Chauhan Preeti, V Ragendu, Kumar Mohan, Molla Rajib, V B Unnikrishnan, Rai Vishal
Department of Chemistry, Indian Institute of Science Education and Research Bhopal, Bhauri, Madhya Pradesh 462066 INDIA.
ACS Cent Sci. 2023 Jan 23;9(2):137-150. doi: 10.1021/acscentsci.2c01455. eCollection 2023 Feb 22.
The chemical toolbox for the selective modification of proteins has witnessed immense interest in the past few years. The rapid growth of biologics and the need for precision therapeutics have fuelled this growth further. However, the broad spectrum of selectivity parameters creates a roadblock to the field's growth. Additionally, bond formation and dissociation are significantly redefined during the translation from small molecules to proteins. Understanding these principles and developing theories to deconvolute the multidimensional attributes could accelerate the area. This outlook presents a istegrate (DIN) theory for systematically isintegrating the selectivity challenges through reversible chemical reactions. An irreversible step concludes the reaction sequence to render an tegrated solution for precise protein bioconjugation. In this perspective, we highlight the key advancements, unsolved challenges, and potential opportunities.
在过去几年中,用于蛋白质选择性修饰的化学工具箱引起了极大的关注。生物制品的快速增长以及对精准治疗的需求进一步推动了这一发展。然而,广泛的选择性参数给该领域的发展带来了障碍。此外,从小分子到蛋白质的转化过程中,键的形成和解离被显著重新定义。理解这些原理并开发理论以解卷积多维属性可以加速该领域的发展。本展望提出了一种通过可逆化学反应系统地整合选择性挑战的整合(DIN)理论。一个不可逆步骤结束反应序列,以提供用于精确蛋白质生物共轭的整合解决方案。从这个角度出发,我们强调了关键进展、未解决的挑战和潜在机会。
需要注意的是,原文中“istegrate”“tegrated”等词可能有误,会影响准确理解,建议检查确认原文准确内容后再进行翻译。