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犬类和人类心脏微粒体组分中吲哚旦和咯利普兰敏感的环核苷酸磷酸二酯酶的特性分析

Characterization of indolidan- and rolipram-sensitive cyclic nucleotide phosphodiesterases in canine and human cardiac microsomal fractions.

作者信息

Lugnier C, Muller B, Le Bec A, Beaudry C, Rousseau E

机构信息

Laboratoire de Pharmacologie Cellulaire et Moléculaire, CNRS URA 600, Université Louis Pasteur de Strasbourg, Illkirch, France.

出版信息

J Pharmacol Exp Ther. 1993 Jun;265(3):1142-51.

PMID:8389853
Abstract

The distribution of phosphodiesterase (PDE) activities was studied in canine cardiac microsomal fractions separated by sucrose density gradient (fractions F1 to Fv1). These fractions were characterized by their 45Ca2+ uptake and release properties, [3H] ryanodine binding [used as sarcoplasmic reticulum (SR) markers] and their [3H]nitrendipine binding (as a T-system marker). The solubilized canine and human SR-enriched membranes were subjected to high performance liquid chromatography and the PDE forms were then analyzed for their kinetic properties and drug sensitivies. In human SR, a notable amount of PDE I hydrolyzing both cAMP and cGMP was characterized; however, its stimulation by calmodulin was reduced. Two selective cAMP-PDE forms were identified in the canine and human cardiac SR-enriched fractions. The major form presents the characteristics of PDE III: an apparent Km value of 0.29 and 0.35 microM in canine and human cardiac SR, respectively, potent inhibition by cGMP and AAL 05 > cilostamide > Cl 930 > indolidan, and insensitivity to rolipram. The other form displays the properties of PDE IV: an apparent Km value of 1.4 and 1.3 microM in canine and human cardiac SR respectively, potent inhibition by rolipram and poorly sensitive to inhibition by PDE III inhibitors. The PDE IV distribution in canine SR suggests that this form is mostly associated with the FII fraction enriched in sarcolemmal membranes. In contrast, PDE III assessed by its indolidan sensitivity and [3H]LY186126 binding is associated with the microsomal membranes enriched in vesicles derived from T-tubule and junctional SR membranes. Because these membranes are directly involved in controlling excitation-contraction coupling, such PDE location enhances the physiologic relevance to study their implication in regulating cardiac contraction.

摘要

研究了通过蔗糖密度梯度分离的犬心脏微粒体组分(F1至Fv1组分)中磷酸二酯酶(PDE)活性的分布。这些组分通过其45Ca2+摄取和释放特性、[3H]ryanodine结合(用作肌浆网(SR)标记)及其[3H]尼群地平结合(作为T系统标记)来表征。将溶解的犬和人富含SR的膜进行高效液相色谱分析,然后分析PDE形式的动力学特性和药物敏感性。在人SR中,鉴定出了一种可水解cAMP和cGMP的PDE I,但钙调蛋白对其的刺激作用减弱。在犬和人富含心脏SR的组分中鉴定出两种选择性cAMP-PDE形式。主要形式呈现PDE III的特征:在犬和人心脏SR中,表观Km值分别为0.29和0.35 microM,被cGMP和AAL 05强力抑制>西洛他唑>Cl 930>吲哚利旦,对咯利普兰不敏感。另一种形式表现出PDE IV的特性:在犬和人心脏SR中,表观Km值分别为1.4和1.3 microM,被咯利普兰强力抑制,对PDE III抑制剂的抑制作用敏感性较差。犬SR中PDE IV的分布表明,这种形式主要与富含肌膜的FII组分相关。相比之下,通过其对吲哚利旦的敏感性和[3H]LY186126结合评估的PDE III与富含源自T小管和连接SR膜的囊泡的微粒体膜相关。由于这些膜直接参与控制兴奋-收缩偶联,这种PDE的定位增强了研究其在调节心脏收缩中的作用的生理相关性。

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