Adhikari Anup, Bhattarai Bibek Raj, Aryal Ashika, Thapa Niru, Kc Puja, Adhikari Ashma, Maharjan Sushila, Chanda Prem B, Regmi Bishnu P, Parajuli Niranjan
Biological Chemistry Lab, Central Department of Chemistry, Tribhuvan University Kritipur 44618 Kathmandu Nepal
Department of Chemistry, Birendra Multiple Campus, Tribhuvan University Bharatpur Chitwan Nepal.
RSC Adv. 2021 Nov 26;11(60):38126-38145. doi: 10.1039/d1ra07028b. eCollection 2021 Nov 23.
Unnatural amino acids have gained significant attention in protein engineering and drug discovery as they allow the evolution of proteins with enhanced stability and activity. The incorporation of unnatural amino acids into proteins offers a rational approach to engineer enzymes for designing efficient biocatalysts that exhibit versatile physicochemical properties and biological functions. This review highlights the biological and synthetic routes of unnatural amino acids to yield a modified protein with altered functionality and their incorporation methods. Unnatural amino acids offer a wide array of applications such as antibody-drug conjugates, probes for change in protein conformation and structure-activity relationships, peptide-based imaging, antimicrobial activities, Besides their emerging applications in fundamental and applied science, systemic research is necessary to explore unnatural amino acids with novel side chains that can address the limitations of natural amino acids.
非天然氨基酸在蛋白质工程和药物发现领域已备受关注,因为它们能够使蛋白质进化出更高的稳定性和活性。将非天然氨基酸掺入蛋白质中为设计具有多种物理化学性质和生物学功能的高效生物催化剂的酶工程提供了一种合理的方法。本文综述了非天然氨基酸产生具有改变功能的修饰蛋白质的生物学和合成途径及其掺入方法。非天然氨基酸具有广泛的应用,如抗体-药物偶联物、蛋白质构象变化和构效关系的探针、基于肽的成像、抗菌活性等。除了在基础科学和应用科学中的新兴应用外,还需要进行系统研究,以探索具有新型侧链的非天然氨基酸,从而克服天然氨基酸的局限性。