Laboratory of Biological Engineering, College of Pharmacy, Hunan University of Chinese Medicine, Changsha, Hunan 410208, P. R. China.
Key Laboratory of Protein Chemistry and Developmental Biology of Ministry of Education, College of Life Sciences, Hunan Normal University, Changsha, Hunan 410081, P. R. China.
Channels (Austin). 2022 Dec;16(1):72-83. doi: 10.1080/19336950.2022.2053420.
JZTX-V is a toxin isolated from the venom of the Chinese spider . Previous studies had shown that JZTX-V could inhibit the transient outward potassium current of Kv4.2 and Kv4.3 expressed in oocytes but had no effects on Kv1.2-1.4. However, the underlying action mechanism of JZTX-V on Kv4.3 remains unclear. In our study, JZTX-V could inhibit not only transient outward potassium currents evoked in small-sized DRG neurons but also Kv4.3-encoded currents expressed in HEK293T cells in the concentration and voltage dependence. The half maximal inhibitory concentration of JZTX-V on Kv4.3 was 9.6 ± 1.2 nM. In addition, the time course for JZTX-V inhibition and release of inhibition after washout were 15.8 ± 1.54 s and 58.8 ± 4.35 s. Electrophysiological assays indicated that 25 nM JZTX-V could shift significantly the voltage dependence of steady-state activation and steady-state inactivation to depolarization. Meanwhile, 25 nM JZTX-V decreased markedly the time constant of activation and inactivation but had no effect on the time constant of recovery from inactivation. To study the molecular determinants of Kv4.3, we performed alanine scanning on a conserved motif of Kv4.3 and assayed the affinity between mutants and JZTX-V. The results not only showed that I273, L275, V283, and F287 were molecular determinants in the conserved motif of Kv4.3 for interacting with JZTX-V but also speculated the underlying action mechanism that the hydrophobic interaction and steric effects played key roles in the binding of JZTX-V with Kv4.3. In summary, our studies have laid a scientific theoretical foundation for further research on the interaction mechanism between JZTX-V and Kv4.3.
JZTX-V 是从中国蜘蛛毒液中分离得到的一种毒素。先前的研究表明,JZTX-V 可以抑制在卵母细胞中表达的 Kv4.2 和 Kv4.3 的瞬时外向钾电流,但对 Kv1.2-1.4 没有影响。然而,JZTX-V 对 Kv4.3 的作用机制尚不清楚。在我们的研究中,JZTX-V 不仅可以抑制小型 DRG 神经元中诱发的瞬时外向钾电流,还可以抑制在 HEK293T 细胞中表达的 Kv4.3 编码电流,具有浓度和电压依赖性。JZTX-V 对 Kv4.3 的半数最大抑制浓度为 9.6±1.2nM。此外,JZTX-V 抑制的时间过程和洗脱后抑制的释放时间分别为 15.8±1.54s 和 58.8±4.35s。电生理测定表明,25nM JZTX-V 可显著改变稳态激活和稳态失活的电压依赖性向去极化方向偏移。同时,25nM JZTX-V 明显降低了激活和失活的时间常数,但对失活后恢复的时间常数没有影响。为了研究 Kv4.3 的分子决定因素,我们对 Kv4.3 的保守基序进行了丙氨酸扫描,并检测了突变体与 JZTX-V 之间的亲和力。结果不仅表明 I273、L275、V283 和 F287 是 Kv4.3 保守基序中与 JZTX-V 相互作用的分子决定因素,还推测了疏水相互作用和空间位阻在 JZTX-V 与 Kv4.3 结合中起关键作用的潜在作用机制。总之,我们的研究为进一步研究 JZTX-V 与 Kv4.3 之间的相互作用机制奠定了科学理论基础。