首页> 外文期刊>The Biochemical Journal >TIRF imaging of docking and fusion of single insulin granule motion in primary rat pancreatic beta-cells: different behaviour of granule motion between normal and Goto-Kakizaki diabetic rat beta-cells
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TIRF imaging of docking and fusion of single insulin granule motion in primary rat pancreatic beta-cells: different behaviour of granule motion between normal and Goto-Kakizaki diabetic rat beta-cells

机译:TIRF成像在原发性大鼠胰腺β细胞中单个胰岛素颗粒运动的对接和融合:正常和五岛崎崎糖尿病大鼠β细胞之间颗粒运动的不同行为

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摘要

We imaged and analysed the motion of single insulin secretory granules near the plasma membrane in live pancreatic beta-cells, from normal and diabetic Goto-Kakizaki (GK) rats, using total internal reflection fluorescence microscopy (TIRFM). In normal rat primary beta-cells, the granules that were fusing during the first phase originate from previously docked granules, and those during the second phase originate from 'newcomers'. In diabetic GK rat beta-cells, the number of fusion events from previously docked granules were markedly reduced, and, in contrast, the fusion from newcomers was still preserved. The dynamic change in the number of docked insulin granules showed that, in GK rat beta-cells, the total number of docked insulin granules was markedly decreased to 35 % of the initial number after glucose stimulation. Immunohistochemistry with anti-insulin antibody observed by TIRFM showed that GK rat beta-cells had a marked decline of endogenous insulin granules docked to the plasma membrane. Thus our results indicate that the decreased number of docked insulin granules accounts for the impaired insulin release during the first phase of insulin release in diabetic GK rat beta-cells.
机译:我们使用全内反射荧光显微镜(TIRFM)对来自正常和糖尿病性Goto-Kakizaki(GK)大鼠的活胰腺β细胞中质膜附近的单个胰岛素分泌颗粒的运动进行了成像和分析。在正常大鼠的初级β细胞中,在第一阶段融合的颗粒来自先前对接的颗粒,而在第二阶段融合的颗粒则来自“新来者”。在糖尿病GK大鼠β细胞中,先前停靠的颗粒的融合事件数量显着减少,相反,新来者的融合仍然得以保留。停靠的胰岛素颗粒数目的动态变化表明,在GK大鼠β细胞中,葡萄糖刺激后,停靠的胰岛素颗粒总数显着减少至初始数目的35%。通过TIRFM观察到的抗胰岛素抗体的免疫组织化学表明,GK大鼠β细胞的内源性胰岛素颗粒与质膜的结合明显减少。因此,我们的结果表明,停泊的胰岛素颗粒数量减少是糖尿病GK大鼠β细胞胰岛素释放第一阶段胰岛素释放受损的原因。

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