Wintrode P L, Privalov P L
Department of Biology and Biocalorimetry Center, The Johns Hopkins University, Baltimore, MD 21218, USA.
J Mol Biol. 1997 Mar 14;266(5):1050-62. doi: 10.1006/jmbi.1996.0785.
Calmodulin is a small protein involved in the regulation of a wide variety of intracellular processes. The cooperative binding of Ca2+ to calmodulin's two Ca2+ binding domains induces conformational changes which allow calmodulin to activate specific target enzymes. The association of calmodulin with a peptide corresponding to the calmodulin binding site of rabbit smooth muscle myosin light chain kinase (smMLCKp) was studied using isothermal titration microcalorimetry. The dependence of the binding energetics on temperature, pH, Ca2+ concentration, and NaCl concentration were determined. It is found that the binding of calmodulin to smMLCKp proceeds with negative changes in enthalpy (deltaH), heat capacity (deltaCp), and entropy (deltaS) near room temperature, indicating that it is an enthalpically driven process that is entropically unfavorable. From these results it is concluded that the hydrophobic effect, an entropic effect which favors the removal of non-polar protein groups from water, is not a major driving force in calmodulin-smMLCKp recognition. Although a large number of non-polar side-chains are buried upon binding, these stabilize the complex primarily by forming tightly packed van der Waals interactions with one another. Binding at acidic pH was studied in order to assess the contribution of electrostatic interactions to binding. It is found that moving to acidic pH results in a large decrease in the Gibbs free energy of binding but no change in the enthalpy, indicating that electrostatic interactions contribute only entropically to the binding energetics. The accessible surface area and atomic packing density of the calmodulin-smMLCKp crystal structure are analyzed, and the results discussed in relation to the experimental data.
钙调蛋白是一种参与多种细胞内过程调节的小蛋白质。Ca2+与钙调蛋白的两个Ca2+结合结构域的协同结合会诱导构象变化,从而使钙调蛋白能够激活特定的靶酶。使用等温滴定量热法研究了钙调蛋白与对应于兔平滑肌肌球蛋白轻链激酶(smMLCKp)的钙调蛋白结合位点的肽之间的结合。确定了结合能量对温度、pH值、Ca2+浓度和NaCl浓度的依赖性。发现在室温附近,钙调蛋白与smMLCKp的结合过程中,焓(ΔH)、热容(ΔCp)和熵(ΔS)均发生负变化,表明这是一个由焓驱动的过程,在熵方面不利。从这些结果可以得出结论,疏水效应,即一种有利于将非极性蛋白质基团从水中去除的熵效应,不是钙调蛋白与smMLCKp识别的主要驱动力。尽管大量非极性侧链在结合时被掩埋,但它们主要通过彼此形成紧密堆积的范德华相互作用来稳定复合物。研究了在酸性pH下的结合情况,以评估静电相互作用对结合的贡献。发现向酸性pH转变会导致结合的吉布斯自由能大幅降低,但焓没有变化,表明静电相互作用仅在熵方面对结合能量有贡献。分析了钙调蛋白与smMLCKp晶体结构的可及表面积和原子堆积密度,并结合实验数据讨论了结果。