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Identification of Escherichia coli outer membrane protein A receptor on human brain microvascular endothelial cells
1Division of Infectious Diseases, Childrens Hospital Los Angeles, and Keck School of Medicine, University of Southern California, Los Angeles 90027, USA. pnemani@chla.usc.edu
Abstract:
Neonatal Escherichia coli meningitis continues to be a diagnostic and treatment challenge despite the availability of active antibiotics. Our earlier studies have shown that outer membrane protein A (OmpA) is one of the major factors responsible for Escherichia coli traversal across the blood-brain barrier that constitutes a lining of brain microvascular endothelial cells (BMEC). In this study we showed that OmpA binds to a 95-kDa human BMEC (HBMEC) glycoprotein (Ecgp) for E. coli invasion. Ecgp was partially purified by wheat germ agglutinin and Maackia amurensis lectin (MAL) affinity chromatography. The MAL affinity-purified HBMEC proteins bound to OmpA(+) E. coli but not to OmpA(-) E. coli. In addition, the deglycosylated MAL-bound proteins still interact with OmpA(+) E. coli, indicating the role of protein backbone in mediating the OmpA binding to HBMEC. Interestingly, the MAL affinity-bound fraction showed one more protein, a 65-kDa protein that bound to OmpA(+) E. coli in addition to Ecgp. Further, the 65-kDa protein was shown to be a cleavage product of Ecgp. Immunocytochemistry of HBMEC infected with OmpA(+) E. coli by using anti-Ecgp antibody suggests that Ecgp clusters at the E. coli entry site. Anti-Ecgp antibody also reacted to microvascular endothelium on human brain tissue sections, indicating the biological relevance of Ecgp in E. coli meningitis. Partial N-terminal amino acid sequence of Ecgp suggested that it has 87% sequence homology to gp96, an endoplasmic reticulum-resident molecular chaperone that is often expressed on the cell surface. In contrast, the 65-kDa protein, which could be the internal portion of Ecgp, showed 70% sequence homology to an S-fimbria-binding sialoglycoprotein reported earlier. These results suggest that OmpA interacts with Ecgp via the carbohydrate epitope, as well as with the protein portion for invading HBMEC.
Insights
Outer membrane protein A (OmpA) from Escherichia coli binds to human brain microvascular endothelial cell (HBMEC) glycoprotein (Ecgp), facilitating bacterial invasion. This interaction is crucial for E. coli meningitis pathogenesis.
Area of Science:
- Microbiology
- Neuroscience
- Cell Biology
Background:
- Neonatal Escherichia coli meningitis presents diagnostic and therapeutic challenges.
- Outer membrane protein A (OmpA) is implicated in E. coli's crossing of the blood-brain barrier.
- The blood-brain barrier is formed by brain microvascular endothelial cells (BMEC).
Purpose of the Study:
- To investigate the interaction between E. coli OmpA and human BMEC (HBMEC) components.
- To identify specific HBMEC molecules involved in E. coli invasion.
- To elucidate the mechanism of OmpA-mediated bacterial entry into the brain.
Main Methods:
- Wheat germ agglutinin and Maackia amurensis lectin (MAL) affinity chromatography for protein purification.
- Binding assays using OmpA-positive and OmpA-negative E. coli strains.
- Deglycosylation of purified proteins to assess the role of carbohydrate epitopes.
- Immunocytochemistry and Western blotting to detect protein localization and interactions.
- Partial N-terminal amino acid sequencing for protein identification.
Main Results:
- OmpA(+) E. coli binds to a 95-kDa HBMEC glycoprotein (Ecgp).
- Ecgp binding involves both protein and carbohydrate components of Ecgp.
- A 65-kDa cleavage product of Ecgp also binds OmpA(+) E. coli.
- Ecgp localizes to E. coli entry sites on HBMEC and brain endothelium.
- Ecgp shows homology to gp96, a cell surface-expressed chaperone.
Conclusions:
- OmpA-Ecgp interaction is a key mechanism for E. coli invasion of HBMEC.
- Ecgp plays a significant role in the pathogenesis of E. coli meningitis.
- The findings provide a molecular target for therapeutic interventions against E. coli meningitis.