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Wiskott-Aldrich syndrome protein restricts cGAS/STING activation by dsDNA immune complexes
Giulia Maria Piperno, Asma Naseem, Giulia Silvestrelli, Roberto Amadio, Nicoletta Caronni, Karla Evelia Cervantes-Luevano, Nalan Liv, Judith Klumperman, Andrea Colliva, Hashim Ali, Francesca Graziano, Philippe Benaroch, Hans Haecker, Richard N. Hanna, Federica Benvenuti
Giulia Maria Piperno, Asma Naseem, Giulia Silvestrelli, Roberto Amadio, Nicoletta Caronni, Karla Evelia Cervantes-Luevano, Nalan Liv, Judith Klumperman, Andrea Colliva, Hashim Ali, Francesca Graziano, Philippe Benaroch, Hans Haecker, Richard N. Hanna, Federica Benvenuti
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Research Article Cell biology Immunology

Wiskott-Aldrich syndrome protein restricts cGAS/STING activation by dsDNA immune complexes

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Abstract

Dysregulated sensing of self–nucleic acid is a leading cause of autoimmunity in multifactorial and monogenic diseases. Mutations in Wiskott-Aldrich syndrome protein (WASp), a key regulator of cytoskeletal dynamics in immune cells, cause autoimmune manifestations and increased production of type I IFNs by innate cells. Here we show that immune complexes of self-DNA and autoantibodies (DNA-ICs) contribute to elevated IFN levels via activation of the cGAS/STING pathway of cytosolic sensing. Mechanistically, lack of endosomal F-actin nucleation by WASp caused a delay in endolysosomal maturation and prolonged the transit time of ingested DNA-ICs. Stalling in maturation-defective organelles facilitated leakage of DNA-ICs into the cytosol, promoting activation of the TBK1/STING pathway. Genetic deletion of STING and STING and cGAS chemical inhibitors abolished IFN production and rescued systemic activation of IFN-stimulated genes in vivo. These data unveil the contribution of cytosolic self–nucleic acid sensing in WAS and underscore the importance of WASp-mediated endosomal actin remodeling in preventing innate activation.

Authors

Giulia Maria Piperno, Asma Naseem, Giulia Silvestrelli, Roberto Amadio, Nicoletta Caronni, Karla Evelia Cervantes-Luevano, Nalan Liv, Judith Klumperman, Andrea Colliva, Hashim Ali, Francesca Graziano, Philippe Benaroch, Hans Haecker, Richard N. Hanna, Federica Benvenuti

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Figure 1

Enhanced type I IFN responses to endogenous DNA in Wasp-null DCs.

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Enhanced type I IFN responses to endogenous DNA in Wasp-null DCs.
(A) Th...
(A) The content of anti-dsDNA in sera of WT and WKO animals was evaluated by ELISA at 4, 6, and 8 months of age. n = 8, 7, and 11 mice/group, respectively; mean ± SEM. ****P ≤ 0.0001, 2-way ANOVA. (B) Transcription of IFN-stimulated genes (Mx1, Oas1a, Isg15) in resting WT and WKO DCs. n = 3 for Mx1 and Oas1a and n = 5 for Isg15; mean ± SEM. **P ≤ 0.01, 2-way ANOVA. (C) Transcription of Isg15 in total resting splenocytes; n = 3 mice per group; mean ± SEM. **P ≤ 0.01, unpaired t test. (D and E) DCs were stimulated with the indicated doses of DNA-ICs (IC). Transcription levels of Ifnb (D; n = 7) and Isg15 (E; n = 5) were evaluated by RT-PCR; mean ± SEM. *P ≤ 0.05, **P ≤ 0.01, 2-way ANOVA. (F) As in D, type IFN protein was evaluated by B16-Blue reporter assay; n = 3. n.d., not detected. (G) Histograms show WASp expression in genome-edited WTCAS and WASpCAS Hoxb8–derived DCs. (H) Ifnb gene transcription after CpG-B stimulation was evaluated by RT-PCR; mean ± SEM of 3 biological replicates. *P ≤ 0.05, unpaired t test. RT-PCR data are expressed as relative values normalized to GUSB.

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