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The receptor TREML4 amplifies TLR7-mediated signaling during antiviral responses and autoimmunity.


ABSTRACT: The molecules and pathways that fine-tune innate inflammatory responses mediated by Toll-like receptor 7 (TLR7) remain to be fully elucidated. Using an unbiased genome-scale screen with short hairpin RNA (shRNA), we identified the receptor TREML4 as an essential positive regulator of TLR7 signaling. Macrophages from Treml4(-/-) mice were hyporesponsive to TLR7 agonists and failed to produce type I interferons due to impaired phosphorylation of the transcription factor STAT1 by the mitogen-activated protein kinase p38 and decreased recruitment of the adaptor MyD88 to TLR7. TREML4 deficiency reduced the production of inflammatory cytokines and autoantibodies in MRL/lpr mice, which are prone to systemic lupus erythematosus (SLE), and inhibited the antiviral immune response to influenza virus. Our data identify TREML4 as a positive regulator of TLR7 signaling and provide insight into the molecular mechanisms that control antiviral immunity and the development of autoimmunity.

SUBMITTER: Ramirez-Ortiz ZG 

PROVIDER: S-EPMC4406861 | biostudies-literature | 2015 May

REPOSITORIES: biostudies-literature

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The receptor TREML4 amplifies TLR7-mediated signaling during antiviral responses and autoimmunity.

Ramirez-Ortiz Zaida G ZG   Prasad Amit A   Griffith Jason W JW   Pendergraft William F WF   Cowley Glenn S GS   Root David E DE   Tai Melissa M   Luster Andrew D AD   El Khoury Joseph J   Hacohen Nir N   Means Terry K TK  

Nature immunology 20150406 5


The molecules and pathways that fine-tune innate inflammatory responses mediated by Toll-like receptor 7 (TLR7) remain to be fully elucidated. Using an unbiased genome-scale screen with short hairpin RNA (shRNA), we identified the receptor TREML4 as an essential positive regulator of TLR7 signaling. Macrophages from Treml4(-/-) mice were hyporesponsive to TLR7 agonists and failed to produce type I interferons due to impaired phosphorylation of the transcription factor STAT1 by the mitogen-activa  ...[more]

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