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Published on: November 5, 2019
Neisseria meningitidis has two independent modes of recognizing its human receptor CEACAM1
Katharina Kuespert1, Alexandra Roth, Christof R Hauck
1Lehrstuhl für Zellbiologie, Universität Konstanz, Konstanz, Germany.
Background:
Several human-restricted gram-negative bacteria exploit carcinoembryonic antigen-related cell adhesion molecules (CEACAMs) for host colonization. For example, Neisseria meningitidis engages these human receptors via outer membrane proteins of the colony opacity-associated (Opa) protein family triggering internalization into non-phagocytic cells.
Principal Findings:
We report that a non-opaque strain of N. meningitidis selectively interacts with CEACAM1, but not other CEACAM family members. Using functional assays of bacterial adhesion and internalisation, microscopic analysis, and a panel of CEACAM1 deletion mutants we demonstrate that the engagement of CEACAM1 by non-opaque meningococci occurs in a manner distinct from Opa protein-mediated association. In particular, the amino-terminal domain of CEACAM1 is necessary, but not sufficient for Opa protein-independent binding, which requires multiple extracellular domains of the human receptor in a cellular context. Knock-down of CEACAM1 interferes with binding to lung epithelial cells, whereas chemical or pharmacological disruption of host protein glycosylation does not abrogate CEACAM1 recognition by non-opaque meningococci. The previously characterized meningococcal invasins NadA or Opc do not operate in a CEACAM1-dependent manner.
Conclusions:
The results demonstrate a mechanistically distinct, Opa protein-independent interaction between N. meningitidis and human CEACAM1. Our functional investigations suggest the presence of a second CEACAM1-binding invasin on the meningococcal surface that associates with the protein backbone and not the carbohydrate structures of CEACAM1. The redundancy in meningococcal CEACAM1-binding factors further highlights the important role of CEACAM recognition in the biology of this human-adapted pathogen.
Insights
Neisseria meningitidis uses a novel, Opa protein-independent mechanism to bind human CEACAM1, distinct from previously known bacterial invasion pathways. This finding reveals a new facet of meningococcal host colonization strategies.
Area of Science:
- Microbiology
- Cell Biology
- Infectious Diseases
Background:
- Human-restricted gram-negative bacteria, such as Neisseria meningitidis, utilize carcinoembryonic antigen-related cell adhesion molecules (CEACAMs) for colonization.
- Neisseria meningitidis employs outer membrane Opa proteins to engage CEACAMs, facilitating entry into non-phagocytic cells.
Purpose of the Study:
- To investigate the interaction between non-opaque strains of Neisseria meningitidis and CEACAM family members.
- To elucidate the mechanism of CEACAM1 engagement by N. meningitidis independent of Opa proteins.
Main Methods:
- Functional assays for bacterial adhesion and internalization.
- Microscopic analysis.
- Utilized CEACAM1 deletion mutants and performed knock-down experiments.
- Investigated the role of host protein glycosylation.
Main Results:
- A non-opaque N. meningitidis strain selectively binds CEACAM1, not other CEACAMs, via an Opa protein-independent mechanism.
- CEACAM1's amino-terminal domain is crucial, but multiple extracellular domains and cellular context are required for this binding.
- CEACAM1 knock-down reduced bacterial binding to lung epithelial cells.
- Host protein glycosylation disruption did not affect CEACAM1 recognition by non-opaque meningococci.
- Known meningococcal invasins NadA and Opc were not involved in CEACAM1-dependent binding.
Conclusions:
- Demonstrated a distinct, Opa protein-independent interaction between N. meningitidis and human CEACAM1.
- Identified a potential second CEACAM1-binding invasin on N. meningitidis that targets the protein backbone of CEACAM1.
- Highlighted the significance of CEACAM recognition in N. meningitidis pathogenesis due to redundant binding factors.
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