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钙离子与钙结合蛋白D9k的结合强烈影响主链动力学:使用1H核磁共振测量单个酰胺质子的交换率。

Ca2+ binding to calbindin D9k strongly affects backbone dynamics: measurements of exchange rates of individual amide protons using 1H NMR.

作者信息

Linse S, Teleman O, Drakenberg T

机构信息

Chemical Centre, Lund University, Sweden.

出版信息

Biochemistry. 1990 Jun 26;29(25):5925-34. doi: 10.1021/bi00477a007.

Abstract

One- and two-dimensional 1H NMR have been used to study the backbone dynamics in Ca2(+)-free (apo) and Ca2(+)-loaded (Ca2) calbindin D9k at pH 7.5 and 25 degrees C. Hydrogen exchange rates of all 71 backbone amide protons (NH's) have been measured for the Ca2 form by both a direct exchange-out experiment and another experiment that measures the transfer of saturation from water protons to amide protons. A large number of NH's are found to be highly protected against exchange with solvent protons. The results for the Ca2 form are related to solvent accessibility and hydrogen bonding obtained in molecular dynamics simulations of calcium-loaded calbindin. The correlation with these parameters is strong within the N-terminal half of calbindin, which is found to be more stable than the C-terminal half. The amide proton exchange in the apo form is much faster than in the Ca2 form and was studied in a series of experiments in which the exchange was quenched after different times by Ca2+ addition. This experiment is applicable to all amide hydrogens that exchange slowly in the Ca2 form. For these NH's the effects of Ca2+ removal span from a 10(2)-fold decrease to a 10(5)-fold increase of the exchange rate, and the average is a 220-fold increase. The effects on individual NH exchange rates show that the four alpha-helices are almost intact after calcium removal and that the changes in dynamics involve not only the Ca2(+)-binding region. Hydrogen bonds involving backbone NH's in the Ca2+ loops appear to be broken or weakened when calbindin releases Ca2+, whereas the beta-sheet between the Ca2+ loops is found to be present in both the Ca2 and apo forms. Large Ca2(+)-induced effects on NH exchange rates were measured for a few residues at alpha-helix ends far from the two Ca2(+)-binding sites. This may be the result of a change in interhelix angles (or the rate of interhelix angle fluctuations) on calcium binding.

摘要

一维和二维¹H NMR已用于研究在pH 7.5和25℃条件下,无Ca²⁺(脱辅基)和负载Ca²⁺(Ca²)的钙结合蛋白D9k的主链动力学。通过直接交换实验和另一个测量饱和从水质子转移到酰胺质子的实验,已测量了Ca²形式的所有71个主链酰胺质子(NH)的氢交换率。发现大量的NH对与溶剂质子的交换具有高度保护作用。Ca²形式的结果与负载钙的钙结合蛋白分子动力学模拟中获得的溶剂可及性和氢键相关。在钙结合蛋白的N端一半内,与这些参数的相关性很强,发现其比C端一半更稳定。脱辅基形式的酰胺质子交换比Ca²形式快得多,并在一系列实验中进行了研究,在这些实验中,通过添加Ca²⁺在不同时间后淬灭交换。该实验适用于在Ca²形式中交换缓慢的所有酰胺氢。对于这些NH,Ca²⁺去除的影响范围从交换率降低10²倍到增加10⁵倍,平均增加220倍。对单个NH交换率的影响表明,去除钙后四个α螺旋几乎完好无损,动力学变化不仅涉及Ca²⁺结合区域。当钙结合蛋白释放Ca²⁺时,Ca²⁺环中涉及主链NH的氢键似乎被破坏或减弱,而Ca²⁺环之间的β折叠在Ca²和脱辅基形式中均存在。对于远离两个Ca²⁺结合位点的α螺旋末端的少数残基,测量到了Ca²⁺对NH交换率的大影响。这可能是钙结合时螺旋间角度(或螺旋间角度波动速率)变化的结果。

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