RAGE Deletion Confers Renoprotection by Reducing Responsiveness to Transforming Growth Factor-β and Increasing Resistance to Apoptosis

Author:

Hagiwara Shinji12,Sourris Karly12,Ziemann Mark12,Tieqiao Wu12,Mohan Muthukumar12,McClelland Aaron D.2,Brennan Eoin12ORCID,Forbes Josephine3ORCID,Coughlan Melinda12,Harcourt Brooke4,Penfold Sally12,Wang Bo25,Higgins Gavin12,Pickering Raelene12,El-Osta Assam12,Thomas Merlin C.12,Cooper Mark E.12,Kantharidis Phillip12ORCID

Affiliation:

1. Department of Diabetes, Monash University, Melbourne, Australia

2. JDRF Danielle Alberti Memorial Centre for Diabetes Complications, Diabetes Division, Baker IDI Heart and Diabetes Institute, Melbourne, Australia

3. Mater Clinical School, University of Queensland, St. Lucia, Brisbane, Australia

4. Centre for Hormone Research, Murdoch Children’s Research Institute, Melbourne, Australia

5. Kidney Regeneration and Stem Cell Laboratory, Monash University, Melbourne, Australia

Abstract

Signaling via the receptor of advanced glycation end products (RAGE)—though complex and not fully elucidated in the setting of diabetes—is considered a key injurious pathway in the development of diabetic nephropathy (DN). We report here that RAGE deletion resulted in increased expression of fibrotic markers (collagen I and IV, fibronectin) and the inflammatory marker MCP-1 in primary mouse mesangial cells (MCs) and in kidney cortex. RNA sequencing analysis in MCs from RAGE−/− and wild-type mice confirmed these observations. Nevertheless, despite these gene expression changes, decreased responsiveness to transforming growth factor-β was identified in RAGE−/− mice. Furthermore, RAGE deletion conferred a more proliferative phenotype in MCs and reduced susceptibility to staurosporine-induced apoptosis. RAGE restoration experiments in RAGE−/− MCs largely reversed these gene expression changes, resulting in reduced expression of fibrotic and inflammatory markers. This study highlights that protection against DN in RAGE knockout mice is likely to be due in part to the decreased responsiveness to growth factor stimulation and an antiapoptotic phenotype in MCs. Furthermore, it extends our understanding of the role of RAGE in the progression of DN, as RAGE seems to play a key role in modulating the sensitivity of the kidney to injurious stimuli such as prosclerotic cytokines.

Funder

Manpei Suzuki Diabetes Foundation

Diabetes Australia Research Trust

National Health and Medical Research Council

Vera Dalgleish Phillips Fellowship

Victorian Government Operational Infrastructure Support Program

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

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