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莫能菌素对分离的大鼠胰岛中胰岛素原向胰岛素转化及新合成胰岛素分泌的影响。

Effects of monensin on conversion of proinsulin to insulin and secretion of newly synthesized insulin in isolated rat islets.

作者信息

Gold G, Pou J, Nowlain R M, Grodsky G M

出版信息

Diabetes. 1984 Nov;33(11):1019-24. doi: 10.2337/diab.33.11.1019.

Abstract

When isolated rat islets were incubated with 10(-10) - 10(-6) M monensin, a sodium and proton ionophore, glucose-stimulated insulin release was inhibited in a concentration- and time-dependent manner. After removal of monensin, inhibition of insulin secretion persisted during stimulation with a variety of secretagogues, including 5 mM glucose plus 15 mM arginine, 20 mM glucose, and 20 mM glucose plus 1 mM 3-isobutyl-1-methylxanthine. Within the same low range of monensin concentrations, proteolytic conversion of newly synthesized proinsulin to insulin was also blocked. At each concentration, prohormone-to-hormone conversion was inhibited to almost the same extent as inhibition of insulin secretion. Therefore, both processes may have equal or common dependency on a subcellular ionic gradient. Although monensin decreased total insulin secretion, the glucose-regulated marking process was unaffected. Regardless of the monensin concentration or the overall rate of insulin secretion, the percentage of secreted newly synthesized versus older insulin remained the same, and the threefold differences in the fractional secretory rates of newly synthesized versus total insulin also remained the same. Thus, rather than specifically blocking protein traffic through the Golgi apparatus of the beta cell, monensin probably first inhibited insulin secretion by disrupting proton gradients in secretory vesicles and, thereby, also inhibited other processes occurring within this organelle.

摘要

当将分离的大鼠胰岛与10⁻¹⁰ - 10⁻⁶ M莫能菌素(一种钠和质子离子载体)一起孵育时,葡萄糖刺激的胰岛素释放以浓度和时间依赖性方式受到抑制。去除莫能菌素后,在用多种促分泌剂刺激期间,胰岛素分泌的抑制持续存在,这些促分泌剂包括5 mM葡萄糖加15 mM精氨酸、20 mM葡萄糖以及20 mM葡萄糖加1 mM 3 - 异丁基 - 1 - 甲基黄嘌呤。在相同的低莫能菌素浓度范围内,新合成的胰岛素原向胰岛素的蛋白水解转化也被阻断。在每个浓度下,激素原向激素的转化受到的抑制程度几乎与胰岛素分泌的抑制程度相同。因此,这两个过程可能对亚细胞离子梯度具有同等或共同的依赖性。尽管莫能菌素降低了总的胰岛素分泌,但葡萄糖调节的标记过程未受影响。无论莫能菌素浓度或胰岛素分泌的总体速率如何,新合成的胰岛素与较老胰岛素的分泌百分比保持不变,新合成胰岛素与总胰岛素的分泌分数率的三倍差异也保持不变。因此,莫能菌素可能不是通过特异性阻断蛋白质通过β细胞高尔基体的运输,而是可能首先通过破坏分泌小泡中的质子梯度来抑制胰岛素分泌,从而也抑制了该细胞器内发生的其他过程。

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