Department of Cell Biology, Radboud University Nijmegen, AJ Nijmegen, The Netherlands.
Cell Calcium. 2012 Jan;51(1):12-21. doi: 10.1016/j.ceca.2011.10.001. Epub 2011 Nov 1.
Normal rat kidney (NRK) fibroblasts exhibit growth-dependent changes in electrophysiological properties and intracellular calcium dynamics. The transition from a quiescent state to a density-arrested state results in altered calcium entry characteristics. This coincides with modulation of the expression of the genes encoding the calcium channels Trpc1, Trpc6 and Orai1, and of the intracellular calcium sensor Stim1. In the present study we have used gene selective short hairpin (sh) RNAs against these various genes to investigate their role in (a) capacitative store-operated calcium entry (SOCE); (b) non-capacitative OAG-induced receptor-operated calcium entry (ROCE); and (c) prostaglandin F(2α) (PGF(2α))-induced Ca(2+)-oscillations in NRK fibroblasts. Intracellular calcium measurements revealed that knockdown of the genes encoding Trpc1, Orai1 and Stim1 each caused a significant reduction of SOCE in NRK cells, whereas knockdown of the gene encoding Trpc6 reduced only the OAG-induced ROCE. Furthermore, our data show that knockdown of the genes encoding Trpc1, Orai1 and Stim1, but not Trpc6, substantially reduced the frequency (up to 60%) of PGF(2α)-induced Ca(2+) oscillations in NRK cells. These results indicate that in NRK cells distinct calcium channels control the processes of SOCE, ROCE and PGF(2α)-induced Ca(2+) oscillations.
正常大鼠肾(NRK)成纤维细胞在电生理特性和细胞内钙动力学方面表现出依赖于生长的变化。从静止状态到密度抑制状态的转变导致钙内流特性的改变。这与编码钙通道 Trpc1、Trpc6 和 Orai1 的基因以及细胞内钙传感器 Stim1 的表达的调节相一致。在本研究中,我们使用了针对这些不同基因的基因选择性短发夹(sh)RNA,以研究它们在以下方面的作用:(a)电容存储操作的钙内流(SOCE);(b)非电容 OAG 诱导的受体操作的钙内流(ROCE);和(c)PGF(2α)(PGF(2α))诱导的 NRK 成纤维细胞中的钙振荡。细胞内钙测量显示,编码 Trpc1、Orai1 和 Stim1 的基因的敲低均导致 NRK 细胞中的 SOCE 显著减少,而编码 Trpc6 的基因的敲低仅减少了 OAG 诱导的 ROCE。此外,我们的数据表明,编码 Trpc1、Orai1 和 Stim1 的基因的敲低,但不是编码 Trpc6 的基因的敲低,大大降低了 PGF(2α)诱导的 NRK 细胞中的钙振荡的频率(高达 60%)。这些结果表明,在 NRK 细胞中,不同的钙通道控制 SOCE、ROCE 和 PGF(2α)诱导的钙振荡的过程。