Extra centrosomes induce PIDD1‐mediated inflammation and immunosurveillance

Author:

Garcia‐Carpio Irmina1ORCID,Braun Vincent Z1ORCID,Weiler Elias S1ORCID,Leone Marina1ORCID,Niñerola Sergio2ORCID,Barco Angel2ORCID,Fava Luca L3ORCID,Villunger Andreas14ORCID

Affiliation:

1. Institute for Developmental Immunology, Biocenter Medical University of Innsbruck Innsbruck Austria

2. Instituto de Neurociencias, Consejo Superior de Investigaciones Científicas Universidad Miguel Hernández Alicante Spain

3. Armenise‐Harvard Laboratory of Cell Division, Department of Cellular, Computational and Integrative Biology – CIBIO University of Trento Trento Italy

4. CeMM Research Center for Molecular Medicine of the Austrian Academy of Sciences Vienna Austria

Abstract

AbstractUnscheduled increases in ploidy underlie defects in tissue function, premature aging, and malignancy. A concomitant event to polyploidization is the amplification of centrosomes, the main microtubule organization centers in animal cells. Supernumerary centrosomes are frequent in tumors, correlating with higher aggressiveness and poor prognosis. However, extra centrosomes initially also exert an onco‐protective effect by activating p53‐induced cell cycle arrest. If additional signaling events initiated by centrosomes help prevent pathology is unknown. Here, we report that extra centrosomes, arising during unscheduled polyploidization or aberrant centriole biogenesis, induce activation of NF‐κB signaling and sterile inflammation. This signaling requires the NEMO‐PIDDosome, a multi‐protein complex composed of PIDD1, RIPK1, and NEMO/IKKγ. Remarkably, the presence of supernumerary centrosomes suffices to induce a paracrine chemokine and cytokine profile, able to polarize macrophages into a pro‐inflammatory phenotype. Furthermore, extra centrosomes increase the immunogenicity of cancer cells and render them more susceptible to NK‐cell attack. Hence, the PIDDosome acts as a dual effector, able to engage not only the p53 network for cell cycle control but also NF‐κB signaling to instruct innate immunity.

Funder

Ministerio de Ciencia e Innovación

Publisher

Springer Science and Business Media LLC

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,Molecular Biology,General Neuroscience

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