Sepsis causes acute kidney injury (AKI) in critically ill patients, although the pathophysiology remains unclear. The receptor-interacting protein kinase-3 (RIPK3), a cardinal regulator of necroptosis, has recently been implicated in the pathogenesis of human disease. In mice subjected to polymicrobial sepsis, we demonstrate that RIPK3 promotes sepsis-induced AKI. Utilizing genetic deletion and biochemical approaches in vitro and in vivo, we identify a potentially novel pathway by which RIPK3 aggravates kidney tubular injury independently of the classical mixed lineage kinase domain-like protein–dependent (MLKL-dependent) necroptosis pathway. In kidney tubular epithelial cells, we show that RIPK3 promotes oxidative stress and mitochondrial dysfunction involving upregulation of NADPH oxidase-4 (NOX4) and inhibition of mitochondrial complex I and –III, and that RIPK3 and NOX4 are critical for kidney tubular injury in vivo. Furthermore, we demonstrate that RIPK3 is required for increased mitochondrial translocation of NOX4 in response to proinflammatory stimuli, by a mechanism involving protein-protein interactions. Finally, we observed elevated urinary and plasma RIPK3 levels in human patients with sepsis-induced AKI, representing potential markers of this condition. In conclusion, we identify a pathway by which RIPK3 promotes kidney tubular injury via mitochondrial dysfunction, independently of MLKL, which may represent a promising therapeutic target in sepsis-induced AKI.
Angara Sureshbabu, Edwin Patino, Kevin C. Ma, Kristian Laursen, Eli J. Finkelsztein, Oleh Akchurin, Thangamani Muthukumar, Stefan W. Ryter, Lorraine Gudas, Augustine M. K. Choi, Mary E. Choi
Title and authors | Publication | Year |
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Necroptosis: a crucial pathogenic mediator of human disease
Mary Choi, David R Price, Stefan W. Ryter, Augustine Choi |
JCI Insight | 2019 |
MiR-21-3p Plays a Crucial Role in Metabolism Alteration of Renal Tubular Epithelial Cells during Sepsis Associated Acute Kidney Injury via AKT/CDK2-FOXO1 Pathway
Z Lin, Z Liu, , C Qiu, S Zheng |
BioMed Research International | 2019 |
Sirt3 suppresses calcium oxalate-induced renal tubular epithelial cell injury via modification of FoxO3a-mediated autophagy
Y Peng, C Yang, X Shi, L Li, H Dong, C Liu, Z Fang, Z Wang, S Ming, M Liu, B Xie, X Gao, Y Sun |
Cell Death and Disease | 2019 |
KLF4 in Macrophages Attenuates TNF α -Mediated Kidney Injury and Fibrosis
Y Wen, X Lu, J Ren, JR Privratsky, B Yang, NP Rudemiller, J Zhang, R Griffiths, MK Jain, SA Nedospasov, BC Liu, SD Crowley |
Journal of the American Society of Nephrology : JASN | 2019 |
The multifaceted role of iron in renal health and disease
RP van Swelm, JF Wetzels, DW Swinkels |
Nature Reviews Nephrology | 2019 |
RIPK3 mediates renal tubular epithelial cell apoptosis in endotoxin‑induced acute kidney injury
S Zhang, R Li, W Dong, H Yang, L Zhang, Y Chen, W Wang, C Li, Y Wu, Z Ye, X Zhao, Z Li, M Zhang, S Liu, X Liang |
Molecular medicine reports | 2019 |
Mitochondria Permeability Transition versus Necroptosis in Oxalate-Induced AKI
SR Mulay, MM Honarpisheh, O Foresto-Neto, C Shi, J Desai, ZB Zhao, JA Marschner, B Popper, EM Buhl, P Boor, A Linkermann, H Liapis, R Bilyy, M Herrmann, P Romagnani, I Belevich, E Jokitalo, JU Becker, HJ Anders |
Journal of the American Society of Nephrology : JASN | 2019 |
Plasma receptor interacting protein kinase-3 levels are associated with acute respiratory distress syndrome in sepsis and trauma: a cohort study
MG Shashaty, JP Reilly, HE Faust, CM Forker, CA Ittner, PX Zhang, MJ Hotz, D Fitzgerald, W Yang, BJ Anderson, DN Holena, PN Lanken, JD Christie, NJ Meyer, NS Mangalmurti |
Critical Care | 2019 |
Axonal Degeneration Is Mediated by Necroptosis Activation
MS Arrázola, C Saquel, RJ Catalán, SA Barrientos, DE Hernandez, NW Martínez, A Catenaccio, FA Court |
The Journal of neuroscience : the official journal of the Society for Neuroscience | 2019 |
Therapeutic contribution of melatonin to the treatment of septic cardiomyopathy: A novel mechanism linking Ripk3-modified mitochondrial performance and endoplasmic reticulum function
J Zhong, Y Tan, J Lu, J Liu, X Xiao, P Zhu, S Chen, S Zheng, Y Chen, Y Hu, Z Guo |
Redox Biology | 2019 |