Rorsman P, Arkhammar P, Bokvist K, Hellerström C, Nilsson T, Welsh M, Welsh N, Berggren P O
Department of Medical Physics, Gothenburg University, Sweden.
Proc Natl Acad Sci U S A. 1989 Jun;86(12):4505-9. doi: 10.1073/pnas.86.12.4505.
Fetal pancreatic beta cells demonstrate a deficient insulin release in response to glucose, but the underlying mechanism at the cellular level is unknown. By using beta cells from 21-day fetal rats we made an attempt to clarify the mechanism(s) behind this reduced glucose response. In addition to measuring insulin release, glucose metabolism, and cellular ATP content, ATP-regulated K+ channels (G channels) and voltage-activated Ca2+ currents were investigated with the patch-clamp technique. It was thus demonstrated that the ATP-regulated K+ channels in fetal beta cells were not sensitive to glucose but otherwise had similar characteristics as those of adult beta cells. Also, the characteristics of the voltage-activated Ca2+ currents were similar in adult and fetal beta cells. However, as judged from measurements of both glucose oxidation and glucose utilization, glucose metabolism was impaired in fetal beta cells. In addition, there was no increase in the ATP content, even when the cells were stimulated for 30 min. It is therefore concluded that the attenuated glucose-induced insulin release in fetal pancreatic beta cells is due to an immature glucose metabolism resulting in impaired regulation of the ATP-sensitive K+ channels. These findings may be relevant to the understanding of the deficient stimulus-secretion coupling associated with non-insulin-dependent diabetes.
胎儿胰腺β细胞对葡萄糖的胰岛素释放反应不足,但其细胞水平的潜在机制尚不清楚。通过使用21天龄胎鼠的β细胞,我们试图阐明这种葡萄糖反应降低背后的机制。除了测量胰岛素释放、葡萄糖代谢和细胞ATP含量外,还使用膜片钳技术研究了ATP调节的钾通道(G通道)和电压激活的钙电流。结果表明,胎儿β细胞中的ATP调节钾通道对葡萄糖不敏感,但在其他方面具有与成年β细胞相似的特征。此外,成年和胎儿β细胞中电压激活钙电流的特征相似。然而,从葡萄糖氧化和葡萄糖利用的测量结果判断,胎儿β细胞中的葡萄糖代谢受损。此外,即使细胞被刺激30分钟,ATP含量也没有增加。因此得出结论,胎儿胰腺β细胞中葡萄糖诱导的胰岛素释放减弱是由于葡萄糖代谢不成熟,导致对ATP敏感钾通道的调节受损。这些发现可能有助于理解与非胰岛素依赖型糖尿病相关的刺激-分泌偶联缺陷。