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树枝状聚合物连接的抗冻蛋白具有卓越的活性和热恢复能力。

Dendrimer-Linked Antifreeze Proteins Have Superior Activity and Thermal Recovery.

作者信息

Stevens Corey A, Drori Ran, Zalis Shiran, Braslavsky Ido, Davies Peter L

机构信息

Department of Biomedical and Molecular Sciences, Queen's University , Kingston, Ontario K7L 3N6, Canada.

Institute of Biochemistry, Food Science and Nutrition, The Robert H. Smith Faculty of Agriculture, Food and Environment, The Hebrew University of Jerusalem , Rehovot 7610001, Israel.

出版信息

Bioconjug Chem. 2015 Sep 16;26(9):1908-15. doi: 10.1021/acs.bioconjchem.5b00290. Epub 2015 Aug 20.

Abstract

By binding to ice, antifreeze proteins (AFPs) depress the freezing point of a solution and inhibit ice recrystallization if freezing does occur. Previous work showed that the activity of an AFP was incrementally increased by fusing it to another protein. Even larger increases in activity were achieved by doubling the number of ice-binding sites by dimerization. Here, we have combined the two strategies by linking multiple outward-facing AFPs to a dendrimer to significantly increase both the size of the molecule and the number of ice-binding sites. Using a heterobifunctional cross-linker, we attached between 6 and 11 type III AFPs to a second-generation polyamidoamine (G2-PAMAM) dendrimer with 16 reactive termini. This heterogeneous sample of dendrimer-linked type III constructs showed a greater than 4-fold increase in freezing point depression over that of monomeric type III AFP. This multimerized AFP was particularly effective at ice recrystallization inhibition activity, likely because it can simultaneously bind multiple ice surfaces. Additionally, attachment to the dendrimer has afforded the AFP superior recovery from heat denaturation. Linking AFPs together via polymers can generate novel reagents for controlling ice growth and recrystallization.

摘要

通过与冰结合,抗冻蛋白(AFP)可降低溶液的冰点,并在确实发生冻结时抑制冰的重结晶。先前的研究表明,将AFP与另一种蛋白质融合会使其活性逐渐增加。通过二聚化使冰结合位点数量加倍,活性甚至有更大的提高。在这里,我们通过将多个向外的AFP连接到树枝状聚合物上,结合了这两种策略,从而显著增加了分子的大小和冰结合位点的数量。我们使用异双功能交联剂,将6至11个III型AFP连接到具有16个反应性末端的第二代聚酰胺胺(G2-PAMAM)树枝状聚合物上。这种树枝状聚合物连接的III型构建体的异质样品在冰点降低方面比单体III型AFP高出4倍以上。这种多聚化的AFP在抑制冰重结晶活性方面特别有效,可能是因为它可以同时结合多个冰表面。此外,连接到树枝状聚合物上使AFP从热变性中恢复的能力更强。通过聚合物将AFP连接在一起可以产生用于控制冰生长和重结晶的新型试剂。

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