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Published on: May 31, 2018
Molecular chaperoning by glucose-regulated protein 170 in the extracellular milieu promotes macrophage-mediated
Daming Zuo1, Xiaofei Yu, Chunqing Guo
1Department of Human and Molecular Genetics, Virginia Commonwealth University School of Medicine, Richmond, VA 23298, USA.
Abstract:
Recognition of pathogen-associated molecular patterns by innate immune receptors is essential for host defense responses. Although extracellular stress proteins are considered as indicators of the stressful conditions (e.g., infection or cell injury), the exact roles of these molecules in the extracellular milieu remain less defined. We found that glucose-regulated protein 170 (Grp170), the largest stress protein and molecular chaperone, is highly efficient in binding CpG oligodeoxynucleotides (CpG-ODN), the microbial DNA mimetic sensed by toll-like receptor 9 (TLR9). Extracellular Grp170 markedly potentiates the endocytosis and internalization of CpG-ODN by mouse bone marrow-derived macrophages and directly interacts with endosomal TLR9 on cell entry. These molecular collaborations result in the synergistic activation of the MyD88-dependent signaling and enhanced production of proinflammatory cytokines and nitric oxide in mouse primary macrophages as well as human THP-1 monocyte-derived macrophages, suggesting that Grp170 released from injured cells facilitates the sensing of pathogen-associated "danger" signals by intracellular receptors. This CpG-ODN chaperone complex-promoted innate immunity confers increased resistance in mice to infection of Listeria monocytogenes compared with CpG-ODN treatment alone. Our studies reveal a previously unrecognized attribute of Grp170 as a superior DNA-binding chaperone capable of amplifying TLR9 activation on pathogen recognition, which provides a conceptual advance in understanding the dynamics of ancient chaperoning functions inside and outside the cell.
Insights
Glucose-regulated protein 170 (Grp170) enhances innate immunity by binding microbial DNA (CpG-ODN) and amplifying toll-like receptor 9 (TLR9) activation. This chaperone complex boosts host defense against bacterial infections.
Area of Science:
- Immunology
- Molecular Biology
- Cell Biology
Background:
- Innate immunity relies on recognizing pathogen-associated molecular patterns (PAMPs) by immune receptors.
- Extracellular stress proteins signal cellular stress but their extracellular roles are unclear.
- Toll-like receptor 9 (TLR9) senses microbial DNA, such as CpG oligodeoxynucleotides (CpG-ODN).
Purpose of the Study:
- To investigate the role of extracellular stress proteins, specifically glucose-regulated protein 170 (Grp170), in innate immune responses.
- To determine if Grp170 influences the sensing of microbial DNA by TLR9.
Main Methods:
- Assessed the binding efficiency of Grp170 to CpG-ODN.
- Investigated the effect of Grp170 on CpG-ODN uptake and TLR9 interaction in macrophages (mouse and human).
- Measured downstream signaling (MyD88-dependent pathway) and cytokine production.
- Evaluated host resistance to Listeria monocytogenes infection in mice.
Main Results:
- Grp170 efficiently binds CpG-ODN, acting as a DNA-binding chaperone.
- Extracellular Grp170 enhances CpG-ODN internalization and interaction with endosomal TLR9.
- This interaction synergistically activates MyD88-dependent signaling, increasing pro-inflammatory cytokine and nitric oxide production.
- Grp170-CpG-ODN complex enhances resistance to Listeria monocytogenes infection.
Conclusions:
- Extracellular Grp170 amplifies TLR9 activation by facilitating CpG-ODN sensing, thereby boosting innate immunity.
- Grp170 acts as a crucial mediator bridging cellular stress signals with pathogen recognition.
- This study reveals a novel function of Grp170 in enhancing host defense against infection.
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