Central Nervous System-Infecting Pathogens Escherichia coli and Cryptococcus neoformans Exploit the Host Pdlim2 for
Zhongming Li1, Vincent M Bruno2, Kwang Sik Kim1,3
1Division of Pediatric Infectious Diseases, Johns Hopkins University School of Medicinegrid.471401.7, Baltimore, Maryland, USA.
Abstract:
Microbial penetration of the blood-brain barrier, a prerequisite for the development of central nervous system (CNS) infection, involves microbial invasion, intracellular traversal, and exocytosis. Microbial invasion of the blood-brain barrier has been investigated, but the molecular basis for microbial traversal and exit from the blood-brain barrier remains unknown. We performed transcriptome analysis of human brain microvascular endothelial cells (HBMEC) infected with Escherichia coli and Cryptococcus neoformans, representative bacterial and fungal pathogens common in CNS infections. Among the targets upregulated in response to E. coli and C. neoformans infection, PDLIM2 was knocked down by small hairpin RNA (shRNA) in HBMEC for further investigation. We demonstrated that Pdlim2 specifically regulated microbial traversal and exit from HBMEC by assessing microbial invasion, transcytosis, intracellular multiplication, and egression. Additionally, the defective exocytosis of internalized E. coli cells from the PDLIM2 shRNA knockdown cells was restored by treatment with a calcium ionophore (ionomycin). Moreover, we performed proximity-dependent biotin labeling with the biotin ligase BioID2 and identified 210 potential Pdlim2 interactors. Among the nine Pdlim2 interactors enriched in response to both E. coli and C. neoformans infection, we selected MPRIP and showed that HBMEC with knockdown of MPRIP mimicked the phenotype of PDLIM2 knockdown cells. These results suggest that the CNS-infecting microbes hijack Pdlim2 and Mprip for intracellular traversal and exocytosis in the blood-brain barrier.
Insights
Central nervous system (CNS) infections occur when microbes cross the blood-brain barrier. This study reveals that microbes hijack PDLIM2 and MPRIP proteins to facilitate their traversal and exit from the barrier.
Area of Science:
- Neuroscience
- Microbiology
- Cell Biology
Background:
- Central nervous system (CNS) infections require microbes to penetrate the blood-brain barrier (BBB).
- Mechanisms of microbial traversal and exit across the BBB are not fully understood.
- Escherichia coli and Cryptococcus neoformans are common CNS pathogens.
Purpose of the Study:
- To investigate the molecular mechanisms of microbial traversal and exit from the human brain microvascular endothelial cells (HBMEC) barrier.
- To identify host factors involved in microbial BBB penetration.
Main Methods:
- Transcriptome analysis of HBMEC infected with E. coli and C. neoformans.
- Small hairpin RNA (shRNA) mediated knockdown of PDLIM2 and MPRIP in HBMEC.
- Assessment of microbial invasion, transcytosis, intracellular multiplication, and egression.
- Proximity-dependent biotinylation (BioID2) to identify protein interactors.
Main Results:
- PDLIM2 knockdown in HBMEC impaired microbial traversal and exit.
- Defective exocytosis in PDLIM2 knockdown cells was partially restored by calcium ionophore treatment.
- MPRIP knockdown in HBMEC phenocopied PDLIM2 knockdown effects.
- PDLIM2 and MPRIP were identified as key host factors hijacked by microbes.
Conclusions:
- PDLIM2 and MPRIP are crucial host proteins exploited by CNS pathogens for BBB traversal and egress.
- Understanding these interactions may lead to novel therapeutic strategies against CNS infections.
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