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首页> 外文期刊>Biomacromolecules >Cooperative Function of Ammonium Polyacrylate with Antifreeze Protein Type I
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Cooperative Function of Ammonium Polyacrylate with Antifreeze Protein Type I

机译:聚丙烯酸铵与I型抗冻蛋白的协同作用

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摘要

Activity of antifreeze proteins (AFPs) and antifreeze glycoproteins (AFGPs) is often determined by thermal hysteresis, which is the difference between the melting temperature and the nonequilibrium freezing temperature of ice in AF(G)P solutions. In this study, we confirmed that thermal hysteresis of AFP type I is significantly enhanced by a cooperative function of ammonium polyacrylate (NH4PA). Thermal hysteresis of mixtures of AFP type I and NH4PA was much larger than the sum of each thermal hysteresis of AFP type I and NH4PA alone. In mixed solutions of AFP type I and NH4PA in the thermal hysteresis region, hexagonal pyramidal-shaped pits densely formed on ice surfaces close to the basal planes. The experimental results suggest that the cooperative function of NH4PA with AFP type I was caused either by the increase in adsorption sites of AFP type I on ice or by the adsorption of AFP type I aggregates on ice.
机译:抗冻蛋白(AFP)和抗冻糖蛋白(AFGP)的活性通常由热滞后决定,这是AF(G)P溶液中冰的融化温度和非平衡冻结温度之间的差。在这项研究中,我们证实了AFP类型I的热滞后作用通过聚丙烯酸铵(NH4PA)的协同作用得到了显着增强。 AFP I型和NH4PA混合物的热磁滞远大于AFP I型和NH4PA的每个热磁滞之和。在热滞后区域中,AFP I型和NH4PA的混合溶液中,在靠近基面的冰面上密集地形成了六角形的金字塔形凹坑。实验结果表明,NH4PA与AFP类型I的协同作用是由于AFP类型I在冰上的吸附位点增加或AFP类型聚集体在冰上的吸附所致。

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