Quesada Ivan, Rovira Juan M, Martin Franz, Roche Enrique, Nadal Angel, Soria Bernat
Institute of Bioengineering, Miguel Hernández University, San Juan Campus, 03550 Alicante, Spain.
Proc Natl Acad Sci U S A. 2002 Jul 9;99(14):9544-9. doi: 10.1073/pnas.142039299. Epub 2002 Jun 27.
Glucose, the principal regulator of endocrine pancreas, has several effects on pancreatic beta cells, including the regulation of insulin release, cell proliferation, apoptosis, differentiation, and gene expression. Although the sequence of events linking glycemia with insulin release is well described, the mechanism whereby glucose regulates nuclear function is still largely unknown. Here, we have shown that an ATP-sensitive K(+) channel (K(ATP)) with similar properties to that found on the plasma membrane is also present on the nuclear envelope of pancreatic beta cells. In isolated nuclei, blockade of the K(ATP) channel with tolbutamide or diadenosine polyphosphates triggers nuclear Ca(2+) transients and induces phosphorylation of the transcription factor cAMP response element binding protein. In whole cells, fluorescence in situ hybridization revealed that these Ca(2+) signals may trigger c-myc expression. These results demonstrate a functional K(ATP) channel in nuclei linking glucose metabolism, nuclear Ca(2+) signals, and nuclear function.
葡萄糖作为内分泌胰腺的主要调节因子,对胰腺β细胞有多种作用,包括调节胰岛素释放、细胞增殖、凋亡、分化和基因表达。尽管血糖与胰岛素释放之间的一系列事件已得到充分描述,但葡萄糖调节核功能的机制仍大多未知。在此,我们已表明,胰腺β细胞核膜上也存在一种与质膜上发现的具有相似特性的ATP敏感性钾通道(KATP)。在分离的细胞核中,用甲苯磺丁脲或多磷酸二腺苷阻断KATP通道会引发核Ca2+瞬变,并诱导转录因子cAMP反应元件结合蛋白的磷酸化。在完整细胞中,荧光原位杂交显示这些Ca2+信号可能触发c-myc表达。这些结果证明了细胞核中存在一种功能性KATP通道,它将葡萄糖代谢、核Ca2+信号和核功能联系起来。