Rubil Sandra, Rössler Oliver G, Thiel Gerald
Department of Medical Biochemistry and Molecular Biology, Medical Faculty, Saarland University, Homburg, Germany.
Br J Pharmacol. 2016 Jan;173(2):305-18. doi: 10.1111/bph.13372. Epub 2015 Dec 19.
The rise in intracellular Ca(2+) stimulates the expression of the transcription factor c-Fos. Depending on the mode of entry of Ca(2+) into the cytosol, distinct signal transducers and transcription factors are required. Here, we have analysed the signalling pathway connecting a Ca(2+) influx via activation of transient receptor potential melastatin-3 (TRPM3) channels with enhanced c-Fos expression.
Transcription of c-Fos promoter/reporter genes that were integrated into the chromatin via lentiviral gene transfer was analysed in HEK293 cells overexpressing TRPM3. The transcriptional activation potential of c-Fos was measured using a GAL4-c-Fos fusion protein.
The signalling pathway connecting TRPM3 stimulation with enhanced c-Fos expression requires the activation of MAP kinases. On the transcriptional level, three Ca(2+) -responsive elements, the cAMP-response element and the binding sites for the serum response factor (SRF) and AP-1, are essential for the TRPM3-mediated stimulation of the c-Fos promoter. Ternary complex factors are additionally involved in connecting TRPM3 stimulation with the up-regulation of c-Fos expression. Stimulation of TRPM3 channels also increases the transcriptional activation potential of c-Fos.
Signalling molecules involved in connecting TRPM3 with the c-Fos gene are MAP kinases and the transcription factors CREB, SRF, AP-1 and ternary complex factors. As c-Fos constitutes, together with other basic region leucine zipper transcription factors, the AP-1 transcription factor complex, the results of this study explain TRPM3-induced activation of AP-1 and connects TRPM3 with the biological functions regulated by AP-1.
细胞内钙离子浓度升高会刺激转录因子c-Fos的表达。根据钙离子进入细胞质的方式不同,需要不同的信号转导分子和转录因子。在此,我们分析了通过激活瞬时受体电位褪黑素3(TRPM3)通道引起的钙离子内流与增强的c-Fos表达之间的信号通路。
在过表达TRPM3的HEK293细胞中,分析通过慢病毒基因转移整合到染色质中的c-Fos启动子/报告基因的转录情况。使用GAL4-c-Fos融合蛋白测量c-Fos的转录激活潜能。
连接TRPM3刺激与增强的c-Fos表达的信号通路需要丝裂原活化蛋白激酶(MAP激酶)的激活。在转录水平上,三个钙离子反应元件、环磷酸腺苷反应元件以及血清反应因子(SRF)和活化蛋白-1(AP-1)的结合位点对于TRPM3介导的c-Fos启动子刺激至关重要。三元复合因子也参与连接TRPM3刺激与c-Fos表达的上调。刺激TRPM3通道还会增加c-Fos的转录激活潜能。
参与连接TRPM3与c-Fos基因的信号分子是MAP激酶以及转录因子CREB、SRF、AP-1和三元复合因子。由于c-Fos与其他碱性区域亮氨酸拉链转录因子共同构成AP-1转录因子复合物,本研究结果解释了TRPM3诱导的AP-1激活,并将TRPM3与由AP-1调节的生物学功能联系起来。