首页> 外文OA文献 >Distinct Allostery Induced in the Cyclic GMP-binding, Cyclic GMP-specific Phosphodiesterase (PDE5) by Cyclic GMP, Sildenafil, and Metal Ions*
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Distinct Allostery Induced in the Cyclic GMP-binding, Cyclic GMP-specific Phosphodiesterase (PDE5) by Cyclic GMP, Sildenafil, and Metal Ions*

机译:循环GMP,西地那非和金属离子诱导的循环GMP结合,循环GMP特异性磷酸二酯酶(PDE5)的独特构象*

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摘要

The activity of many proteins orchestrating different biological processes is regulated by allostery, where ligand binding at one site alters the function of another site. Allosteric changes can be brought about by either a change in the dynamics of a protein, or alteration in its mean structure. We have investigated the mechanisms of allostery induced by chemically distinct ligands in the cGMP-binding, cGMP-specific phosphodiesterase, PDE5. PDE5 is the target for catalytic site inhibitors, such as sildenafil, that are used for the treatment of erectile dysfunction and pulmonary hypertension. PDE5 is a multidomain protein and contains two N-terminal cGMP-specific phosphodiesterase, bacterial adenylyl cyclase, FhLA transcriptional regulator (GAF) domains, and a C-terminal catalytic domain. Cyclic GMP binding to the GAFa domain and sildenafil binding to the catalytic domain result in conformational changes, which to date have been studied either with individual domains or with purified enzyme. Employing intramolecular bioluminescence resonance energy transfer, which can monitor conformational changes both in vitro and in intact cells, we show that binding of cGMP and sildenafil to PDE5 results in distinct conformations of the protein. Metal ions bound to the catalytic site also allosterically modulated cGMP- and sildenafil-induced conformational changes. The sildenafil-induced conformational change was temperature-sensitive, whereas cGMP-induced conformational change was independent of temperature. This indicates that different allosteric ligands can regulate the conformation of a multidomain protein by distinct mechanisms. Importantly, this novel PDE5 sensor has general physiological and clinical relevance because it allows the identification of regulators that can modulate PDE5 conformation in vivo.
机译:构筑物调节着协调不同生物学过程的许多蛋白质的活性,其中一个位点的配体结合改变了另一个位点的功能。变构变化可以通过蛋白质动力学的变化或其平均结构的改变来实现。我们已经研究了cGMP结合,cGMP特异性磷酸二酯酶PDE5中化学上不同的配体诱导的变构机制。 PDE5是催化部位抑制剂(如西地那非)的靶标,这些抑制剂可用于治疗勃起功能障碍和肺动脉高压。 PDE5是一个多域蛋白,包含两个N端cGMP特异性磷酸二酯酶,细菌腺苷酸环化酶,FhLA转录调节因子(GAF)域和一个C端催化域。与GAFa结构域结合的环GMP和与催化结构域结合的西地那非导致构象变化,迄今为止,已经用单独的结构域或纯化的酶进行了研究。利用分子内生物发光共振能量转移,其可以监测体外和完整细胞中的构象变化,我们表明cGMP和西地那非对PDE5的结合导致蛋白质的独特构象。结合到催化位点的金属离子也变构调节cGMP和sildenafil诱导的构象变化。西地那非诱导的构象变化对温度敏感,而cGMP诱导的构象变化与温度无关。这表明不同的变构配体可以通过不同的机制调节多结构域蛋白的构象。重要的是,这种新颖的PDE5传感器具有一般的生理和临床意义,因为它允许鉴定可在体内调节PDE5构象的调节剂。

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