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强心剂。8. 腺苷3',5'-环磷酸磷酸二酯酶III的选择性抑制剂。正性肌力活性五点模型的阐述。

Cardiotonic agents. 8. Selective inhibitors of adenosine 3',5'-cyclic phosphate phosphodiesterase III. Elaboration of a five-point model for positive inotropic activity.

作者信息

Moos W H, Humblet C C, Sircar I, Rithner C, Weishaar R E, Bristol J A, McPhail A T

机构信息

Department of Chemistry, Parke-Davis Pharmaceutical Research Division, Warner-Lambert Company, Ann Arbor, Michigan 48105.

出版信息

J Med Chem. 1987 Nov;30(11):1963-72. doi: 10.1021/jm00394a006.

Abstract

Inhibitors of adenosine 3',5'-cyclic phosphate phosphodiesterase III (cAMP PDE III) were studied by using solid-state, solution, and theoretical methods in order to refine a five-point model for positive inotropic activity. Cyclic AMP PDE III inhibitors bear a striking resemblance to cAMP itself. This investigation supports the importance of an overall planar topography for selective and potent cAMP PDE III inhibition. (Possible reasons for the potency of certain nonplanar compounds are discussed.) Cardiotonics like imazodan (1; CI-914) and 2 (CI-930) can readily achieve essentially planar geometries, as shown with X-ray crystallographic, IR, UV, NMR, and theoretical data. Small alkyl substituents that occupy space corresponding to certain portions of the cAMP sugar region increase potency (see, e.g., 2, 4). Selective inhibition of cAMP PDE III can be achieved by mimicking the attractive electrostatic potential associated with the phosphate group (e.g., with an amide) and by providing an additional attractive potential spatially opposite to the previous one, in the vicinity of the adenine N1 and extending to N3 (e.g., with an imidazole), together with a partial dipole moment comparable to the adenine dipole moment. This extends and better defines our five-point model in terms of cAMP, a natural substrate for PDE.

摘要

为了完善正性肌力活性的五点模型,采用固态、溶液和理论方法对腺苷3',5'-环磷酸磷酸二酯酶III(cAMP PDE III)抑制剂进行了研究。环磷酸腺苷磷酸二酯酶III抑制剂与环磷酸腺苷本身有着惊人的相似之处。这项研究支持了整体平面构象对于选择性和强效抑制cAMP PDE III的重要性。(讨论了某些非平面化合物具有强效的可能原因。)强心剂如咪唑旦(1;CI-914)和2(CI-930)可以很容易地形成基本的平面构象,X射线晶体学、红外、紫外、核磁共振和理论数据都表明了这一点。占据与环磷酸腺苷糖区域某些部分相对应空间的小烷基取代基会增强活性(例如,见2, 4)。通过模拟与磷酸基团相关的吸引性静电势(例如,用酰胺),并在腺嘌呤N1附近并延伸至N3处提供一个与前一个在空间上相反的额外吸引势(例如,用咪唑),以及与腺嘌呤偶极矩相当的部分偶极矩,可以实现对cAMP PDE III的选择性抑制。就cAMP(磷酸二酯酶的天然底物)而言,这扩展并更好地定义了我们的五点模型。

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