Steinberg R A, Symcox M M, Sollid S, Ogreid D
Department of Biochemistry and Molecular Biology, the University of Oklahoma Health Sciences Center, Oklahoma City, Oklahoma 73190, USA.
J Biol Chem. 1996 Nov 1;271(44):27630-6. doi: 10.1074/jbc.271.44.27630.
The guanidinium groups of conserved arginines in the two intrachain cAMP-binding sites of regulatory (R) subunit of cAMP-dependent protein kinase have been implicated in the allosteric interactions by which cAMP binding leads to kinase activation. We have investigated the functional role of Arg-210, the conserved arginine in site A of murine type Ialpha R subunit, by analyzing the effects of nine different substitutions at this residue on cAMP binding and allosteric properties of bacterially expressed RIalpha subunits. All substitutions reduced the cAMP binding affinity of site A, but the magnitude of reduction varied from several hundredfold to 10(6)-fold. The differential effects of the different substitutions could not easily be rationalized by interactions with cAMP and might, in part, reflect interactions with other residues in the unoccupied cAMP-binding pocket. None of the Arg-210 substitutions appeared to disrupt the allosteric interaction by which occupation of site A slows dissociation of cAMP from site B, although the effect was difficult to elicit in full with mutations that had strong effects on cAMP binding. The two weakest substitutions, Arg-210 --> Ile and Arg-210 --> Thr, could be shown to have essentially no effect on the allosteric interaction by which occupation of site A reduces the affinity of R subunit for the catalytic subunit. The weaker mutations had a smaller effect on kinase activation by the suboptimal activator Rp-adenosine cyclic 3',5'-phosphorothioate than by cAMP, suggesting that the analog largely bypasses interactions with the guanidinium group of Arg-210.
环磷酸腺苷(cAMP)依赖性蛋白激酶调节(R)亚基的两个链内cAMP结合位点中保守精氨酸的胍基参与了变构相互作用,通过这种相互作用,cAMP结合导致激酶激活。我们通过分析鼠Iα型R亚基位点A中保守精氨酸Arg-210处九个不同取代对细菌表达的RIα亚基的cAMP结合和变构特性的影响,研究了其功能作用。所有取代都降低了位点A的cAMP结合亲和力,但降低幅度从几百倍到10^6倍不等。不同取代的差异效应难以通过与cAMP的相互作用来合理解释,可能部分反映了与未占据的cAMP结合口袋中其他残基的相互作用。尽管对于对cAMP结合有强烈影响的突变,很难完全引发这种效应,但Arg-210的取代似乎都没有破坏位点A被占据时减缓cAMP从位点B解离的变构相互作用。两种最弱的取代,即Arg-210→Ile和Arg-210→Thr,对位点A被占据时降低R亚基对催化亚基亲和力的变构相互作用基本没有影响。较弱的突变对次优激活剂Rp-腺苷环3',5'-硫代磷酸酯激活激酶的影响比对cAMP的影响小,这表明该类似物在很大程度上绕过了与Arg-210胍基的相互作用。