的真菌酸性葡聚糖-1,4-α-葡糖苷酶对小鼠进行预处理(酶替代),静脉注射KIC后胰岛素分泌反应显著增加,而注射CCK-8后的胰岛素反应不受影响。结合先前的观察结果,目前的数据强烈表明胰岛溶酶体酸性α-葡糖苷酶参与营养物质诱导胰岛素分泌的多因素过程。胰岛素分泌过程中不同β细胞细胞器之间迄今未解决的复杂相互作用的存在应得到彻底重新评估。

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