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Proc Natl Acad Sci U S A. 1995 May 23;92(11):4748-52. doi: 10.1073/pnas.92.11.4748.
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Electrostatic contributions to the binding of Ca2+ in calbindin mutants. A Monte Carlo study.钙结合蛋白突变体中Ca2+结合的静电作用。一项蒙特卡罗研究。
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Effects of ion binding on the backbone dynamics of calbindin D9k determined by 15N NMR relaxation.通过15N核磁共振弛豫测定离子结合对钙结合蛋白D9k主链动力学的影响。
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Binding of Ca2+ to calbindin D9k: structural stability and function at high salt concentration.钙离子与钙结合蛋白D9k的结合:高盐浓度下的结构稳定性与功能
Biochemistry. 1994 Nov 29;33(47):14170-6. doi: 10.1021/bi00251a028.
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Signal transduction versus buffering activity in Ca(2+)-binding proteins.钙结合蛋白中的信号转导与缓冲活性
Nat Struct Biol. 1994 Apr;1(4):239-45. doi: 10.1038/nsb0494-239.
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On the calculation of electrostatic interactions in proteins.关于蛋白质中静电相互作用的计算
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8
The refined structure of vitamin D-dependent calcium-binding protein from bovine intestine. Molecular details, ion binding, and implications for the structure of other calcium-binding proteins.来自牛小肠的维生素D依赖性钙结合蛋白的精细结构。分子细节、离子结合以及对其他钙结合蛋白结构的影响。
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The role of protein surface charges in ion binding.
Nature. 1988 Oct 13;335(6191):651-2. doi: 10.1038/335651a0.
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Structure of calmodulin refined at 2.2 A resolution.钙调蛋白结构在2.2埃分辨率下得到优化。
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蛋白质浓度对离子结合的影响。

The effect of protein concentration on ion binding.

作者信息

Linse S, Jönsson B, Chazin W J

机构信息

Chemical Center, Lund University, Sweden.

出版信息

Proc Natl Acad Sci U S A. 1995 May 23;92(11):4748-52. doi: 10.1073/pnas.92.11.4748.

DOI:10.1073/pnas.92.11.4748
PMID:7761395
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC41784/
Abstract

The concentration of protein in a solution has been found to have a significant effect on ion binding affinity. It is well known that an increase in ionic strength of the solvent medium by addition of salt modulates the ion-binding affinity of a charged protein due to electrostatic screening. In recent Monte Carlo simulations, a similar screening has been detected to arise from an increase in the concentration of the protein itself. Experimental results are presented here that verify the theoretical predictions; high concentrations of the negatively charged proteins calbindin D9k and calmodulin are found to reduce their affinity for divalent cations. The Ca(2+)-binding constant of the C-terminal site in the Asn-56 --> Ala mutant of calbindin D9k has been measured at seven different protein concentrations ranging from 27 microM to 7.35 mM by using 1H NMR. A 94% reduction in affinity is observed when going from the lowest to the highest protein concentration. For calmodulin, we have measured the average Mg(2+)-binding constant of sites I and II at 0.325, 1.08, and 3.25 mM protein and find a 13-fold difference between the two extremes. Monte Carlo calculations have been performed for the two cases described above to provide a direct comparison of the experimental and simulated effects of protein concentration on metal ion affinities. The overall agreement between theory and experiment is good. The results have important implications for all biological systems involving interactions between charged species.

摘要

已发现溶液中蛋白质的浓度对离子结合亲和力有显著影响。众所周知,通过添加盐来增加溶剂介质的离子强度,会由于静电屏蔽作用而调节带电蛋白质的离子结合亲和力。在最近的蒙特卡罗模拟中,已检测到类似的屏蔽效应是由蛋白质自身浓度的增加引起的。此处给出的实验结果验证了理论预测;发现高浓度的带负电荷蛋白质钙结合蛋白D9k和钙调蛋白会降低它们对二价阳离子的亲和力。通过使用1H NMR,在27 microM至7.35 mM的七种不同蛋白质浓度下,测量了钙结合蛋白D9k的Asn - 56→Ala突变体C末端位点的Ca(2 +)结合常数。从最低到最高蛋白质浓度时,观察到亲和力降低了94%。对于钙调蛋白,我们在0.325、1.08和3.25 mM蛋白质浓度下测量了位点I和II的平均Mg(2 +)结合常数,发现两个极端情况之间相差13倍。已对上述两种情况进行了蒙特卡罗计算,以直接比较蛋白质浓度对金属离子亲和力的实验和模拟效应。理论与实验之间的总体一致性良好。这些结果对所有涉及带电物种之间相互作用的生物系统具有重要意义。