Key Laboratory for Physical Electronics and Devices of the Ministry of Education, Xi'an Jiaotong University, Xi'an 710049, China.
School of Electronic Science and Engineering, Xi'an Jiaotong University, Xi'an 710049, China.
Int J Mol Sci. 2023 Dec 28;25(1):429. doi: 10.3390/ijms25010429.
Potassium (K) channels show the highest variability and most frequent alterations in expression in many tumor types, and modulation of K channels may represent a new window for cancer therapy. In previous work, we found that a terahertz (THz) field incident along the -axis with a frequency of 51.87 THz increased the ion flux through K channels. In practice, it is difficult to ensure that the incident electromagnetic (EM) wave is strictly parallel to the direction of channel ion flow. In this paper, we found by changing the direction of the applied electric field that the EM wave of a specific frequency has the largest ion flux when the incident direction is along the ion flow, and the smallest ion flux when the incident direction is perpendicular to the ion flow, and that overall the EM wave of this frequency enhances the ion flow of the K channel. Changes in the direction of the applied field at a specific frequency affect the stability of the φ dihedral angle of the GLY77 residue and alter the ion permeation mechanism in the selectivity filter (SF) region, thus affecting the ion flux. Therefore, this frequency can be used to modulate K fluxes by THz waves to cause rapid apoptosis in potassium-overloaded tumor cells. This approach consequently represents an important tool for the treatment of cancer and is expected to be applied in practical therapy.
钾 (K) 通道在许多肿瘤类型中表现出最高的变异性和最频繁的表达改变,而 K 通道的调节可能代表癌症治疗的一个新窗口。在之前的工作中,我们发现沿 - 轴以 51.87 THz 的频率入射的太赫兹 (THz) 场增加了 K 通道的离子通量。在实践中,很难确保入射的电磁波 (EM) 波严格平行于通道离子流的方向。在本文中,我们通过改变外加电场的方向发现,当入射方向沿离子流时,特定频率的 EM 波具有最大的离子通量,而当入射方向垂直于离子流时,具有最小的离子通量,并且总的来说,该频率的 EM 波增强了 K 通道的离子流。在特定频率下改变外加场的方向会影响 GLY77 残基的 φ 二面角的稳定性,并改变选择性滤器 (SF) 区域中的离子渗透机制,从而影响离子通量。因此,该频率可用于通过太赫兹波调节 K 通量,从而导致钾过载肿瘤细胞的快速凋亡。这种方法因此代表了癌症治疗的重要工具,并有望在实际治疗中得到应用。