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Structural Basis for Diltiazem Block of a Voltage-Gated Ca2+ Channel

机译:电压门控CA2 +通道的Diltiazem块的结构基础

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Diltiazem is a widely prescribed Ca2+ antagonist drug for cardiac arrhythmia, hypertension, and angina pectoris. Using the ancestral Ca-V channel construct Ca(V)Ab as a molecular model for X-ray crystallographic analysis, we show here that diltiazem targets the central cavity of the voltage-gated Ca2+ channel underneath its selectivity filter and physically blocks ion conduction. The diltiazem-binding site overlaps with the receptor site for phenylalkylamine Ca2+ antagonist drugs such as verapamil. The dihydropyridine Ca2+ channel blocker amlodipine binds at a distinct site and allosterically modulates the binding sites for diltiazem and Ca2+. Our studies resolve two distinct binding poses for diltiazem in the absence and presence of amlodipine. The binding pose in the presence of amlodipine may mimic a high-affinity binding configuration induced by voltage-dependent inactivation, which is favored by dihydropyridine binding. In this binding pose, the tertiary amino group of diltiazem projects upward into the inner end of the ion selectivity filter, interacts with ion coordination Site 3 formed by the backbone carbonyls of T175, and alters binding of Ca2+ to ion coordination Sites 1 and 2. Altogether, our results define the receptor site for diltiazem and elucidate the mechanisms for pore block and allosteric modulation by other Ca2+ channel-blocking drugs at the atomic level.
机译:Diltiazem是一种广泛规定的Ca2 +拮抗剂药物,用于心脏心律失常,高血压和心绞痛。使用祖先CA-V通道构建CA(V)AB作为X射线晶体分析的分子模型,我们在这里展示了Diltiazem靶向其选择性过滤器下方的电压门控Ca2 +通道的中心腔,并物理地阻挡离子传导。 Diltiazem结合位点与受体部位与苯基烷基胺Ca2 +拮抗剂如维拉帕米的受体部位重叠。二氢吡啶Ca2 +通道阻滞剂氨氯氨脒在一个不同的部位结合,并构成模拟地调节Diltiazem和Ca2 +的结合位点。我们的研究在缺乏和存在的氨氯地平的情况下,解决了Diltiazem的两个明显的结合姿势。在氨氯嗪存在下的结合姿势可以模仿通过电压依赖性的灭活诱导的高亲和力结合构型,其由二氢吡啶结合有利。在该结合姿势中,Diltiazem的叔氨基向上突出到离子选择性过滤器的内端,与由T175的骨架羰基形成的离子配位部位3相互作用,并改变Ca2 +与离子配位位点1和2的结合。完全,我们的结果定义了Diltiazem的受体部位,并阐明了在原子水平处的其他Ca2 +通道阻断药物的孔块和变构调节的机制。

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