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如何改善天然状态:α-乳白蛋白表面静电性质的研究

How to improve nature: study of the electrostatic properties of the surface of alpha-lactalbumin.

作者信息

Permyakov Serge E, Makhatadze George I, Owenius Rikard, Uversky Vladimir N, Brooks Charles L, Permyakov Eugene A, Berliner Lawrence J

机构信息

Institute for Biological Instrumentation, Russian Academy of Sciences, Pushchino, Moscow Region, Russia.

出版信息

Protein Eng Des Sel. 2005 Sep;18(9):425-33. doi: 10.1093/protein/gzi051. Epub 2005 Aug 10.

Abstract

It was recently shown that alpha-lactalbumin interacts with histones and simple models of histone proteins such as positively charged polyamino acids, suggesting that some fundamental aspects of the protein surface electrostatics may come into play. In the present work, the energies of charge-charge interaction in apo- and Ca(2+)-loaded alpha-lactalbumin were calculated using a Tanford-Kirkwood algorithm with either solvent accessibility correction or using a finite difference Poisson-Boltzmann method. The analysis revealed two major regions of alpha-lactalbumin that possessed highly unfavorable electrostatic potentials: (a) the Ca(2+)-binding loop and its neighboring residues and (b) the N-terminal region of the protein. Several individual mutants were prepared to neutralize specific individual surface acidic amino acids at both the N-terminus and Ca(2+)-binding loop of bovine alpha-lactalbumin. These mutants were characterized by intrinsic fluorescence, differential scanning microcalorimetry and circular dichroism. The structural and thermodynamic data agree in every case with the theoretical predictions, confirming that the N-terminal region is very sensitive to changes in charge. For example, desMet D14N mutation destabilizes protein and decreases its calcium affinity. On the other hand, desMet E1M and desMet D37N substitutions increase the thermal stability and calcium affinity. The Met E1Q is characterized by a marked increase in protein stability, whereas desMet E7Q and desMet E11L display a slight increase in calcium affinity and thermal stability. Examination of the unfavorable energy contributed by Glu1 and the energetically favorable consequences of neutralizing this residue suggests that nature may have made an error with bovine alpha-lactalbumin from the viewpoint of stabilizing structure and conformation.

摘要

最近的研究表明,α-乳白蛋白与组蛋白以及组蛋白蛋白质的简单模型(如带正电荷的多氨基酸)相互作用,这表明蛋白质表面静电的一些基本方面可能发挥了作用。在本研究中,使用带有溶剂可及性校正的Tanford-Kirkwood算法或有限差分泊松-玻尔兹曼方法计算了脱辅基和Ca(2+)负载的α-乳白蛋白中电荷-电荷相互作用的能量。分析揭示了α-乳白蛋白的两个主要区域,其具有高度不利的静电势:(a) Ca(2+)结合环及其相邻残基;(b) 蛋白质的N端区域。制备了几个单个突变体,以中和牛α-乳白蛋白N端和Ca(2+)结合环处特定的单个表面酸性氨基酸。这些突变体通过内在荧光、差示扫描量热法和圆二色性进行表征。在每种情况下,结构和热力学数据都与理论预测一致,证实N端区域对电荷变化非常敏感。例如,desMet D14N突变使蛋白质不稳定并降低其钙亲和力。另一方面,desMet E1M和desMet D37N取代增加了热稳定性和钙亲和力。Met E1Q的特征是蛋白质稳定性显著增加,而desMet E7Q和desMet E11L显示钙亲和力和热稳定性略有增加。对Glu1贡献的不利能量以及中和该残基的能量有利后果的研究表明,从稳定结构和构象的角度来看,自然界可能在牛α-乳白蛋白上犯了一个错误。

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