Department of Medicinal Chemistry, National Institute of Pharmaceutical Education and Research, Nagar, Punjab, India.
Med Res Rev. 2023 Jul;43(4):775-828. doi: 10.1002/med.21936. Epub 2023 Jan 29.
Modified and synthetic α-amino acids are known to show diverse applications. Histidine, which possesses numerous applications when subjected to synthetic modifications, is one such amino acid. The utility of modified histidines varies widely from remarkable biological activities to catalysis, and from nanotechnology to polymer chemistry. This renders histidine residue an important place in scientific research. Histidine is a well-studied scaffold and constitutes the active site of various enzymes catalyzing important reactions in the biological systems. A rational modification in histidine structure with a distinctly developed protocol extensively changes its physical and chemical properties. The utilization of modified histidines in search of potent, target selective and proteostable scaffolds is vital in the development of bioactive peptides with enhanced drug-likeliness. This review is a compilation and analysis of reported side-chain ring modifications at histidine followed by applications of ring-modified histidines in the synthesis of various categories of bioactive peptides and peptidomimetics.
经修饰和合成的α-氨基酸具有多种应用。组氨酸经过合成修饰后具有许多应用,就是这样一种氨基酸。修饰组氨酸的用途非常广泛,从显著的生物活性到催化,从纳米技术到聚合物化学。这使得组氨酸残基在科学研究中占有重要地位。组氨酸是一种研究充分的支架,构成了各种酶的活性部位,这些酶催化生物系统中重要的反应。通过明确开发的方案对组氨酸结构进行合理修饰,会极大地改变其物理和化学性质。在寻找具有强大、靶标选择性和保护稳定性的支架的过程中,修饰组氨酸的利用对于开发具有增强药物相似性的生物活性肽至关重要。本文综述了报道的组氨酸侧链环修饰,并分析了环修饰组氨酸在各种生物活性肽和类肽合成中的应用。