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JZTX-V作用于Kv4.2中的电压传感器以抑制心肌细胞中的I钾通道。

JZTX-V Targets the Voltage Sensor in Kv4.2 to Inhibit I Potassium Channels in Cardiomyocytes.

作者信息

Zhang Yiya, Luo Ji, He Juan, Rong Mingqiang, Zeng Xiongzhi

机构信息

Department of Dermatology, Xiangya Hospital, Central South University, Changsha, China.

Key Laboratory of Organ Injury, Aging and Regenerative Medicine of Hunan Province, Central South University, Changsha, China.

出版信息

Front Pharmacol. 2019 Apr 16;10:357. doi: 10.3389/fphar.2019.00357. eCollection 2019.

Abstract

Kv4 potassium channels are responsible for transient outward K currents in the cardiac action potential (AP). Previous experiments by our group demonstrated that Jingzhaotoxin-V (JZTX-V) selectively inhibits A-type potassium channels. However, the specific effects of JZTX-V on the transient outward (I) current of cardiomyocytes and underlying mechanism of action remain unclear. In the current study, 100 nM JZTX-V effectively inhibited the I current and extended the action potential duration (APD) of neonatal rat ventricular myocytes (NRVM). We further analyzed the effects of JZTX-V on Kv4.2, a cloned channel believed to underlie the I current in rat cardiomyocytes. JZTX-V inhibited the Kv4.2 current with a half-maximal inhibitory concentration (IC) of 13 ± 1.7 nM. To establish the molecular mechanism underlying the inhibitory action of JZTX-V on Kv4.2, we performed alanine scanning mutagenesis of Kv4.2 and JZTX-V and assessed the effects of the mutations on binding activities of the proteins. Interestingly, the Kv4.2 mutations V285A, F289A, and V290A reduced the affinity for JZTX-V while I275A and L277A increased the affinity for JZTX-V. Moreover, mutation of positively charged residues (R20 and K22) of JZTX-V and the hydrophobic patch (formed by W5, M6, and W7) led to a significant reduction in toxin sensitivity, indicating that the hydrophobic patch and electrostatic interactions played key roles in the binding of JZTX-V with Kv4.2. Data from our study have shed light on the specific roles and molecular mechanisms of JZTX-V in the regulation of I potassium channels and supported its utility as a potential novel antiarrhythmic drug.

摘要

Kv4钾通道负责心脏动作电位(AP)中的瞬时外向钾电流。我们团队之前的实验表明,京州毒素-V(JZTX-V)选择性抑制A型钾通道。然而,JZTX-V对心肌细胞瞬时外向(I)电流的具体作用及其潜在作用机制仍不清楚。在本研究中,100 nM的JZTX-V有效抑制了新生大鼠心室肌细胞(NRVM)的I电流并延长了动作电位时程(APD)。我们进一步分析了JZTX-V对Kv4.2的影响,Kv4.2是一种克隆通道,被认为是大鼠心肌细胞I电流的基础。JZTX-V抑制Kv4.2电流的半数最大抑制浓度(IC)为13±1.7 nM。为了确定JZTX-V对Kv4.2抑制作用的分子机制,我们对Kv4.2和JZTX-V进行了丙氨酸扫描诱变,并评估了这些突变对蛋白质结合活性的影响。有趣的是,Kv4.2的V285A、F289A和V290A突变降低了对JZTX-V的亲和力,而I275A和L277A突变增加了对JZTX-V的亲和力。此外,JZTX-V带正电荷残基(R20和K22)以及由W5、M6和W7形成的疏水补丁的突变导致毒素敏感性显著降低,表明疏水补丁和静电相互作用在JZTX-V与Kv4.2的结合中起关键作用。我们的研究数据揭示了JZTX-V在调节I钾通道中的具体作用和分子机制,并支持其作为一种潜在新型抗心律失常药物的效用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0f8/6476928/4087efac103e/fphar-10-00357-g001.jpg

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