An Efficient Opal‐Suppressor Tryptophanyl Pair Creates New Routes for Simultaneously Incorporating up to Three Distinct Noncanonical Amino Acids into Proteins in Mammalian Cells**

Author:

Osgood Arianna O.1ORCID,Zheng Yunan1,Roy Soumya Jyoti Singha1ORCID,Biris Nikolaos2,Hussain Myer2,Loynd Conor1,Jewel Delilah1,Italia James S.2ORCID,Chatterjee Abhishek1ORCID

Affiliation:

1. Department of Chemistry Boston College 2609 Beacon Street Chestnut Hill MA 02467 USA

2. BrickBio, Inc. 600 Winter St Waltham MA 02451 USA

Abstract

AbstractSite‐specific incorporation of multiple distinct noncanonical amino acids (ncAAs) into proteins in mammalian cells is a promising technology, where each ncAA must be assigned to a different orthogonal aminoacyl‐tRNA synthetase (aaRS)/tRNA pair that reads a distinct nonsense codon. Available pairs suppress TGA or TAA codons at a considerably lower efficiency than TAG, limiting the scope of this technology. Here we show that the E. coli tryptophanyl (EcTrp) pair is an excellent TGA‐suppressor in mammalian cells, which can be combined with the three other established pairs to develop three new routes for dual‐ncAA incorporation. Using these platforms, we site‐specifically incorporated two different bioconjugation handles into an antibody with excellent efficiency, and subsequently labeled it with two distinct cytotoxic payloads. Additionally, we combined the EcTrp pair with other pairs to site‐specifically incorporate three distinct ncAAs into a reporter protein in mammalian cells.

Funder

National Institute of General Medical Sciences

Publisher

Wiley

Subject

General Medicine

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