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Structural and functional differences between L-type calcium channels: crucial issues for future selective targeting.

机译:L型钙通道之间的结构和功能差异:未来选择性靶向的关键问题。

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摘要

Within the family of voltage-gated calcium channels (VGCCs), L-type channels (L-VGCCs) represent a well-established therapeutic target for calcium channel blockers, which are widely used to treat hypertension and myocardial ischemia. L-VGCCs outside the cardiovascular system also control key physiological processes such as neuronal plasticity, sensory cell function (e.g. in the inner ear and retina) and endocrine function (e.g. in pancreatic beta cells and adrenal chromaffin cells). Research into L-VGCCs was stimulated by the discovery that the known L-VGCC isoforms (Ca(V)1.1, Ca(V)1.2, Ca(V)1.3 and Ca(V)1.4) possess different biophysical properties. However, no L-VGCC-isoform-selective drugs have yet been identified. In this review, we examine Ca(V)1.2 and Ca(V)1.3 isoforms at the level of genetic structure, splice variants, post-translational modifications and functional protein coupling. We discuss candidate Ca(V)1.2- and Ca(V)1.3-specific characteristics as future therapeutic targets in individual organs.
机译:在电压门控钙通道(VGCC)家族中,L型通道(L-VGCC)代表了钙通道阻滞剂的既定治疗靶标,钙离子通道阻滞剂广泛用于治疗高血压和心肌缺血。心血管系统外部的L-VGCC还控制着关键的生理过程,例如神经元可塑性,感觉细胞功能(例如在内耳和视网膜中)和内分泌功能(例如在胰腺β细胞和肾上腺嗜铬细胞中)。发现已知的L-VGCC亚型(Ca(V)1.1,Ca(V)1.2,Ca(V)1.3和Ca(V)1.4)具有不同的生物物理特性,从而刺激了对L-VGCC的研究。但是,尚未鉴定出L-VGCC异构体选择性药物。在这篇综述中,我们在基因结构,剪接变体,翻译后修饰和功能性蛋白质偶联水平上研究了Ca(V)1.2和Ca(V)1.3亚型。我们讨论候选Ca(V)1.2-和Ca(V)1.3的特定特征,作为将来在各个器官中的治疗靶标。

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