Deleray Anna C, Saini Simranpreet S, Wallberg Alexander C, Kramer Jessica R
Department of Biomedical Engineering, University of Utah, Salt Lake City, Utah 84112, United States.
Chem Mater. 2024 Apr 9;36(7):3424-3434. doi: 10.1021/acs.chemmater.4c00266. Epub 2024 Mar 25.
Antifreeze glycoproteins (AFGPs) are produced by extremophiles to defend against tissue damage in freezing climates. Cumbersome isolation from polar fish has limited probing AFGP molecular mechanisms of action and limited development of bioinspired cryoprotectants for application in agriculture, foods, coatings, and biomedicine. Here, we present a rapid, scalable, and tunable route to synthetic AFGPs (sAFGPs) using -carboxyanhydride polymerization. Our materials are the first mimics to harness the molecular size, chemical motifs, and long-range conformation of native AFGPs. We found that ice-binding activity increases with chain length, Ala is a key residue, and the native protein sequence is not required. The glycan structure had only minor effects, and all glycans examined displayed antifreeze activity. The sAFGPs are biodegradable, nontoxic, internalized into endocytosing cells, and bystanders in cryopreservation of human red blood cells. Overall, our sAFGPs functioned as surrogates for bona fide AFGPs, solving a long-standing challenge in accessing natural antifreeze materials.
抗冻糖蛋白(AFGPs)由嗜极生物产生,用于在寒冷气候中抵御组织损伤。从极地鱼类中繁琐的分离过程限制了对AFGP作用分子机制的探究,也限制了用于农业、食品、涂料和生物医学的仿生冷冻保护剂的开发。在此,我们展示了一种使用α-羧基酸酐聚合制备合成抗冻糖蛋白(sAFGPs)的快速、可扩展且可调谐的方法。我们的材料是首批模拟天然AFGPs分子大小、化学基序和长程构象的物质。我们发现,冰结合活性随链长增加,丙氨酸是关键残基,且不需要天然蛋白质序列。聚糖结构影响较小,所有检测的聚糖均显示出抗冻活性。sAFGPs可生物降解、无毒,可被内吞细胞摄取,并在人红细胞冷冻保存中起到旁效应作用。总体而言,我们的sAFGPs可作为真正AFGPs的替代品,解决了获取天然抗冻材料这一长期存在的难题。