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Engineered binding to erythrocytes induces immunological tolerance to E. coli asparaginase.

Sci Adv. 2015; 
Lorentz KM, Kontos S, Diaceri G, Henry H, Hubbell JA.
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Peptide Synthesis 2015;1:e1500112 17 July 2015 8 of 10 R E S E A R C H A R T I C L E (GenScript) to result in conjugation of the ERY1 peptide to the lysine residues of ASNase: the underlined sequence is the 12-residue erythrocyte- binding domain, GGSG serves as a linker to the sulfhydryl of the cys- teine residue used for conjugation (bold), and the flanking arginine residue serves to lower the pKa and thus increase the reactivity of the sulfhydryl group (35). Get A Quote

摘要

Antigen-specific immune responses to protein drugs can hinder efficacy and compromise safety because of drug neutralization and secondary clinical complications. We report a tolerance induction strategy to prevent antigen-specific humoral immune responses to therapeutic proteins. Our modular, biomolecular approach involves engineering tolerizing variants of proteins such that they bind erythrocytes in vivo upon injection, on the basis of the premise that aged erythrocytes and the payloads they carry are cleared tolerogenically, driving the deletion of antigen-specific T cells. We demonstrate that binding the clinical therapeutic enzyme Escherichia coli l-asparaginase to erythrocytes in situ antigen-specifically... More

关键词

Immunological tolerance; asparaginase; erythrocyte; protein drug