Department of Biophysics and Cell Biology, Faculty of Medicine, University of Debrecen, Life Science Building, Egyetem Ter 1, H-4032 Debrecen, Hungary.
MTA-DE Cell Biology and Signaling Research Group, Life Science Building, Egyetem Ter 1, H-4032 Debrecen, Hungary.
Int J Mol Sci. 2022 Sep 11;23(18):10533. doi: 10.3390/ijms231810533.
The hEag1 (Kv10.1) K channel is normally found in the brain, but it is ectopically expressed in tumor cells, including osteosarcoma. Based on the pivotal role of ion channels in osteogenesis, we tested whether pharmacological modulation of hEag1 may affect osteogenic differentiation of osteosarcoma cell lines. Using molecular biology (RT-PCR), electrophysiology (patch-clamp) and pharmacology (astemizole sensitivity, IC = 0.135 μM) we demonstrated that SaOS-2 osteosarcoma cells also express hEag1 channels. SaOS-2 cells also express to KCa1.1 K channels as shown by mRNA expression and paxilline sensitivity of the current. The inhibition of hEag1 (2 μM astemizole) or KCa1.1 (1 mM TEA) alone did not induce Ca deposition in SaOS-2 cultures, however, these inhibitors, at identical concentrations, increased Ca deposition evoked by the classical or pathological (inorganic phosphate, Pi) induction pathway without causing cytotoxicity, as reported by three completer assays (LDH release, MTT assay and SRB protein assay). We observed a similar effect of astemizole on Ca deposition in MG-63 osteosarcoma cultures as well. We propose that the increase in the osteogenic stimuli-induced mineral matrix formation of osteosarcoma cell lines by inhibiting hEag1 may be a useful tool to drive terminal differentiation of osteosarcoma.
hEag1(Kv10.1)钾通道通常存在于大脑中,但在肿瘤细胞中异常表达,包括骨肉瘤。基于离子通道在成骨作用中的关键作用,我们测试了抑制 hEag1 是否会影响骨肉瘤细胞系的成骨分化。通过分子生物学(RT-PCR)、电生理学(膜片钳)和药理学(阿司咪唑敏感性,IC=0.135μM),我们证明 SaOS-2 骨肉瘤细胞也表达 hEag1 通道。SaOS-2 细胞还表达 KCa1.1 钾通道,这可以通过 mRNA 表达和对电流的 paxilline 敏感性来证明。单独抑制 hEag1(2μM 阿司咪唑)或 KCa1.1(1mM TEA)不会诱导 SaOS-2 培养物中的 Ca 沉积,但是,这些抑制剂在相同浓度下,在不引起细胞毒性的情况下,增加了经典或病理(无机磷酸盐,Pi)诱导途径诱发的 Ca 沉积,如三种完整的测定(LDH 释放、MTT 测定和 SRB 蛋白测定)所报道的那样。我们还观察到阿司咪唑对 MG-63 骨肉瘤培养物中 Ca 沉积的类似影响。我们提出,抑制 hEag1 可增加骨肉瘤细胞系在成骨刺激诱导的矿化基质形成,这可能是促进骨肉瘤终末分化的有用工具。