Factor XII signaling via uPAR-integrin β1 axis promotes tubular senescence in diabetic kidney disease
Coagulation factor XII (FXII) conveys various functions as an active protease that promotes thrombosis and inflammation, and as a zymogen via surface receptors like urokinase-type plasminogen activator receptor (uPAR). While plasma levels of FXII are increased in diabetes mellitus and diabetic kidney disease (DKD), a pathogenic role of FXII in DKD remains unknown. Here we show that FXII is locally expressed in kidney tubular cells and that urinary FXII correlates with kidney dysfunction in DKD patients. F12-deficient mice (F12-/-) are protected from hyperglycemia-induced kidney injury. Mechanistically, FXII interacts with uPAR on tubular cells promoting integrin β1-dependent signaling. This signaling axis induces oxidative stress, persistent DNA damage and senescence. Blocking uPAR or integrin β1 ameliorates FXII-induced tubular cell injury. Our findings demonstrate that FXII-uPAR-integrin β1 signaling on tubular cells drives senescence. These findings imply previously undescribed diagnostic and therapeutic approaches to detect or treat DKD and possibly other senescence-associated diseases.
Funding
Open Access funding enabled and organized by Projekt DEAL.
‘Deutsche Forschungsgemeinschaft’ (DFG, German Research Foundation): IS-67/16-1, IS-67/22-1, IS-67/25-1, IS-67/26-1, SFB1423/C07
EFSD (European Foundation for the Study of Diabetes); SH 849/1-2 and EFSD KO 5736/1-1 and KO 5736/5-1
DAAD scholarship
History
Data Availability Statement
The raw data fromthe RNA-seq analyses has been uploaded to the NCBI GEO database as BioProject under accession number PRJNA1064044. Patient data, the sequences of the used peptides and primers, in addition to the detailed experimental procedures are provided in the supplemental data file. Source data are provided in this paper.Comments
The original article is available at https://www.nature.com/Published Citation
Elwakiel A. et al. Factor XII signaling via uPAR-integrin β1 axis promotes tubular senescence in diabetic kidney disease. Nat Commun. 2024;15(1):7963.Publication Date
11 September 2024External DOI
PubMed ID
39261453Department/Unit
- Irish Centre for Vascular Biology
- School of Pharmacy and Biomolecular Sciences
Publisher
Nature Pub. GroupVersion
- Published Version (Version of Record)