Javascript must be enabled to continue!
Structural basis for disruption of claudin assembly in tight junctions by an enterotoxin
View through CrossRef
AbstractThe food-poisoning bacterium Clostridium perfringens produces an enterotoxin (~35 kDa) that specifically targets human claudin-4, among the 26 human claudin proteins, and causes diarrhea by fluid accumulation in the intestinal cavity. The C-terminal domain of the Clostridium perfringens enterotoxin (C-CPE, ~15 kDa) binds tightly to claudin-4, and disrupts the intestinal tight junction barriers. In this study, we determined the 3.5-Å resolution crystal structure of the cell-free synthesized human claudin-4•C-CPE complex, which is significantly different from the structure of the off-target complex of an engineered C-CPE with mouse claudin-19. The claudin-4•C-CPE complex structure demonstrated the mechanism underlying claudin assembly disruption. A comparison of the present C-CPE-bound structure of claudin-4 with the enterotoxin-free claudin-15 structure revealed sophisticated C-CPE-induced conformation changes of the extracellular segments, induced on the foundation of the rigid four-transmembrane-helix bundle structure. These conformation changes provide a mechanistic model for the disruption of the lateral assembly of claudin molecules. Furthermore, the present novel structural mechanism for selecting a specific member of the claudin family can be used as the foundation to develop novel medically important technologies to selectively regulate the tight junctions formed by claudin family members in different organs.
Springer Science and Business Media LLC
Title: Structural basis for disruption of claudin assembly in tight junctions by an enterotoxin
Description:
AbstractThe food-poisoning bacterium Clostridium perfringens produces an enterotoxin (~35 kDa) that specifically targets human claudin-4, among the 26 human claudin proteins, and causes diarrhea by fluid accumulation in the intestinal cavity.
The C-terminal domain of the Clostridium perfringens enterotoxin (C-CPE, ~15 kDa) binds tightly to claudin-4, and disrupts the intestinal tight junction barriers.
In this study, we determined the 3.
5-Å resolution crystal structure of the cell-free synthesized human claudin-4•C-CPE complex, which is significantly different from the structure of the off-target complex of an engineered C-CPE with mouse claudin-19.
The claudin-4•C-CPE complex structure demonstrated the mechanism underlying claudin assembly disruption.
A comparison of the present C-CPE-bound structure of claudin-4 with the enterotoxin-free claudin-15 structure revealed sophisticated C-CPE-induced conformation changes of the extracellular segments, induced on the foundation of the rigid four-transmembrane-helix bundle structure.
These conformation changes provide a mechanistic model for the disruption of the lateral assembly of claudin molecules.
Furthermore, the present novel structural mechanism for selecting a specific member of the claudin family can be used as the foundation to develop novel medically important technologies to selectively regulate the tight junctions formed by claudin family members in different organs.
Related Results
216 HORMONAL REGULATION OF CLAUDIN-4 TIGHT JUNCTION MOLECULE IN MOUSE PLACENTA
216 HORMONAL REGULATION OF CLAUDIN-4 TIGHT JUNCTION MOLECULE IN MOUSE PLACENTA
Tight junctions (TJ) are composed of a branching network of sealing strands. TJ regulate paracellular conductance and ionic selectivity. TJ components include the peripheral protei...
Thermal Stability of Enterotoxins in Food
Thermal Stability of Enterotoxins in Food
Biological and serological properties of staphylococcal enterotoxins exhibit remarkable thermal stability. The slope of the thermal destruction curve (z value) for enterotoxin A or...
PROTON PUMP INHIBITORS (PPI) INDUCES COLONIC TIGHT JUNCTION BARRIER (TJ) DYSFUNCTION VIA AN UPREGULATION OF TJ PORE FORMING CALUDIN-2 PROTEIN
PROTON PUMP INHIBITORS (PPI) INDUCES COLONIC TIGHT JUNCTION BARRIER (TJ) DYSFUNCTION VIA AN UPREGULATION OF TJ PORE FORMING CALUDIN-2 PROTEIN
Abstract
Background
Proton pump inhibitors (PPIs) are highly effective antagonists of gastric acid secretion and are widely used...
Organization of cell junctions in the peritoneal mesothelium
Organization of cell junctions in the peritoneal mesothelium
Intercellular junctions in the mesothelium of the visceral (mesentery and omentum), and parietal (diaphragm, pre-aortic, and iliac region) peritoneum were examined in rats and mice...
Receptor mediated gonadotropin action in the ovary
Receptor mediated gonadotropin action in the ovary
Abstract.
The role of macromolecular synthesis in gonadotrophin, cholera enterotoxin and cAMP stimulated progesterone production by rat ovarian cells has been investigated. Both pr...
Potential Regulatory Effects of Corticotropin-Releasing Factor on Tight Junction-Related Intestinal Epithelial Permeability are Partially Mediated by CK8 Upregulation
Potential Regulatory Effects of Corticotropin-Releasing Factor on Tight Junction-Related Intestinal Epithelial Permeability are Partially Mediated by CK8 Upregulation
Background/Aims: Intestinal permeability and stress have been implicated in the pathophysiology of irritable bowel syndrome (IBS). Cytokeratin 8 (CK8), for the first time, has been...
Prognostic significance of claudin-1 expression in renal cell carcinoma
Prognostic significance of claudin-1 expression in renal cell carcinoma
Purpose
Renal cell carcinoma (RCC) is the most common renal cancer in adults comprising ∼3% of all human malignancies. Claudin-1 is a tight junction protein wid...
Claudin-12 deficiency causes nerve barrier breakdown, mechanical hypersensitivity and painfulness in polyneuropathy
Claudin-12 deficiency causes nerve barrier breakdown, mechanical hypersensitivity and painfulness in polyneuropathy
Abstract
Peripheral nerves and their axons are shielded by the blood-nerve and the myelin barrier, but understanding of how these barriers impact...

