Noncanonical amino acids as doubly bio-orthogonal handles for one-pot preparation of protein multiconjugates
Wang Yong, Zhang Jingming, Han Boyang, Tan Linzhi, Cai Wenkang, Li Yuxuan, Su Yeyu, Yu Yutong, Wang Xin, Duan Xiaojiang, Wang Haoyu, Shi Xiaomeng, Wang Jing, Yang Xing, Liu Tao
Journal:Nature Communications
IF:16.6
DOI:10.1038/s41467-023-36658-y
PMID:36810592
Published:2023-02-21
research field:肿瘤学分子靶向治疗药学药物递送生物偶联化学
Abstract
Genetic encoding of noncanonical amino acid (ncAA) for site-specific protein modification has been widely applied for many biological and therapeutic applications. To efficiently prepare homogeneous protein multiconjugates, we design two encodable noncanonical amino acids (ncAAs), 4-(6-(3-azidopropyl)-s-tetrazin-3-yl) phenylalanine (pTAF) and 3-(6-(3-azidopropyl)-s-tetrazin-3-yl) phenylalanine (mTAF), containing mutually orthogonal and bioorthogonal azide and tetrazine reaction handles. Recombinant proteins and antibody fragments containing the TAFs can easily be functionalized in one-pot reactions with combinations of commercially available fluorophores, radioisotopes, PEGs, and drugs in a plug-and-play manner to afford protein dual conjugates to assess combinations of tumor diagnosis, image-guided surgery, and targeted therapy in mouse models. Furthermore, we demonstrate that simultaneously incorporating mTAF and a ketone-containing ncAA into one protein via two non-sense codons allows preparation of a site-specific protein triconjugate. Our results demonstrate that TAFs are doubly bio-orthogonal handles for efficient and scalable preparation of homogeneous protein multiconjugates.
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