Mechanosensitive ion channels as drug targets.

Philip A Gottlieb, Thomas M Suchyna, Lyle W Ostrow, Frederick Sachs
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引用次数: 55

Abstract

Mechanically sensitive ion channels (MSCs) are ubiquitous. They exist as two major types: those in specialized receptors that require fibrous proteins to transmit forces to the channel, and those in non-specialized tissues that respond to stress in the lipid bilayer. While few MSCs have been cloned, the existing structures show no sequence or structural homology--an example of convergent evolution. The physiological function of MSCs in many tissues is not known, but they probably arose from the need for cell volume regulation. Recently, a peptide called GsMTx4 was isolated from tarantula venom and is the first specific reagent for mechanosensitive channels. GsMTx4 is a approximately 4 kD peptide with a hydrophobic face opposite a positively charged face. It is active in the D and L forms, and appears non-toxic to mice. GsMTx4 has shown physiological effects on cationic MSCs in heart, smooth muscle, astrocytes, and skeletal muscle. By itself, GsMTx4 can serve as a lead compound or as a potential drug. Its availability opens clinical horizons in the diagnosis and treatment of pathologies including cardiac arrhythmia, muscular dystrophy and glioma.

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机械敏感离子通道作为药物靶点。
机械敏感离子通道(MSCs)普遍存在。它们主要有两种类型:一种是在特殊的受体中,需要纤维蛋白将力传递到通道中;另一种是在非特殊的组织中,对脂质双分子层的压力做出反应。虽然很少有msc被克隆出来,但现有的结构没有序列或结构同源性——这是趋同进化的一个例子。间充质干细胞在许多组织中的生理功能尚不清楚,但它们可能源于细胞体积调节的需要。最近,从狼蛛毒液中分离出一种名为GsMTx4的肽,这是首个针对机械敏感通道的特异性试剂。GsMTx4是一种约4kd的肽,其疏水性面与正电荷面相反。它以D和L的形式活跃,并且对小鼠无毒。GsMTx4对心脏、平滑肌、星形胶质细胞和骨骼肌的阳离子间充质干细胞有生理作用。GsMTx4本身可以作为先导化合物或潜在药物。它的可用性为心律失常、肌肉萎缩症和神经胶质瘤等病理的诊断和治疗开辟了临床视野。
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