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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Hofmeister Ion-Induced Changes in Water Structure Correlate with Changes in Solvation of an Aggregated Protein Complex
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Hofmeister Ion-Induced Changes in Water Structure Correlate with Changes in Solvation of an Aggregated Protein Complex

机译:Hofmeister离子诱导的水结构变化与聚集蛋白复合物的溶剂化变化相关

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摘要

RecA is a naturally aggregating Escherichia coli protein that catalyzes the strand exchange reaction utilized in DNA repair. Previous studies have shown that the presence of salts influence RecA activity, aggregation, and stability and that salts stabilize RecA. in an inverse-anionic Hofmeister series. Here we utilized attenuated total reflectance Fourier transform infrared (ATR-FTIR) spectroscopy and circular dichroism (CD) to investigate how various Hofmeister salts alter the water structure and RecA solvation and aggregation. Spectroscopic studies performed in water and deuterium oxide suggest that salts alter water O-H-1 and O-H-2 stretch and bend vibrations as well as protein amide I (or I') and amide II (or II') vibrations. Anions have a much larger influence on water vibrations than cations. Water studies also show increased water water and/or water ion interactions in the presence of strongly hydrated SO42- salts and evidence for decreased interactions with weakly hydrated Cl- and ClO4- salts. Salt-water difference infrared spectra show that kosmotropic salts are more hydrated than chaotropic salts. Interestingly, this is the opposite trend to the changes in protein solvation. Infrared spectra of RecA show that vibrations associated with protein desolvation were observed in the presence of SO42- salts. Conversely, vibrations associated with protein solvation were observed in the presence of Cl- and ClO4- salts. Difference infrared studies on the dehydration of model proteins aided in identifying changes in RecA solvent interactions. This study provides evidence that salt-induced changes in water vibrations correlate to changes in protein solvent interactions and thermal stability.
机译:RecA是一种天然聚集的大肠杆菌蛋白,可催化DNA修复中使用的链交换反应。以前的研究表明,盐的存在会影响RecA的活性,聚集和稳定性,并且盐会稳定RecA。呈反阴离子的Hofmeister系列。在这里,我们利用衰减的全反射傅立叶变换红外(ATR-FTIR)光谱和圆二色性(CD)来研究各种霍夫迈斯特盐如何改变水结构以及RecA的溶剂化和聚集作用。在水和氧化氘中进行的光谱研究表明,盐会改变水O-H-1和O-H-2的拉伸和弯曲振动以及蛋白质酰胺I(或I')和酰胺II(或II')的振动。阴离子对水振动的影响远大于阳离子。水研究还显示,在强烈水合的SO42-盐存在下,水与水和/或水离子的相互作用增加,并且与弱水合的Cl-和ClO4-盐相互作用减少的证据。盐水差异红外光谱表明,同调盐比离液盐的水合程度更高。有趣的是,这是与蛋白质溶剂化变化相反的趋势。 RecA的红外光谱表明,在SO42-盐存在下观察到了与蛋白质去溶剂化相关的振动。相反,在Cl-和ClO4-盐的存在下观察到了与蛋白质溶解相关的振动。模型蛋白脱水的差异红外研究有助于鉴定RecA溶剂相互作用的变化。这项研究提供了证据,表明盐引起的水振动变化与蛋白质溶剂相互作用和热稳定性的变化有关。

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