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Alterations of the Ca2+ signaling pathway in pancreatic beta-cells isolated from db/db mice

机译:从db / db小鼠分离的胰腺β细胞中Ca2 +信号通路的变化

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Upon glucose elevation, pancreatic beta-cells secrete insulin in a Ca2+-dependent manner. In diabetic animal models, different aspects of the calcium signaling pathway in beta-cells are altered, but there is no consensus regarding their relative contributions to the development of beta-cell dysfunction. In this study, we compared the increase in cytosolic Ca2+ ([Ca2+]i) via Ca2+ influx, Ca2+ mobilization from endoplasmic reticulum (ER) calcium stores, and the removal of Ca2+ via multiple mechanisms in beta-cells from both diabetic db/db mice and non-diabetic C57BL/6J mice. We refined our previous quantitative model to describe the slow [Ca2+]i recovery after depolarization in beta-cells from db/db mice. According to the model, the activity levels of the two subtypes of the sarco-endoplasmic reticulum Ca2+-ATPase (SERCA) pump, SERCA2 and SERCA3, were severely down-regulated in diabetic cells to 65% and 0% of the levels in normal cells. This down-regulation may lead to a reduction in the Ca2+ concentration in the ER, a compensatory up-regulation of the plasma membrane Na+/Ca2+ exchanger (NCX) and a reduction in depolarization-evoked Ca2+ influx. As a result, the patterns of glucose-stimulated calcium oscillations were significantly different in db/db diabetic beta-cells compared with normal cells. Overall, quantifying the changes in the calcium signaling pathway in db/db diabetic beta-cells will aid in the development of a disease model that could provide insight into the adaptive transformations of beta-cell function during diabetes development.
机译:葡萄糖升高后,胰腺β细胞以Ca 2 + 依赖性方式分泌胰岛素。在糖尿病动物模型中,β细胞中钙信号通路的不同方面都发生了变化,但是关于它们对β细胞功能障碍发展的相对贡献尚无共识。在这项研究中,我们比较了通过Ca 2+ <引起的胞质Ca 2 + ([Ca 2 + ] i )的增加/ sup>流入,从内质网(ER)钙存储中动员Ca 2 + ,并通过多种机制从两个糖尿病数据库的β细胞中去除Ca 2 + / db小鼠和非糖尿病C57BL / 6J小鼠。我们改进了先前的定量模型,以描述db / db小鼠的β细胞去极化后[Ca 2 + ] i 的缓慢恢复。根据该模型,在糖尿病细胞中,肌浆膜内质网Ca 2 + -ATPase(SERCA)的两个亚型泵SERCA2和SERCA3的活性水平被严重下调至65%和正常细胞水平的0%。这种下调可能导致ER中Ca 2 + 的浓度降低,质膜Na + / Ca 2的补偿性上调+ 交换剂(NCX)和减少去极化引起的Ca 2 + 内流。结果,与正常细胞相比,db / db糖尿病β细胞中葡萄糖刺激的钙振荡的模式显着不同。总体而言,量化db / db糖尿病β细胞中钙信号通路的变化将有助于疾病模型的开发,该模型可以提供对糖尿病发展过程中β细胞功能的适应性转化的见识。

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