克洛丹
并行传输
产气荚膜梭菌
肠毒素
紧密连接
斑马鱼
生物
细胞生物学
分子生物学
体内
化学
生物化学
磁导率
大肠杆菌
遗传学
生物技术
膜
细菌
基因
作者
Jingjing Zhang,Ni Chen,Zhenguo Yang,Anna Piontek,Huapu Chen,Sijie Wang,Yi‐Ming Fan,Zhihai Qin,Jörg Piontek
摘要
Abstract Claudins (Cldn) are the major components of tight junctions (TJs) sealing the paracellular cleft in tissue barriers of various organs. Zebrafish Cldnb, the homolog of mammalian Cldn4, is expressed at epithelial cell–cell contacts and is important for regulating epidermal permeability. The bacterial toxin Clostridium perfringens enterotoxin ( CPE ) has been shown to bind to a subset of mammalian Cldns. In this study, we used the Cldn‐binding C‐terminal domain of CPE (194–319 amino acids, c CPE 194–319 ) to investigate its functional role in modulating zebrafish larval epidermal barriers. In vitro analyses show that c CPE 194–319 removed Cldn4 from epithelial cells and disrupted the monolayer tightness, which could be rescued by the removal of c CPE 194–319 . Incubation of zebrafish larvae with c CPE 194–319 removed Cldnb specifically from the epidermal cell membrane. Dye diffusion analysis with 4‐kDa fluorescent dextran indicated that the permeability of the epidermal barrier increased due to c CPE 194–319 incubation. Electron microscopic investigation revealed reversible loss of TJ integrity by Cldnb removal. Collectively, these results suggest that c CPE 194–319 could be used as a Cldnb modulator to transiently open the epidermal barrier in zebrafish. In addition, zebrafish might be used as an in vivo system to investigate the capability of c CPE to enhance drug delivery across tissue barriers.
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