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P2Y2R contributes to the development of diabetic nephropathy by inhibiting autophagy response

OBJECTIVE: Diabetic nephropathy (DN) is one of the most common complications of diabetes and a critical risk factor for developing end-stage renal disease. Activation of purinergic receptors, including P2Y2R has been associated with the pathogenesis of renal diseases, such as polycystic kidney and g...

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Autores principales: Dusabimana, Theodomir, Kim, So Ra, Park, Eun Jung, Je, Jihyun, Jeong, Kyuho, Yun, Seung Pil, Kim, Hye Jung, Kim, Hwajin, Park, Sang Won
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7568185/
https://www.ncbi.nlm.nih.gov/pubmed/32987187
http://dx.doi.org/10.1016/j.molmet.2020.101089
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author Dusabimana, Theodomir
Kim, So Ra
Park, Eun Jung
Je, Jihyun
Jeong, Kyuho
Yun, Seung Pil
Kim, Hye Jung
Kim, Hwajin
Park, Sang Won
author_facet Dusabimana, Theodomir
Kim, So Ra
Park, Eun Jung
Je, Jihyun
Jeong, Kyuho
Yun, Seung Pil
Kim, Hye Jung
Kim, Hwajin
Park, Sang Won
author_sort Dusabimana, Theodomir
collection PubMed
description OBJECTIVE: Diabetic nephropathy (DN) is one of the most common complications of diabetes and a critical risk factor for developing end-stage renal disease. Activation of purinergic receptors, including P2Y2R has been associated with the pathogenesis of renal diseases, such as polycystic kidney and glomerulonephritis. However, the role of P2Y2R and its precise mechanisms in DN remain unknown. We hypothesised that P2Y2R deficiency may play a protective role in DN by modulating the autophagy signalling pathway. METHODS: We used a mouse model of DN by combining a treatment of high-fat diet and streptozotocin after unilateral nephrectomy in wild-type or P2Y2R knockout mice. We measured renal functional parameter in plasma, examined renal histology, and analysed expression of autophagy regulatory proteins. RESULTS: Hyperglycaemia and ATP release were induced in wild type-DN mice and positively correlated with renal dysfunction. Conversely, P2Y2R knockout markedly attenuates albuminuria, podocyte loss, development of glomerulopathy, renal tubular injury, apoptosis and interstitial fibrosis induced by DN. These protective effects were associated with inhibition of AKT-mediated FOXO3a (forkhead box O3a) phosphorylation and induction of FOXO3a-induced autophagy gene transcription. Furthermore, inhibitory phosphorylation of ULK-1 was decreased, and the downstream Beclin-1 autophagy signalling was activated in P2Y2R deficiency. Increased SIRT-1 (sirtuin-1) and FOXO3a expression in P2Y2R deficiency also enhanced autophagy response, thereby ameliorating renal dysfunction in DN. CONCLUSIONS: P2Y2R contributes to the pathogenesis of DN by impairing autophagy and serves as a therapeutic target for treating DN.
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spelling pubmed-75681852020-10-21 P2Y2R contributes to the development of diabetic nephropathy by inhibiting autophagy response Dusabimana, Theodomir Kim, So Ra Park, Eun Jung Je, Jihyun Jeong, Kyuho Yun, Seung Pil Kim, Hye Jung Kim, Hwajin Park, Sang Won Mol Metab Original Article OBJECTIVE: Diabetic nephropathy (DN) is one of the most common complications of diabetes and a critical risk factor for developing end-stage renal disease. Activation of purinergic receptors, including P2Y2R has been associated with the pathogenesis of renal diseases, such as polycystic kidney and glomerulonephritis. However, the role of P2Y2R and its precise mechanisms in DN remain unknown. We hypothesised that P2Y2R deficiency may play a protective role in DN by modulating the autophagy signalling pathway. METHODS: We used a mouse model of DN by combining a treatment of high-fat diet and streptozotocin after unilateral nephrectomy in wild-type or P2Y2R knockout mice. We measured renal functional parameter in plasma, examined renal histology, and analysed expression of autophagy regulatory proteins. RESULTS: Hyperglycaemia and ATP release were induced in wild type-DN mice and positively correlated with renal dysfunction. Conversely, P2Y2R knockout markedly attenuates albuminuria, podocyte loss, development of glomerulopathy, renal tubular injury, apoptosis and interstitial fibrosis induced by DN. These protective effects were associated with inhibition of AKT-mediated FOXO3a (forkhead box O3a) phosphorylation and induction of FOXO3a-induced autophagy gene transcription. Furthermore, inhibitory phosphorylation of ULK-1 was decreased, and the downstream Beclin-1 autophagy signalling was activated in P2Y2R deficiency. Increased SIRT-1 (sirtuin-1) and FOXO3a expression in P2Y2R deficiency also enhanced autophagy response, thereby ameliorating renal dysfunction in DN. CONCLUSIONS: P2Y2R contributes to the pathogenesis of DN by impairing autophagy and serves as a therapeutic target for treating DN. Elsevier 2020-09-25 /pmc/articles/PMC7568185/ /pubmed/32987187 http://dx.doi.org/10.1016/j.molmet.2020.101089 Text en © 2020 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Dusabimana, Theodomir
Kim, So Ra
Park, Eun Jung
Je, Jihyun
Jeong, Kyuho
Yun, Seung Pil
Kim, Hye Jung
Kim, Hwajin
Park, Sang Won
P2Y2R contributes to the development of diabetic nephropathy by inhibiting autophagy response
title P2Y2R contributes to the development of diabetic nephropathy by inhibiting autophagy response
title_full P2Y2R contributes to the development of diabetic nephropathy by inhibiting autophagy response
title_fullStr P2Y2R contributes to the development of diabetic nephropathy by inhibiting autophagy response
title_full_unstemmed P2Y2R contributes to the development of diabetic nephropathy by inhibiting autophagy response
title_short P2Y2R contributes to the development of diabetic nephropathy by inhibiting autophagy response
title_sort p2y2r contributes to the development of diabetic nephropathy by inhibiting autophagy response
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7568185/
https://www.ncbi.nlm.nih.gov/pubmed/32987187
http://dx.doi.org/10.1016/j.molmet.2020.101089
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