首页> 外文期刊>The Journal of biological chemistry >Communication between Tandem cAMP Binding Domains in the Regulatory Subunit of Protein Kinase A-Iα as Revealed by Domain-silencing Mutations
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Communication between Tandem cAMP Binding Domains in the Regulatory Subunit of Protein Kinase A-Iα as Revealed by Domain-silencing Mutations

机译:蛋白激酶A-Iα调节亚基之间串联​​阵营结合结构域之间的通信,如域沉默突变揭示的

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Protein kinase A (PKA) is the main receptor for the universal cAMP second messenger. PKA is a tetramer with two catalytic (C) and two regulatory (R) subunits, each including two tandem cAMP binding domains, i.e. CBD-A and -B. Structural investigations of RIα have revealed that although CBD-A plays a pivotal role in the cAMP-dependent inhibition of C, the main function of CBD-B is to regulate the access of cAMP to site A. To further understand the mechanism underlying the cross-talk between CBD-A and -B, we report here the NMR investigation of a construct of R, RIα-(119–379), which unlike previous fragments characterized by NMR, spans in full both CBDs. Our NMR studies were also extended to two mutants, R209K and the corresponding R333K, which severely reduce the affinity of cAMP for CBD-A and -B, respectively. The comparative NMR analysis of wild-type RIα-(119–379) and of the two domain silencing mutations has led to the definition at an unprecedented level of detail of both intra- and interdomain allosteric networks, revealing several striking differences between the two CBDs. First, the two domains, although homologous in sequence and structure, exhibit remarkably different responses to the R/K mutations especially at the β2-3 allosteric “hot spot.” Second, although the two CBDs are reciprocally coupled at the level of local unfolding of the hinge, the A-to-B and B-to-A pathways are dramatically asymmetrical at the level of global unfolding. Such an asymmetric interdomain cross-talk ensures efficiency and robustness in both the activation and de-activation of PKA.
机译:蛋白激酶A(PKA)是普遍营地第二信使的主要受体。 PKA是具有两个催化(c)和两个调节(R)亚基的四聚体,每个调节亚亚基(包括两个串联营应合结构域),即CBD-A和-B。 Riα的结构研究表明,虽然CBD-A在CAMP依赖性抑制中发挥着关键作用,但CBD-B的主要功能是调节营地到现场A的通道。为了进一步了解十字架下面的机制-Talk在CBD-A和-B之间,我们在此报告了R,Riα-(119-379)的构建体的NMR调查,其与先前的疾病特征的碎片不同,跨越全部CBD。我们的NMR研究也延伸到两个突变体,R209K和相应的R333K,这分别严重降低了CAM-A和-B的营地的亲和力。野生型Riα-(119-379)和两个域沉默突变的对比NMR分析导致了在互联和互代颠振网络的前所未有的细节水平下的定义,揭示了两种CBD之间的几个醒目的差异。首先,虽然序列和结构同源,但似乎与β2-3变构“热点”表现出对R / K突变的显着不同反应。其次,尽管两个CBD在铰链的局部展开的水平上往复耦合,但是A-TO-B和B-TO-A途径在全球展开的水平下显着不对称。这种不对称跨域串扰可确保PKA的激活和去激活中的效率和鲁棒性。

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