Yu Guoxia, Zou Shijun, Zheng Ji-Shen
Department of Hematology, The First Affiliated Hospital of USTC, Hefei National Research Center for Interdisciplinary Sciences at the Microscale, Center for Advanced Interdisciplinary Science and Biomedicine of IHM, Division of Life Sciences and Medicine, University of Science and Technology of China, Hefei, Anhui, 230001, China.
Chembiochem. 2024 Dec 16;25(24):e202400674. doi: 10.1002/cbic.202400674. Epub 2024 Nov 6.
Disulfide-bonded peptides and proteins, including hormones, toxins, growth factors, and others, are abundant in living organisms. These molecules play crucial physiological roles such as regulating cell and organism growth, development, and metabolism. They have also found widespread applications as drugs or tool molecules in biomedical and pharmaceutical research. However, the chemical synthesis of disulfide-bonded proteins is complicated by the challenges associated with their folding. This review focuses on the latest advancements in disulfide-bonded peptide and protein folding technologies. Particularly, it highlights biomimetic folding strategies that emulate the naturally occurring oxidative folding processes in nature. These strategies include chaperone-assisted folding, glycosylation-assisted folding, and organic-based oxidative folding methods. The review also anticipates future directions in folding technology. Such research offers innovative approaches for the chemical synthesis of complex proteins that are otherwise difficult to fold.
包括激素、毒素、生长因子等在内的二硫键连接的肽和蛋白质在生物体内大量存在。这些分子发挥着关键的生理作用,如调节细胞和生物体的生长、发育及新陈代谢。它们还作为药物或工具分子在生物医学和制药研究中得到了广泛应用。然而,二硫键连接的蛋白质的化学合成因其折叠相关的挑战而变得复杂。本综述聚焦于二硫键连接的肽和蛋白质折叠技术的最新进展。特别地,它突出了模拟自然界中天然发生的氧化折叠过程的仿生折叠策略。这些策略包括伴侣蛋白辅助折叠、糖基化辅助折叠和基于有机的氧化折叠方法。该综述还展望了折叠技术的未来方向。此类研究为原本难以折叠的复杂蛋白质的化学合成提供了创新方法。