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Site-specific labeling of an anti-MUC1 antibody: probing the effects of conjugation and linker chemistry on the internalization process

RSC Adv. 2019; 
Hongjiao Xu‡ , Lu Gan‡ , Ying Han , Yifan Da , Jiale Xiong , Sihua Hong , Qian Zhao , Nazi Song , Xiaoqing Cai * and Xianxing Jiang
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Peptide Synthesis The expression plasmids of SM3 with a 15-amino-acid,31 flexible glycine-rich linker introduced in between the variable regions VL and VH was synthesized and codon optimized by Genscript (Nanjing, China) for its expression in E. coli. With the purpose of purification and site-specific modification by sortagging, an LPETG pentapeptide recognition motif and a His6-tag and were attached at the C-terminus of the DNA frames. The cloning plasmid (pUC57-SM3) was digested with NdeI and XhoI and cloned into pET29b (Invitrogen) to generate the expression plasmid pET29b-SM3. Get A Quote

摘要

Antibody-drug conjugates (ADCs) have recently received enormous attention as an attractive approach for cancer therapy. Although ADC design has been believed to be important for the relative efficacy of ADCs, it remains unexplored how the structural characteristics of ADCs would impact the internalization process and intracellular trafficking of the molecules. Herein, we report our efforts in investigating the cellular endocytosis implications of the conjugation and linker chemistry in designing antibody-based agents. A series of anti-MUC1 single-chain variable fragment (scFv-SM3) conjugates were designed with unique structural characteristics ranging from conjugation methods, sites of attachment and linker che... More

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