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钙与钙调蛋白的结合:离子强度、镁离子、pH值及温度的影响

Calcium binding to calmodulin: effects of ionic strength, Mg2+, pH and temperature.

作者信息

Ogawa Y, Tanokura M

出版信息

J Biochem. 1984 Jan;95(1):19-28. doi: 10.1093/oxfordjournals.jbchem.a134584.

Abstract

To deepen our understanding of Ca2+-activation in calmodulin-dependent reactions, the properties of Ca binding to calmodulin were examined by dual-wavelength spectrophotometry using a Ca indicator, tetramethylmurexide. The Scatchard plot for Ca binding to calmodulin was linear, indicating the occurrence of homogeneous independent binding sites. The apparent binding constant of calmodulin for Ca2+ (K) was (1.96 +/- 0.05) X 10(5) M-1 (20), and the number of binding sites (n) was 3.36 +/- 0.04 (20) mol/mol in reaction medium containing 100 mM KCl, 20 mM MOPS-KOH (pH 6.80), and 0.12 mM tetramethylmurexide at 20 degrees C. K was strongly dependent on the concentration of KCl, while n was independent of it. On the assumption that this is due to the effect of ionic strength (I), K may be described as follows: log K = 6.73-3.2 [2 square root I/(1 + square root I)-0.4 X I] (0.006 less than or equal to I less than or equal to 0.256, pH 6.80, at 20 degrees C). Mg2+ decreased K, which could be expressed as K/(1 + 130 [Mg] ) ( [Mg] in mol (M) ) at the ionic strength of 0.106, pH 6.80 at 20 degrees C. n was also decreased in the presence of Mg2+. This suggests that Mg2+ may have effects other than simple competition. The pH of the medium affected K or n very little at around neutral pH. This may correspond to the fact that calmodulin is an acidic protein with pI congruent to 4.3. K or n was only slightly dependent on the temperature. This corresponds to the calorimetric result that the enthalpy change on Ca binding was very slight and endothermic. Based on these findings, much of the discrepancy among the results already reported on Ca-binding can be explained. Activation of a calmodulin-dependent reaction is discussed on the basis of Ca binding to calmodulin under physiological conditions.

摘要

为了加深我们对钙调蛋白依赖性反应中钙离子激活作用的理解,我们使用钙指示剂四甲基紫脲酸,通过双波长分光光度法研究了钙离子与钙调蛋白结合的特性。钙离子与钙调蛋白结合的Scatchard图呈线性,表明存在均匀独立的结合位点。在含有100 mM氯化钾、20 mM MOPS - 氢氧化钾(pH 6.80)和0.12 mM四甲基紫脲酸的反应介质中,20℃时钙调蛋白对钙离子的表观结合常数(K)为(1.96 ± 0.05)×10⁵ M⁻¹(n = 20),结合位点数(n)为3.36 ± 0.04(n = 20)mol/mol。K强烈依赖于氯化钾的浓度,而n与之无关。假设这是由于离子强度(I)的影响,K可以描述如下:log K = 6.73 - 3.2 [2√I/(1 + √I) - 0.4×I](0.006 ≤ I ≤ 0.256,pH 6.80,20℃)。镁离子降低了K,在离子强度为0.106、pH 6.80、20℃时,其关系可以表示为K/(1 + 130[Mg])([Mg]的单位为mol/L)。在镁离子存在的情况下,n也降低了。这表明镁离子可能具有除简单竞争之外的其他作用。在中性pH附近,介质的pH对K或n的影响很小。这可能与钙调蛋白是一种pI约为4.3的酸性蛋白质这一事实相对应。K或n仅略微依赖于温度。这与量热结果一致,即钙离子结合时的焓变非常小且为吸热过程。基于这些发现,可以解释已报道的关于钙离子结合结果之间的许多差异。在生理条件下,基于钙离子与钙调蛋白的结合情况,对钙调蛋白依赖性反应的激活进行了讨论。

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