Balakrishnan Anagha, Mishra Saurav K, Georrge John J
Department of Bioinformatics, University of North Bengal, Siliguri, District-Darjeeling, West Bengal 734013, India.
Curr Pharm Des. 2025;31(3):179-202. doi: 10.2174/0113816128349577240927071706.
Protein engineering alters the polypeptide chain to obtain a novel protein with improved functional properties. This field constantly evolves with advanced tools and techniques to design novel proteins and peptides. Rational incorporating mutations, unnatural amino acids, and post-translational modifications increases the applications of engineered proteins and peptides. It aids in developing drugs with maximum efficacy and minimum side effects. Currently, the engineering of peptides is gaining attention due to their high stability, binding specificity, less immunogenic, and reduced toxicity properties. Engineered peptides are potent candidates for drug development due to their high specificity and low cost of production compared with other biologics, including proteins and antibodies. Therefore, understanding the current perception of designing and engineering peptides with the help of currently available tools is crucial. This review extensively studies various tools available for protein engineering in the prospect of designing peptides as therapeutics, followed by aspects. Moreover, a discussion on the chemical synthesis and purification of peptides, a case study, and challenges are also incorporated.
蛋白质工程通过改变多肽链来获得具有改进功能特性的新型蛋白质。随着用于设计新型蛋白质和肽的先进工具和技术的不断发展,该领域也在持续演进。合理引入突变、非天然氨基酸和翻译后修饰增加了工程化蛋白质和肽的应用。它有助于开发疗效最大化且副作用最小化的药物。目前,肽的工程化因其高稳定性、结合特异性、低免疫原性和低毒性特性而受到关注。与包括蛋白质和抗体在内的其他生物制品相比,工程化肽因其高特异性和低成本生产而成为药物开发的有力候选者。因此,借助现有工具了解当前设计和工程化肽的观念至关重要。本综述广泛研究了在设计作为治疗剂的肽的前景下可用于蛋白质工程的各种工具,随后进行了各方面的探讨。此外,还纳入了关于肽的化学合成和纯化、一个案例研究以及挑战的讨论。