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EMBO Mol Med ; 9(10): 1366-1378, 2017 10.
Article de Anglais | MEDLINE | ID: mdl-28855301

RÉSUMÉ

We have characterised the proteolytic cleavage events responsible for the shedding of triggering receptor expressed on myeloid cells 2 (TREM2) from primary cultures of human macrophages, murine microglia and TREM2-expressing human embryonic kidney (HEK293) cells. In all cell types, a soluble 17 kDa N-terminal cleavage fragment was shed into the conditioned media in a constitutive process that is inhibited by G1254023X and metalloprotease inhibitors and siRNA targeting ADAM10. Inhibitors of serine proteases and matrix metalloproteinases 2/9, and ADAM17 siRNA did not block TREM2 shedding. Peptidomimetic protease inhibitors highlighted a possible cleavage site, and mass spectrometry confirmed that shedding occurred predominantly at the H157-S158 peptide bond for both wild-type and H157Y human TREM2 and for the wild-type murine orthologue. Crucially, we also show that the Alzheimer's disease-associated H157Y TREM2 variant was shed more rapidly than wild type from HEK293 cells, possibly by a novel, batimastat- and ADAM10-siRNA-independent, sheddase activity. These insights offer new therapeutic targets for modulating the innate immune response in Alzheimer's and other neurological diseases.


Sujet(s)
Maladie d'Alzheimer/génétique , Glycoprotéines membranaires/métabolisme , Protéolyse , Récepteurs immunologiques/métabolisme , Protéine ADAM10/génétique , Protéine ADAM10/métabolisme , Protéine ADAM17/génétique , Protéine ADAM17/métabolisme , Amyloid precursor protein secretases/génétique , Amyloid precursor protein secretases/métabolisme , Animaux , Animaux nouveau-nés , Milieux de culture conditionnés , Cellules HEK293 , Humains , Cétocholestérols/pharmacologie , Macrophages/métabolisme , Inhibiteurs de métalloprotéinases matricielles/pharmacologie , Glycoprotéines membranaires/génétique , Protéines membranaires/génétique , Protéines membranaires/métabolisme , Souris , Souris de lignée C57BL , Microglie/métabolisme , Culture de cellules primaires , Petit ARN interférent/génétique , Petit ARN interférent/métabolisme , Récepteurs immunologiques/génétique
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