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The Interaction of miR-378i-Skp2 Regulates Cell Senescence in Diabetic Nephropathy

Diabetic nephropathy (DN) is the major cause of end stage renal disease. Proximal tubular epithelial cell (PTEC) injury occurs early in diabetic kidney, and it is correlated with consequent renal failure. Cellular senescence participates in the pathophysiology of DN, but its role remains unclear. We...

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Autores principales: Tsai, Yi-Chun, Kuo, Po-Lin, Kuo, Mei-Chuan, Hung, Wei-Wen, Wu, Ling-Yu, Chang, Wei-An, Wu, Ping-Hsun, Lee, Su-Chu, Chen, Hung-Chun, Hsu, Ya-Ling
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6306775/
https://www.ncbi.nlm.nih.gov/pubmed/30469549
http://dx.doi.org/10.3390/jcm7120468
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author Tsai, Yi-Chun
Kuo, Po-Lin
Kuo, Mei-Chuan
Hung, Wei-Wen
Wu, Ling-Yu
Chang, Wei-An
Wu, Ping-Hsun
Lee, Su-Chu
Chen, Hung-Chun
Hsu, Ya-Ling
author_facet Tsai, Yi-Chun
Kuo, Po-Lin
Kuo, Mei-Chuan
Hung, Wei-Wen
Wu, Ling-Yu
Chang, Wei-An
Wu, Ping-Hsun
Lee, Su-Chu
Chen, Hung-Chun
Hsu, Ya-Ling
author_sort Tsai, Yi-Chun
collection PubMed
description Diabetic nephropathy (DN) is the major cause of end stage renal disease. Proximal tubular epithelial cell (PTEC) injury occurs early in diabetic kidney, and it is correlated with consequent renal failure. Cellular senescence participates in the pathophysiology of DN, but its role remains unclear. We conducted a cross-disciplinary study, including human, in vivo, and in vitro studies, to explore the novel molecular mechanisms of PTEC senescence in DN. We found that HG induced cell senescence in PTECs, supported by enhanced β-galactosidase staining, p53 and p27 expression, and reduced cyclin E levels. Transcriptome analysis of PTECs from a type 2 diabetic patient and a normal individual using next generation sequencing (NGS) and systematic bioinformatics analyses indicated that miR-378i and its downstream target S-phase kinase protein 2 (Skp2) contribute to HG-induced senescence in PTECs. High glucose (HG) elevated miR-378i expression in PTECs, and miR-378i transfection reduced Skp2 expression. Urinary miR-378i levels were elevated in both db/db mice and type 2 diabetic patients, whereas decreased Skp2 levels were shown in proximal tubule of db/db mice and human DN. Moreover, urinary miR-378i levels were positively correlated with urinary senescence-associated secretory phenotype cytokines and renal function in in vivo and human study. This study demonstrates that the interaction between miR-378i and Skp2 regulates PTEC senescence of DN. miR-378i has the potential to predict renal injury in DN. These findings suggest future applications in both therapy and in predicting renal dysfunction of DN.
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spelling pubmed-63067752019-01-02 The Interaction of miR-378i-Skp2 Regulates Cell Senescence in Diabetic Nephropathy Tsai, Yi-Chun Kuo, Po-Lin Kuo, Mei-Chuan Hung, Wei-Wen Wu, Ling-Yu Chang, Wei-An Wu, Ping-Hsun Lee, Su-Chu Chen, Hung-Chun Hsu, Ya-Ling J Clin Med Article Diabetic nephropathy (DN) is the major cause of end stage renal disease. Proximal tubular epithelial cell (PTEC) injury occurs early in diabetic kidney, and it is correlated with consequent renal failure. Cellular senescence participates in the pathophysiology of DN, but its role remains unclear. We conducted a cross-disciplinary study, including human, in vivo, and in vitro studies, to explore the novel molecular mechanisms of PTEC senescence in DN. We found that HG induced cell senescence in PTECs, supported by enhanced β-galactosidase staining, p53 and p27 expression, and reduced cyclin E levels. Transcriptome analysis of PTECs from a type 2 diabetic patient and a normal individual using next generation sequencing (NGS) and systematic bioinformatics analyses indicated that miR-378i and its downstream target S-phase kinase protein 2 (Skp2) contribute to HG-induced senescence in PTECs. High glucose (HG) elevated miR-378i expression in PTECs, and miR-378i transfection reduced Skp2 expression. Urinary miR-378i levels were elevated in both db/db mice and type 2 diabetic patients, whereas decreased Skp2 levels were shown in proximal tubule of db/db mice and human DN. Moreover, urinary miR-378i levels were positively correlated with urinary senescence-associated secretory phenotype cytokines and renal function in in vivo and human study. This study demonstrates that the interaction between miR-378i and Skp2 regulates PTEC senescence of DN. miR-378i has the potential to predict renal injury in DN. These findings suggest future applications in both therapy and in predicting renal dysfunction of DN. MDPI 2018-11-22 /pmc/articles/PMC6306775/ /pubmed/30469549 http://dx.doi.org/10.3390/jcm7120468 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tsai, Yi-Chun
Kuo, Po-Lin
Kuo, Mei-Chuan
Hung, Wei-Wen
Wu, Ling-Yu
Chang, Wei-An
Wu, Ping-Hsun
Lee, Su-Chu
Chen, Hung-Chun
Hsu, Ya-Ling
The Interaction of miR-378i-Skp2 Regulates Cell Senescence in Diabetic Nephropathy
title The Interaction of miR-378i-Skp2 Regulates Cell Senescence in Diabetic Nephropathy
title_full The Interaction of miR-378i-Skp2 Regulates Cell Senescence in Diabetic Nephropathy
title_fullStr The Interaction of miR-378i-Skp2 Regulates Cell Senescence in Diabetic Nephropathy
title_full_unstemmed The Interaction of miR-378i-Skp2 Regulates Cell Senescence in Diabetic Nephropathy
title_short The Interaction of miR-378i-Skp2 Regulates Cell Senescence in Diabetic Nephropathy
title_sort interaction of mir-378i-skp2 regulates cell senescence in diabetic nephropathy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6306775/
https://www.ncbi.nlm.nih.gov/pubmed/30469549
http://dx.doi.org/10.3390/jcm7120468
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