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Mammalian cyclic nucleotide phosphodiesterases: molecular mechanisms and physiological functions.

机译:哺乳动物环状核苷酸磷酸二酯酶:分子机制和生理功能。

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摘要

The superfamily of cyclic nucleotide (cN) phosphodiesterases (PDEs) is comprised of 11 families of enzymes. PDEs break down cAMP and/or cGMP and are major determinants of cellular cN levels and, consequently, the actions of cN-signaling pathways. PDEs exhibit a range of catalytic efficiencies for breakdown of cAMP and/or cGMP and are regulated by myriad processes including phosphorylation, cN binding to allosteric GAF domains, changes in expression levels, interaction with regulatory or anchoring proteins, and reversible translocation among subcellular compartments. Selective PDE inhibitors are currently in clinical use for treatment of erectile dysfunction, pulmonary hypertension, intermittent claudication, and chronic pulmonary obstructive disease; many new inhibitors are being developed for treatment of these and other maladies. Recently reported x-ray crystallographic structures have defined features that provide for specificity for cAMP or cGMP in PDE catalytic sites or their GAF domains, as well as mechanisms involved in catalysis, oligomerization, autoinhibition, and interactions with inhibitors. In addition, major advances have been made in understanding the physiological impact and the biochemical basis for selective localization and/or recruitment of specific PDE isoenzymes to particular subcellular compartments. The many recent advances in understanding PDE structures, functions, and physiological actions are discussed in this review.
机译:环状核苷酸(cN)磷酸二酯酶(PDE)的超家族由11个酶家族组成。 PDE分解cAMP和/或cGMP,是细胞cN水平的主要决定因素,因此是cN信号通路的作用的主要决定因素。 PDE对cAMP和/或cGMP的分解显示出一定的催化效率,并受无数过程的调节,这些过程包括磷酸化,cN与变构GAF域的结合,表达水平的变化,与调节蛋白或锚定蛋白的相互作用以及亚细胞区室之间的可逆转运。选择性PDE抑制剂目前在临床上用于治疗勃起功能障碍,肺动脉高压,间歇性lau行和慢性肺阻塞性疾病。正在开发许多新的抑制剂来治疗这些疾病和其他疾病。最近报道的X射线晶体学结构已定义了一些特征,这些特征可为PDE催化位点或其GAF域中的cAMP或cGMP提供特异性,以及涉及催化,低聚,自抑制以及与抑制剂相互作用的机制。另外,在理解特定PDE同工酶选择性定位和/或募集到特定亚细胞区室的生理影响和生化基础方面已取得重大进展。在这篇综述中讨论了在理解PDE结构,功能和生理作用方面的许多最新进展。

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