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使用环核苷酸类似物对I型和II型环磷酸腺苷依赖性蛋白激酶的两类结合位点(A和B)进行比较。

Comparison of the two classes of binding sites (A and B) of type I and type II cyclic-AMP-dependent protein kinases by using cyclic nucleotide analogs.

作者信息

Ogreid D, Ekanger R, Suva R H, Miller J P, Døskeland S O

机构信息

Cell Biology Research Group, Institute of Anatomy, University of Bergen, Norway.

出版信息

Eur J Biochem. 1989 Apr 15;181(1):19-31. doi: 10.1111/j.1432-1033.1989.tb14689.x.

Abstract

cAMP analogs, all 96 of which were modified in the adenine moiety, were examined quantitatively for their ability to inhibit the binding of [3H]cAMP to each of the two classes (A and B) of cAMP-binding sites of type I (rabbit skeletal muscle) and type II (bovine heart) cAMP-dependent protein kinase. The study showed that analogs can be constructed that have a higher affinity than cAMP for a binding site. N6-phenyl-cAMP had 18-fold increased affinity for site A of RI (AI) and 40-fold increased affinity for site AII. 2-chloro-8-methylamino-cAMP had a 7-fold increased affinity for BI, and 8-(4-chlorophenylthio)-cAMP had 17-fold increased affinity for BII. Analogs could discriminate between the two classes of binding sites by more than two orders of magnitude in binding affinity: 2-chloro-8-methylamino-cAMP had 170-fold higher affinity for BI than for AI, and 2-n-butyl-8-thiobenzyl-cAMP had 700-fold higher affinity for BII than for AII. Analogs could also discriminate between the homologous binding sites of the isozymes: 2-n-butyl-8-bromo-cAMP had 260-fold higher affinity for AI than for AII (22-fold higher for BII than BI), and 8-piperidino-cAMP had 50-fold higher affinity for BII than for BI (and 50-fold higher for AI than for AII). The data suggest the following conclusions. (a) Stacking interactions are important for the binding of cAMP to all the binding sites. (b) Subtle differences exist between the sites as to the optimal electron distribution in the adenine ring since modifications that withdraw electrons at C2 and donate at C8 favour binding to BI, and disfavour binding to AI and AII. (c) There are no hydrogen bonds between the adenine ring of cAMP and any of the binding sites. (d) All sites bind cAMP in the syn conformation. (e) The subsites adjacent to the N6 and C8 positions may have nonpolar neighbouring regions since hydrophobic substituents at N6 could increase the affinity for AI and AII and similar substituents at C8 could increase the affinity for BII. Finally, (f) the sites differed in their ability to accomodate bulky substituents at C2 and C8. For all compounds tested, their potency as activators of protein kinases I and II was found to correlate, in a predictable fashion, to their mean affinity for the two classes of binding sites, rather than to the affinity for only one of the sites.

摘要

对96种均在腺嘌呤部分进行了修饰的环磷酸腺苷(cAMP)类似物,定量检测了它们抑制[3H]cAMP与I型(兔骨骼肌)和II型(牛心脏)cAMP依赖性蛋白激酶的两类(A和B)cAMP结合位点结合的能力。研究表明,可以构建出对结合位点具有比cAMP更高亲和力的类似物。N6-苯基-cAMP对RI的A位点(AI)的亲和力增加了18倍,对AII位点的亲和力增加了40倍。2-氯-8-甲氨基-cAMP对BI的亲和力增加了7倍,8-(4-氯苯硫基)-cAMP对BII的亲和力增加了17倍。类似物在结合亲和力上对两类结合位点的区分能力可超过两个数量级:2-氯-8-甲氨基-cAMP对BI的亲和力比对AI高170倍,2-正丁基-8-硫代苄基-cAMP对BII的亲和力比对AII高700倍。类似物还能区分同工酶的同源结合位点:2-正丁基-8-溴-cAMP对AI的亲和力比对AII高260倍(对BII的亲和力比对BI高22倍),8-哌啶基-cAMP对BII的亲和力比对BI高50倍(对AI的亲和力比对AII高50倍)。数据表明以下结论。(a)堆积相互作用对cAMP与所有结合位点的结合很重要。(b)由于在C2处吸电子且在C8处供电子的修饰有利于与BI结合而不利于与AI和AII结合,各位点在腺嘌呤环中的最佳电子分布方面存在细微差异。(c)cAMP的腺嘌呤环与任何结合位点之间不存在氢键。(d)所有位点均以顺式构象结合cAMP。(e)与N6和C8位置相邻的亚位点可能具有非极性邻域,因为N6处的疏水取代基可增加对AI和AII的亲和力,而C8处的类似取代基可增加对BII的亲和力。最后,(f)各位点在容纳C2和C8处的大体积取代基的能力方面存在差异。对于所有测试的化合物,发现它们作为蛋白激酶I和II激活剂的效力以可预测的方式与其对两类结合位点的平均亲和力相关,而不是仅与对其中一个位点的亲和力相关。

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