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Oral delivery of therapeutic proteins by engineered bacterial type zero secretion system

Nat Commun. 2025-02; 
Xu Gong , Shan Liu , Bozhang Xia , Yichen Wan , Shuyi Zhang , Baoyan Zhang , Zehao Wang , Junge Chen , Fei Xiao , Xing-Jie Liang , Yun Yang
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Gene Synthesis Heterologous genes, namely, uox from C. utilis (UniProt Entry P78609), hlyBD-hlyA from E. coli J9635, stlA from P. luminescens TT0147, and lox from A. viridans (UniProt Entry Q44467), were codon optimized, synthesized and cloned and inserted into the pYYD plasmid48 under the anaerobic promoter by GenScript (Nanjing, China). Get A Quote

Abstract

Genetically engineered commensal bacteria are promising living drugs, however, their therapeutic molecules are frequently confined to their colonization sites. Herein, we report an oral protein delivery technology utilizing an engineered bacterial type zero secretion system (T0SS) via outer membrane vesicles (OMVs). We find that OMVs produced in situ by Escherichia coli Nissle 1917 (EcN) can penetrate the intact gut epithelial barrier to enter the circulation and that epithelial transcytosis involves pinocytosis and dynamin-dependent pathways. EcN is engineered to endogenously load various enzymes into OMVs, and the secreted enzyme-loaded OMVs are able to stably catalyze diverse detoxification reactions against... More

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