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Knockout of Mkp-1 enhances the host inflammatory responses to gram-positive bacteria
Xianxi Wang1, Xiaomei Meng, Joshua R Kuhlman
1Center for Perinatal Research, Columbus Children's Research Institute, Columbus Children's Hospital, Columbus, OH 43205, USA.
Abstract:
MAPK phosphatase (MKP)-1 is an archetypal member of the dual specificity protein phosphatase family that dephosphorylates MAPK. We have previously demonstrated that MKP-1 acts as a negative regulator of p38 and JNK in immortalized macrophages after stimulation with peptidoglycan isolated from Gram-positive bacteria. To define the physiological function of MKP-1 during Gram-positive bacterial infection, we studied the innate immune responses to Gram-positive bacteria using Mkp-1 knockout (KO) mice. We found that Mkp-1(-/-) macrophages exhibited prolonged activation of p38 and JNK, but not of ERK, following exposure to either peptidoglycan or lipoteichoic acid. Compared with wild-type (WT) macrophages, Mkp-1(-/-) macrophages produced more proinflammatory cytokines such as TNF-alpha and IL-6. Moreover, after challenge with peptidoglycan, lipoteichoic acid, live or heat-killed Staphylococcus aureus bacteria, Mkp-1 KO mice also mounted a more robust production of cytokines and chemokines, including TNF-alpha, IL-6, IL-10, and MIP-1alpha, than did WT mice. Accordingly, Mkp-1 KO mice also exhibited greater NO production, more robust neutrophil infiltration, and more severe organ damage than did WT mice. Surprisingly, WT and Mkp-1 KO mice exhibited no significant difference in either bacterial load or survival rates when infected with live S. aureus. However, in response to challenge with heat-killed S. aureus, Mkp-1 KO mice exhibited a substantially higher mortality rate compared with WT mice. Our studies indicate that MKP-1 plays a critical role in the inflammatory response to Gram-positive bacterial infection. MKP-1 serves to limit the inflammatory reaction by inactivating JNK and p38, thus preventing multiorgan failure caused by exaggerated inflammatory responses.
Insights
MAPK phosphatase (MKP)-1 limits inflammation during Gram-positive bacterial infections by deactivating p38 and JNK pathways. Its absence in knockout mice leads to excessive inflammation and organ damage, highlighting MKP-1
Area of Science:
- Immunology
- Molecular Biology
- Microbiology
Background:
- MAPK phosphatase (MKP)-1 is a key enzyme in the dual specificity protein phosphatase family.
- MKP-1 negatively regulates mitogen-activated protein kinases (MAPKs) like p38 and JNK.
- Previous studies showed MKP-1's role in regulating p38 and JNK in macrophages stimulated by Gram-positive bacterial components.
Purpose of the Study:
- To investigate the physiological role of MKP-1 in innate immune responses during Gram-positive bacterial infections.
- To define MKP-1's function in regulating inflammatory signaling pathways and outcomes in vivo.
Main Methods:
- Utilized Mkp-1 knockout (KO) mice to study innate immune responses to Gram-positive bacteria.
- Compared responses of Mkp-1(-/-) macrophages and mice with wild-type (WT) counterparts.
- Stimulated cells and animals with peptidoglycan, lipoteichoic acid, and live or heat-killed Staphylococcus aureus.
Main Results:
- Mkp-1(-/-) macrophages showed prolonged p38 and JNK activation and increased pro-inflammatory cytokine production (TNF-alpha, IL-6).
- Mkp-1 KO mice exhibited enhanced cytokine/chemokine production, increased nitric oxide (NO) generation, neutrophil infiltration, and organ damage.
- While bacterial load and survival were similar for live S. aureus, Mkp-1 KO mice had higher mortality with heat-killed S. aureus.
Conclusions:
- MKP-1 is crucial for controlling inflammatory responses to Gram-positive bacterial infections.
- MKP-1 limits inflammation by deactivating JNK and p38, thereby preventing organ damage from exaggerated immune responses.
- Dysregulation of MKP-1 can lead to detrimental inflammatory conditions during bacterial challenges.
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