Department of Neuroscience, Center for Neuroscience, University of Pittsburgh, Pittsburgh, PA 15260, United States.
Department of Chemistry, University of Pittsburgh, Pittsburgh, PA 15260, United States.
Neuropharmacology. 2018 Mar 15;131:176-189. doi: 10.1016/j.neuropharm.2017.12.022. Epub 2017 Dec 12.
Voltage-gated calcium channels (VGCCs) are critical regulators of many cellular functions, including the activity-dependent release of chemical neurotransmitter from nerve terminals. At nerve terminals, the Cav2 family of VGCCs are closely positioned with neurotransmitter-containing synaptic vesicles. The relationship between calcium ions and transmitter release is such that even subtle changes in calcium flux through VGCCs have a strong influence on the magnitude of transmitter released. Therefore, modulators of the calcium influx at nerve terminals have the potential to strongly affect transmitter release at synapses. We have previously developed novel Cav2-selective VGCC gating modifiers (notably GV-58) that slow the deactivation of VGCC current, increasing total calcium ion flux. Here, we describe ten new gating modifiers based on the GV-58 structure that extend our understanding of the structure-activity relationship for this class of molecules and extend the range of modulation of channel activities. In particular, we show that one of these new compounds (MF-06) was more efficacious than GV-58, another (KK-75) acts more quickly on VGCCs than GV-58, and a third (KK-20) has a mix of increased speed and efficacy. A subset of these new VGCC agonist gating modifiers can increase transmitter release during action potentials at neuromuscular synapses, and as such, show potential as therapeutics for diseases with a presynaptic deficit that results in neuromuscular weakness. Further, several of these new compounds can be useful tool compounds for the study of VGCC gating and function.
电压门控钙通道(VGCCs)是许多细胞功能的关键调节剂,包括神经末梢中化学神经递质的活性依赖性释放。在神经末梢,Cav2 家族的 VGCCs 与含有神经递质的突触小泡紧密相连。钙离子与递质释放之间的关系是,即使 VGCC 中钙离子通量的微小变化也会对递质释放的幅度产生强烈影响。因此,神经末梢钙离子内流的调节剂有可能强烈影响突触处的递质释放。我们之前开发了新型 Cav2 选择性 VGCC 门控修饰剂(特别是 GV-58),可减缓 VGCC 电流的失活,增加总钙离子通量。在这里,我们描述了基于 GV-58 结构的十个新的门控修饰剂,这些修饰剂扩展了我们对这类分子结构-活性关系的理解,并扩展了通道活性的调节范围。特别是,我们表明这些新化合物中的一种(MF-06)比 GV-58 更有效,另一种(KK-75)比 GV-58 更快地作用于 VGCC,第三种(KK-20)则具有增加的速度和效力的混合。这些新的 VGCC 激动剂门控修饰剂中的一部分可以在神经肌肉突触的动作电位期间增加递质释放,因此,作为导致神经肌肉无力的突触前缺陷的疾病的治疗方法具有潜力。此外,这些新化合物中的几种可作为研究 VGCC 门控和功能的有用工具化合物。