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Retinoic acid receptor responder1 promotes development of glomerular diseases via the Nuclear Factor-κB signaling pathway.
Möller-Hackbarth, Katja; Dabaghie, Dina; Charrin, Emmanuelle; Zambrano, Sonia; Genové, Guillem; Li, Xidan; Wernerson, Annika; Lal, Mark; Patrakka, Jaakko.
Afiliación
  • Möller-Hackbarth K; KI/AZ Integrated Cardio Metabolic Centre, Karolinska Institutet at Karolinska University Hospital, Huddinge, Stockholm, Sweden; Department of Laboratory Medicine, Division of Pathology, Karolinska Institutet at Karolinska University Hospital, Huddinge, Stockholm, Sweden.
  • Dabaghie D; KI/AZ Integrated Cardio Metabolic Centre, Karolinska Institutet at Karolinska University Hospital, Huddinge, Stockholm, Sweden; Department of Laboratory Medicine, Division of Pathology, Karolinska Institutet at Karolinska University Hospital, Huddinge, Stockholm, Sweden.
  • Charrin E; KI/AZ Integrated Cardio Metabolic Centre, Karolinska Institutet at Karolinska University Hospital, Huddinge, Stockholm, Sweden; Department of Laboratory Medicine, Division of Pathology, Karolinska Institutet at Karolinska University Hospital, Huddinge, Stockholm, Sweden.
  • Zambrano S; KI/AZ Integrated Cardio Metabolic Centre, Karolinska Institutet at Karolinska University Hospital, Huddinge, Stockholm, Sweden; Department of Laboratory Medicine, Division of Pathology, Karolinska Institutet at Karolinska University Hospital, Huddinge, Stockholm, Sweden.
  • Genové G; KI/AZ Integrated Cardio Metabolic Centre, Karolinska Institutet at Karolinska University Hospital, Huddinge, Stockholm, Sweden; Department of Medicine Huddinge, Karolinska Institutet at Karolinska University Hospital, Huddinge, Stockholm, Sweden.
  • Li X; KI/AZ Integrated Cardio Metabolic Centre, Karolinska Institutet at Karolinska University Hospital, Huddinge, Stockholm, Sweden; Department of Medicine Huddinge, Karolinska Institutet at Karolinska University Hospital, Huddinge, Stockholm, Sweden.
  • Wernerson A; Department of Clinical Sciences, Intervention and Technology, Division of Renal Medicine, Karolinska Institutet, Stockholm, Sweden.
  • Lal M; Bioscience Renal, Research and Early Development Cardiovascular, Renal and Metabolism (CVRM), R&D Biopharmaceuticals, AstraZeneca, Gothenburg, Sweden.
  • Patrakka J; KI/AZ Integrated Cardio Metabolic Centre, Karolinska Institutet at Karolinska University Hospital, Huddinge, Stockholm, Sweden; Department of Laboratory Medicine, Division of Pathology, Karolinska Institutet at Karolinska University Hospital, Huddinge, Stockholm, Sweden. Electronic address: jaakko.p
Kidney Int ; 100(4): 809-823, 2021 10.
Article en En | MEDLINE | ID: mdl-34147551
Inflammatory pathways are activated in most glomerular diseases but molecular mechanisms driving them in kidney tissue are poorly known. We identified retinoic acid receptor responder 1 (Rarres1) as a highly podocyte-enriched protein in healthy kidneys. Studies in podocyte-specific knockout animals indicated that Rarres1 was not needed for the normal development or maintenance of the glomerulus filtration barrier and did not modulate the outcome of kidney disease in a model of glomerulonephritis. Interestingly, we detected an induction of Rarres1 expression in glomerular and peritubular capillary endothelial cells in IgA and diabetic kidney disease, as well as in ANCA-associated vasculitis. Analysis of publicly available RNA data sets showed that the induction of Rarres1 expression was a common molecular mechanism in chronic kidney diseases. A conditional knock-in mouse line, overexpressing Rarres1 specifically in endothelial cells, did not show any obvious kidney phenotype. However, the overexpression promoted the progression of kidney damage in a model of glomerulonephritis. In line with this, conditional knock-out mice, lacking Rarres1 in endothelial cells, were partially protected in the disease model. Mechanistically, Rarres1 promoted inflammation and fibrosis via transcription factor Nuclear Factor-κB signaling pathway by activating receptor tyrosine kinase Axl. Thus, induction of Rarres1 expression in endothelial cells is a prevalent molecular mechanism in human glomerulopathies and this seems to have a pathogenic role in driving inflammation and fibrosis via the Nuclear Factor-κB signaling pathway.
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Texto completo: 1 Base de datos: MEDLINE Asunto principal: FN-kappa B / Nefropatías Diabéticas Tipo de estudio: Prognostic_studies Idioma: En Revista: Kidney Int Año: 2021 Tipo del documento: Article

Texto completo: 1 Base de datos: MEDLINE Asunto principal: FN-kappa B / Nefropatías Diabéticas Tipo de estudio: Prognostic_studies Idioma: En Revista: Kidney Int Año: 2021 Tipo del documento: Article