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用腺苷3',5'-环硫代磷酸酯类似物探测环磷酸腺苷依赖性蛋白激酶I和II的环核苷酸结合位点。

Probing the cyclic nucleotide binding sites of cAMP-dependent protein kinases I and II with analogs of adenosine 3',5'-cyclic phosphorothioates.

作者信息

Dostmann W R, Taylor S S, Genieser H G, Jastorff B, Døskeland S O, Ogreid D

机构信息

Department of Chemistry, University of California, San Diego, La Jolla 92093.

出版信息

J Biol Chem. 1990 Jun 25;265(18):10484-91.

PMID:2162349
Abstract

A set of cAMP analogs were synthesized that combined exocyclic sulfur substitutions in the equatorial (Rp) or the axial (Sp) position of the cyclophosphate ring with modifications in the adenine base of cAMP. The potency of these compounds to inhibit the binding of [3H]cAMP to sites A and B from type I (rabbit skeletal muscle) and type II (bovine myocardium) cAMP-dependent protein kinase was determined quantitatively. On the average, the Sp isomers had a 5-fold lower affinity for site A and a 30-fold lower affinity for site B of isozyme I than their cyclophosphate homolog. The mean reduction in affinities for the equivalent sites of isozyme II were 20- and 4-fold, respectively. The Rp isomers showed a decrease in affinity of approximately 400-fold and 200-fold for site A and B, respectively, of isozyme I, against 200-fold and 45-fold for site A and B of isozyme II. The Sp substitutions therefore increased the relative preference for site A of isozyme I and site B of isozyme II. The Rp substitution, on the other hand, increased the relative preference for site B of both isozymes. These data show that the Rp and Sp substitutions are tolerated differently by the two intrachain sites of isozymes I and II. They also support the hypothesis that it is the axial, and not the previously proposed equatorial oxygen that contributes the negative charge for the ionic interaction with an invariant arginine in all four binding sites. In addition, they demonstrate that combined modifications in the adenine ring and the cyclic phosphate ring of cAMP can enhance the ability to discriminate between site A and B of one isozyme as well as to discriminate between isozyme I and II. Since Rp analogs of cAMP are known to inhibit activation of cAMP-dependent protein kinases, the findings of the present study have implications for the synthesis of analogs having a very high selectivity for isozyme I or II.

摘要

合成了一组环磷酸腺苷(cAMP)类似物,这些类似物在环磷酸环的赤道(Rp)或轴向(Sp)位置结合了环外硫取代,并对cAMP的腺嘌呤碱基进行了修饰。定量测定了这些化合物抑制[3H]cAMP与I型(兔骨骼肌)和II型(牛心肌)cAMP依赖性蛋白激酶的A位点和B位点结合的能力。平均而言,Sp异构体对同工酶I的A位点的亲和力比其环磷酸同系物低5倍,对B位点的亲和力低30倍。对同工酶II的等效位点亲和力的平均降低分别为20倍和4倍。Rp异构体对同工酶I的A位点和B位点的亲和力分别降低约400倍和200倍,而对同工酶II的A位点和B位点分别降低200倍和45倍。因此,Sp取代增加了对同工酶I的A位点和同工酶II的B位点的相对偏好。另一方面,Rp取代增加了两种同工酶对B位点的相对偏好。这些数据表明,Rp和Sp取代在同工酶I和II的两个链内位点上的耐受性不同。它们还支持这样的假设,即与所有四个结合位点中不变的精氨酸进行离子相互作用的负电荷是由轴向氧而非先前提出的赤道氧贡献的。此外,它们表明,cAMP的腺嘌呤环和环磷酸环的联合修饰可以增强区分一种同工酶的A位点和B位点以及区分同工酶I和II的能力。由于已知cAMP的Rp类似物可抑制cAMP依赖性蛋白激酶的激活,本研究结果对合成对同工酶I或II具有非常高选择性的类似物具有启示意义。

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