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首页> 外文期刊>Diabetologia >Deploying insulin granule–granule fusion to rescue deficient insulin secretion in diabetes
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Deploying insulin granule–granule fusion to rescue deficient insulin secretion in diabetes

机译:部署胰岛素颗粒-颗粒融合剂以挽救糖尿病患者胰岛素分泌不足

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According to our current understanding of insulin exocytosis, insulin granules dock on the plasma membrane, undergo priming and then wait for calcium-triggered fusion. In this issue of Diabetologia, Hoppa et al (doi 10.1007/s00125-011-2400-5) report that cholinergic stimulation induces granule–granule, or multivesicular, fusion to effect more efficient insulin release. Other exocytotic modes of insulin secretion, particularly those induced by incretin stimulation, include orderly granule fusion with granules already fused with the plasma membrane, called sequential exocytosis, and recruitment of newcomer granules to fuse with plasma membrane with minimal time for docking and priming. The molecular machineries that mediate these distinct exocytotic modes of granule–granule fusion and newcomer granules remain undefined, but they could be therapeutically targeted to couple to cholinergic and incretin stimulation to rescue the deficient glucose-stimulated insulin secretion in diabetes.
机译:根据我们目前对胰岛素胞吐作用的理解,胰岛素颗粒停靠在质膜上,进行引发处理,然后等待钙触发的融合。 Hoppa等人(doi 10.1007 / s00125-011-2400-5)在本期《糖尿病》杂志中报道,胆碱能刺激可诱导颗粒-颗粒或多囊泡融合,从而更有效地释放胰岛素。胰岛素分泌的其他胞吐模式,特别是由肠降血糖素刺激诱导的分泌,包括与已经与质膜融合的颗粒有序地融合,称为顺序胞吐作用,募集新来的颗粒以与质膜融合的时间最短,以用于对接和引发。介导这些独特的颗粒-颗粒融合和新来颗粒的胞吐模式的分子机制仍然不确定,但是它们可以在治疗上靶向与胆碱能和肠降血糖素刺激相结合,以挽救糖尿病中葡萄糖刺激的胰岛素分泌不足。

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