The 20 <i>S</i> proteasome core, active within apoptotic exosome-like vesicles, induces autoantibody production and accelerates rejection

Mélanie Dieudé(Canadian Natural Resources), Christina Bell(Canadian Natural Resources), Julie Turgeon(Canadian Natural Resources), Déborah Beillevaire(Canadian Natural Resources), Luc Pomerleau(Canadian Natural Resources), Bing Yang(Canadian Natural Resources), Katia Hamelin(Canadian Natural Resources), Shijie Qi(Canadian Natural Resources), Nicolas Pallet(Centre Hospitalier de l’Université de Montréal), Chanel Béland(Centre Hospitalier de l’Université de Montréal), Wahiba Dhahri(Centre Hospitalier de l’Université de Montréal), Jean‐François Cailhier(Canadian Natural Resources), Matthieu Rousseau(Canadian Natural Resources), Anne‐Claire Duchez(Canadian Natural Resources), Tania Lévesque(Canadian Natural Resources), Arthur Lau(University of Calgary), Christiane Rondeau(Université de Montréal), Diane Gingras(Université de Montréal), Danie Muruve(University of Calgary), Alain Rivard(Centre Hospitalier de l’Université de Montréal), Héloïse Cardinal(Canadian Natural Resources), Claude Perreault(Canadian Natural Resources), Michel Desjardins(Université de Montréal), Éric Boilard(Canadian Natural Resources), Pierre Thibault(Canadian Natural Resources), Marie‐Josée Hébert(Canadian Natural Resources)
Science Translational Medicine
December 16, 2015
Cited by 198Open Access
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Abstract

Autoantibodies to components of apoptotic cells, such as anti-perlecan antibodies, contribute to rejection in organ transplant recipients. However, mechanisms of immunization to apoptotic components remain largely uncharacterized. We used large-scale proteomics, with validation by electron microscopy and biochemical methods, to compare the protein profiles of apoptotic bodies and apoptotic exosome-like vesicles, smaller extracellular vesicles released by endothelial cells downstream of caspase-3 activation. We identified apoptotic exosome-like vesicles as a central trigger for production of anti-perlecan antibodies and acceleration of rejection. Unlike apoptotic bodies, apoptotic exosome-like vesicles triggered the production of anti-perlecan antibodies in naïve mice and enhanced anti-perlecan antibody production and allograft inflammation in mice transplanted with an MHC (major histocompatibility complex)-incompatible aortic graft. The 20S proteasome core was active within apoptotic exosome-like vesicles and controlled their immunogenic activity. Finally, we showed that proteasome activity in circulating exosome-like vesicles increased after vascular injury in mice. These findings open new avenues for predicting and controlling maladaptive humoral responses to apoptotic cell components that enhance the risk of rejection after transplantation.


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