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Cyclic nucleotide phosphodiesterases: molecular regulation to clinical use.

机译:环核苷酸磷酸二酯酶:分子调控以用于临床。

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摘要

Cyclic nucleotide phosphodiesterases (PDEs) are enzymes that regulate the cellular levels of the second messengers, cAMP and cGMP, by controlling their rates of degradation. There are 11 different PDE families, with each family typically having several different isoforms and splice variants. These unique PDEs differ in their three-dimensional structure, kinetic properties, modes of regulation, intracellular localization, cellular expression, and inhibitor sensitivities. Current data suggest that individual isozymes modulate distinct regulatory pathways in the cell. These properties therefore offer the opportunity for selectively targeting specific PDEs for treatment of specific disease states. The feasibility of these enzymes as drug targets is exemplified by the commercial and clinical successes of the erectile dysfunction drugs, sildenafil (Viagra), tadalafil (Cialis), and vardenafil (Levitra). PDE inhibitors are also currently available or in development for treatment of a variety of other pathological conditions. In this review the basic biochemical properties, cellular regulation, expression patterns, and physiological functions of the different PDE isoforms will be discussed. How these properties relate to the current and future development of PDE inhibitors as pharmacological agents is especially considered. PDEs hold great promise as drug targets and recent research advances make this an exciting time for the field of PDE research.
机译:环核苷酸磷酸二酯酶(PDE)是通过控制第二信使cAMP和cGMP的降解速率来调节其细胞水平的酶。有11个不同的PDE家族,每个家族通常具有几种不同的同工型和剪接变体。这些独特的PDE在其三维结构,动力学特性,调节模式,细胞内定位,细胞表达和抑制剂敏感性方面有所不同。当前数据表明单个同工酶调节细胞中不同的调节途径。因此,这些特性提供了选择性靶向特定PDE来治疗特定疾病状态的机会。这些酶作为药物靶标的可行性由勃起功能障碍药物西地那非(Viagra),他达拉非(Cialis)和伐地那非(Levitra)的商业和临床成功证明。 PDE抑制剂目前也可用于治疗多种其他病理状况或正在开发中。在这篇综述中,将讨论不同PDE同工型的基本生化特性,细胞调节,表达模式和生理功能。特别要考虑这些性质与PDE抑制剂作为药理剂的当前和未来发展之间的关系。 PDEs有望成为药物靶标,最近的研究进展使这成为PDE研究领域一个激动人心的时刻。

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