Halogen Bonding as a Molecular Recognition Strategy for Genetic Code Expansion
Surendar R. Jakka, Sandhya Jaiswal, Kishorkumar M. Reddy, Radhika Agarwal, Sagar Kumar, Govindasamy MugeshABSTRACT
Aminoacyl‐tRNA synthetases (aaRSs) catalyze the attachment of amino acids (AAs) to their cognate tRNAs during protein synthesis. As aaRSs possess highly selective amino acid‐binding sites, a distinct enzyme is generally required for each amino acid in the genetic code. Recently, genetic code expansion (GCE) has emerged as a powerful strategy for incorporating non‐canonical amino acids (ncAAs) during ribosomal translation, enabling the production of proteins with novel structures and functions. In this study, we propose that aaRSs can recognize halogenated ncAAs through halogen bonding (XB), and that the stronger XB‐forming ability of iodine, compared with chlorine or bromine, enables the selective incorporation of 3,5‐diiodo‐