Department of Physiology and Membrane Biology, University of California, Davis, California.
Molecular Foundry, Lawrence Berkeley National Laboratory, Berkeley, California.
Biophys J. 2022 Apr 19;121(8):1395-1416. doi: 10.1016/j.bpj.2022.03.020. Epub 2022 Mar 18.
Kv2 voltage-gated potassium channels are modulated by amphoterin-induced gene and open reading frame (AMIGO) neuronal adhesion proteins. Here, we identify steps in the conductance activation pathway of Kv2.1 channels that are modulated by AMIGO1 using voltage-clamp recordings and spectroscopy of heterologously expressed Kv2.1 and AMIGO1 in mammalian cell lines. AMIGO1 speeds early voltage-sensor movements and shifts the gating charge-voltage relationship to more negative voltages. The gating charge-voltage relationship indicates that AMIGO1 exerts a larger energetic effect on voltage-sensor movement than is apparent from the midpoint of the conductance-voltage relationship. When voltage sensors are detained at rest by voltage-sensor toxins, AMIGO1 has a greater impact on the conductance-voltage relationship. Fluorescence measurements from voltage-sensor toxins bound to Kv2.1 indicate that with AMIGO1, the voltage sensors enter their earliest resting conformation, yet this conformation is less stable upon voltage stimulation. We conclude that AMIGO1 modulates the Kv2.1 conductance activation pathway by destabilizing the earliest resting state of the voltage sensors.
Kv2 电压门控钾通道受 amphoterin 诱导基因和开放阅读框 (AMIGO) 神经元黏附蛋白调节。在此,我们使用电压钳记录和异源表达的 Kv2.1 和 AMIGO1 在哺乳动物细胞系中的光谱学,鉴定 AMIGO1 调节 Kv2.1 通道电导激活途径的步骤。AMIGO1 加速早期电压传感器运动,并将门控电荷-电压关系转移到更负的电压。门控电荷-电压关系表明,与电导-电压关系的中点相比,AMIGO1 对电压传感器运动的能量影响更大。当电压传感器被电压传感器毒素在静止时扣留时,AMIGO1 对电导-电压关系的影响更大。与 Kv2.1 结合的电压传感器毒素的荧光测量表明,有了 AMIGO1,电压传感器进入其最早的静止构象,但在电压刺激时这种构象不太稳定。我们得出结论,AMIGO1 通过使电压传感器的最早静止状态不稳定来调节 Kv2.1 电导激活途径。