Tiffner Adéla, Hopl Valentina, Schober Romana, Sallinger Matthias, Grabmayr Herwig, Höglinger Carmen, Fahrner Marc, Lunz Victoria, Maltan Lena, Frischauf Irene, Krivic Denis, Bhardwaj Rajesh, Schindl Rainer, Hediger Matthias A, Derler Isabella
JKU Life Science Center, Institute of Biophysics, Johannes Kepler University Linz, A-4020 Linz, Austria.
Gottfried Schatz Research Centre, Medical University of Graz, A-8010 Graz, Austria.
Cancers (Basel). 2021 Dec 17;13(24):6357. doi: 10.3390/cancers13246357.
The interplay of SK3, a Ca sensitive K ion channel, with Orai1, a Ca ion channel, has been reported to increase cytosolic Ca levels, thereby triggering proliferation of breast and colon cancer cells, although a molecular mechanism has remained elusive to date. We show in the current study, via heterologous protein expression, that Orai1 can enhance SK3 K currents, in addition to constitutively bound calmodulin (CaM). At low cytosolic Ca levels that decrease SK3 K permeation, co-expressed Orai1 potentiates SK3 currents. This positive feedback mechanism of SK3 and Orai1 is enabled by their close co-localization. Remarkably, we discovered that loss of SK3 channel activity due to overexpressed CaM mutants could be restored by Orai1, likely via its interplay with the SK3-CaM binding site. Mapping for interaction sites within Orai1, we identified that the cytosolic strands and pore residues are critical for a functional communication with SK3. Moreover, STIM1 has a bimodal role in SK3-Orai1 regulation. Under physiological ionic conditions, STIM1 is able to impede SK3-Orai1 interplay by significantly decreasing their co-localization. Forced STIM1-Orai1 activity and associated Ca influx promote SK3 K currents. The dynamic regulation of Orai1 to boost endogenous SK3 channels was also determined in the human prostate cancer cell line LNCaP.
据报道,钙敏感钾离子通道SK3与钙离子通道Orai1之间的相互作用会增加细胞质中的钙水平,从而引发乳腺癌和结肠癌细胞的增殖,尽管迄今为止其分子机制仍不清楚。在本研究中,我们通过异源蛋白表达表明,除了组成性结合的钙调蛋白(CaM)外,Orai1还可以增强SK3钾电流。在降低SK3钾通透性的低细胞质钙水平下,共表达的Orai1会增强SK3电流。SK3和Orai1的这种正反馈机制是由它们紧密的共定位实现的。值得注意的是,我们发现过表达的CaM突变体导致的SK3通道活性丧失可以被Orai1恢复,可能是通过其与SK3-CaM结合位点的相互作用。通过绘制Orai1内的相互作用位点,我们确定胞质链和孔残基对于与SK3的功能通讯至关重要。此外,STIM1在SK3-Orai1调节中具有双重作用。在生理离子条件下,STIM1能够通过显著降低它们的共定位来阻碍SK3-Orai1的相互作用。强制STIM1-Orai1活性和相关的钙内流会促进SK3钾电流。在人前列腺癌细胞系LNCaP中也确定了Orai1对增强内源性SK3通道的动态调节。