生物正交化学
四嗪
氨基酸
苯丙氨酸
组合化学
叠氮化物
化学
计算生物学
同种类的
蛋白质工程
生物结合
生物化学
生物
点击化学
酶
有机化学
热力学
物理
作者
Yong Wang,Jingming Zhang,Boyang Han,Linzhi Tan,Wenkang Cai,Yuxuan Li,Yeyu Su,Yutong Yu,Xin Wang,Xiaojiang Duan,Haoyu Wang,Xiaomeng Shi,Jing Wang,Xing Yang,Tao Liu
标识
DOI:10.1038/s41467-023-36658-y
摘要
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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