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Structure/calcium affinity relationships of site III of calmodulin: testing the acid pair hypothesis using calmodulin mutants

机译:钙调蛋白第III位点的结构/钙亲和力关系:使用钙调蛋白突变体测试酸对假设

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摘要

Calmodulin mutants in which the calcium binding affinity of site IV was greatly reduced by a D133E mutation were prepared using site-specific, cassette-mediated mutagenesis as a multisite calcium binding protein model to examine structure/calcium affinity relationships in site III of calmodulin. Tryptophan was introduced in position 92 of the calmodulin mutants as a fluorescent label to monitor the calcium-induced structural changes in the C-terminal domain of calmodulin. The five calmodulin mutants, 3xCaM, 3zCaM, 4xCaM, 4zCaM, and 4xzCaM, were designed so that there were three or four acidic amino acid residues in chelating positions of site III with acid pairs on either the X and/or Z coordinating axes. The calcium dissociation constant of site III, KIII, of the five calmodulin mutants changes in a descending order from 3xCaM (237 microM), 3zCaM (140 microM), 4xCaM (5.8 microM), 4zCaM (3 microM), to 4xzCaM (2 microM), and these KIII values are significantly lower than that of F92W/D133E calmodulin (335 microM) in which three acidic residues with no acid pairs were present in site III [Wu, X., & Reid, R. E. (1997) Biochemistry 36, 3608-3616]. These results indicate that the calcium affinity of site III increases when the number of the acidic chelating residues increases from three to four, when the number of acid pairs increases from zero to one and further to two, and when the location of the acid pair is changed from the X axis to the Z axis. This study provides the first evidence that the acid pair hypothesis which correlates the nature of the chelating residues with the calcium affinity of the hlh motif is applicable to a multisite calcium binding protein model. The Hill coefficients indicate that reversal of the sequence of filling of the calcium binding sites in the C-terminal domain from IV --> III to III --> IV also changes the site cooperativity from positive to negative. The cooperativity returns to positive when the proteins are titrated in the presence of a calmodulin-binding peptide. Data from the present study also demonstrate that calmodulin mutants with a decreased calcium affinity have a reduced efficiency in phosphodiesterase regulation at low calcium concentrations (50 microM). However, high calcium concentrations (15 mM) restore the phosphodiesterase regulatory activity of the calmodulin mutants to a level obtained with F92W calmodulin, indicating that the mutations alter calcium regulation of calmodulin-mediated phosphodiesterase activity without affecting the interaction between calmodulin and the enzyme.
机译:使用位点特异性,盒式介导的诱变作为多位点钙结合蛋白模型,制备钙调蛋白突变体,其中通过D133E突变大大降低了位点IV的钙结合亲和力,以研究钙调蛋白的位点III中的结构/钙亲和力关系。将色氨酸作为荧光标记引入钙调蛋白突变体的92位,以监测钙诱导的钙调蛋白C端结构域的结构变化。设计了五个钙调蛋白突变体3xCaM,3zCaM,4xCaM,4zCaM和4xzCaM,以便在位点III的螯合位置具有三个或四个酸性氨基酸残基,在X和/或Z配位轴上带有酸对。五个钙调蛋白突变体的位点III,KIII的钙解离常数从3xCaM(237 microM),3zCaM(140 microM),4xCaM(5.8 microM),4zCaM(3 microM)到4xzCaM(2 microM)降序变化),而这些KIII值明显低于F92W / D133E钙调蛋白(335 microM)的值,在F92W / D133E钙调蛋白中,位点III中存在三个不带酸对的酸性残基[Wu,X.,&Reid,RE(1997)Biochemistry 36, 3608-3616]。这些结果表明,当酸性螯合残基的数目从3增加到4,酸对的数目从零增加到1再进一步增加到2,并且当酸对的位置为2时,位点III的钙亲和力增加。从X轴更改为Z轴。这项研究提供了第一个证据,即将螯合残基的性质与hlh基序的钙亲和力相关的酸对假说可用于多位钙结合蛋白模型。希尔系数表明,C末端结构域中钙结合位点的填充顺序从IV-> III反转为III-> IV,还将位点协同性从正变为负。当在钙调蛋白结合肽的存在下滴定蛋白质时,协同性恢复为正。来自本研究的数据还表明,钙亲和力降低的钙调蛋白突变体在低钙浓度(50 microM)下磷酸二酯酶调节的效率降低。但是,高钙浓度(15 mM)将钙调蛋白突变体的磷酸二酯酶调节活性恢复到F92W钙调蛋白获得的水平,表明该突变改变了钙调蛋白介导的磷酸二酯酶活性的钙调节,而不影响钙调蛋白与酶之间的相互作用。

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