Suppr超能文献

剖析磷酸二酯酶4(PDE4)抑制剂的辅因子依赖性和非依赖性结合

Dissecting the cofactor-dependent and independent bindings of PDE4 inhibitors.

作者信息

Liu S, Laliberté F, Bobechko B, Bartlett A, Lario P, Gorseth E, Van Hamme J, Gresser M J, Huang Z

机构信息

Department of Biochemistry and Molecular Biology, Merck Frosst Center for Therapeutical Research, P.O. Box 1005, Pointe Claire, Dorval, Quebec H9R 4P8, Canada.

出版信息

Biochemistry. 2001 Aug 28;40(34):10179-86. doi: 10.1021/bi010096p.

Abstract

Type 4 phosphodiesterases (PDE4s) are metallohydrolases that catalyze the hydrolysis of cAMP to AMP. At the bottom of its active site lie two divalent metal ions in a binuclear motif which are involved in both cAMP binding and catalysis [(2000) Science 288, 1822-1825; (2000) Biochemistry 39, 6449-6458]. Using a SPA-based equilibrium [(3)H]rolipram binding assay, we have determined that Mg(2+), Mn(2+), and Co(2+) all mediated a high-affinity (K(d) between 3 and 8 nM) and near stoichiometric (R)-rolipram binding to PDE4. In their absence, (R)-rolipram binds stoichiometrically to the metal ion-free apoenzyme with a K(d) of approximately 150 nM. The divalent cation dose responses in mediating the high-affinity rolipram/PDE4 interaction mirror their efficacy in catalysis, suggesting that both metal ions of the holoenzyme are involved in mediating the high-affinity (R)-rolipram/PDE4 interaction. The specific rolipram binding to the apo- and holoenzyme is differentially displaced by cAMP, AMP, and other inhibitors, providing a robust tool to dissect the components of metal ion-dependent and independent PDE4/ligand interactions. cAMP binds to the holoenzyme with a K(s) of 1.9 microM and nonproductively to the apoenzyme with a K(d) of 179 microM. In comparison, AMP binds to the holo- and apoenzyme with K(d) values of 7 and 11 mM, respectively. The diminished Mg(2+)-dependent component of AMP binding to PDE4 suggests that most of the Mg(2+)/phosphate interaction in the cAMP/PDE4 complex is disrupted upon the hydrolysis of the cyclic phosphoester bond, leading to the rapid release of AMP.

摘要

4型磷酸二酯酶(PDE4s)是金属水解酶,可催化cAMP水解为AMP。在其活性位点底部,有两个处于双核基序的二价金属离子,它们参与cAMP的结合和催化过程[(2000年)《科学》288卷,1822 - 1825页;(2000年)《生物化学》39卷,6449 - 6458页]。使用基于SPA的平衡[(3)H]咯利普兰结合试验,我们已确定Mg(2+)、Mn(2+)和Co(2+)均介导了高亲和力(K(d)在3至8 nM之间)且接近化学计量的(R)-咯利普兰与PDE4的结合。在没有这些离子的情况下,(R)-咯利普兰以大约150 nM的K(d)化学计量地结合到无金属离子的脱辅基酶上。二价阳离子在介导高亲和力咯利普兰/PDE4相互作用中的剂量反应反映了它们在催化中的功效,这表明全酶的两个金属离子都参与介导高亲和力(R)-咯利普兰/PDE4相互作用。cAMP、AMP和其他抑制剂对脱辅基酶和全酶的特异性咯利普兰结合有不同程度的取代,这为剖析金属离子依赖性和非依赖性PDE4/配体相互作用的成分提供了一个有力工具。cAMP以1.9 microM的K(s)结合到全酶上,以179 microM的K(d)无效地结合到脱辅基酶上。相比之下,AMP分别以7 mM和11 mM的K(d)值结合到全酶和脱辅基酶上。AMP与PDE4结合中Mg(2+)依赖性成分的减少表明,cAMP/PDE4复合物中大多数Mg(2+)/磷酸酯相互作用在环磷酸酯键水解后被破坏,导致AMP迅速释放。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验