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Alpha hemolysin of E. coli induces hemolysis of human erythrocytes independently of toxin interaction with membrane proteins.

Authors :
Cané, Lucía
Saffioti, Nicolás Andrés
Genetet, Sandrine
Daza Millone, María Antonieta
Ostuni, Mariano A.
Schwarzbaum, Pablo J.
Mouro-Chanteloup, Isabelle
Herlax, Vanesa
Source :
Biochimie. Jan2024, Vol. 216, p3-13. 11p.
Publication Year :
2024

Abstract

Alpha hemolysin (HlyA) is a hemolytic and cytotoxic protein secreted by uropathogenic strains of E. coli. The role of glycophorins (GPs) as putative receptors for HlyA binding to red blood cells (RBCs) has been debated. Experiments using anti -GPA/GPB antibodies and a GPA-specific epitope nanobody to block HlyA-GP binding on hRBCs, showed no effect on hemolytic activity. Similarly, the hemolysis induced by HlyA remained unaffected when hRBCs from a GPAnull/GPBnull variant were used. Surface Plasmon Resonance experiments revealed similar values of the dissociation constant between GPA and either HlyA, ProHlyA (inactive protoxin), HlyAΔ914-936 (mutant of HlyA lacking the binding domain to GPA) or human serum albumin, indicating that the binding between the proteins and GPA is not specific. Although far Western blot followed by mass spectroscopy analyses suggested that HlyA interacts with Band 3 and spectrins, hemolytic experiments on spectrin-depleted hRBCs and spherocytes, indicated these proteins do not mediate the hemolytic process. Our results unequivocally demonstrate that neither glycophorins, nor Band 3 and spectrins mediate the cytotoxic activity of HlyA on hRBCs, thereby challenging the HlyA-receptor hypothesis. This finding holds significant relevance for the design of anti-toxin therapeutic strategies, particularly in light of the growing antibiotic resistance exhibited by bacteria. [Display omitted] • Anti- GPA, anti GPA-GPB and nanoantibody iH4 do not affect HlyA hemolytic activity. • GPAnull/GPBnull RBCs are as sensitive to HlyA as control RBCs. • The K D values between GP proteins and HlyA, HlyA Δ914–936 and ProHlyA are similar. • Band 3 is not involved in the lytic mechanism of HlyA. • HlyA binds in the same extent to control and spectrin-depleted ghosts. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03009084
Volume :
216
Database :
Academic Search Index
Journal :
Biochimie
Publication Type :
Academic Journal
Accession number :
174471640
Full Text :
https://doi.org/10.1016/j.biochi.2023.10.008