Decreased miR-26a expression correlates with the progression of podocyte injury in autoimmune glomerulonephritis.

MicroRNAs contribute to the pathogenesis of certain diseases and may serve as biomarkers. We analyzed glomerular microRNA expression in B6.MRLc1, which serve as a mouse model of autoimmune glomerulonephritis. We found that miR-26a was the most abundantly expressed microRNA in the glomerulus of norma...

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Main Authors: Osamu Ichii, Saori Otsuka-Kanazawa, Taro Horino, Junpei Kimura, Teppei Nakamura, Manabu Matsumoto, Makoto Toi, Yasuhiro Kon
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4201534?pdf=render
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spelling doaj-37ed6ee79bef4d0eb0a92c58fb5a81252020-11-25T01:11:55ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-01910e11038310.1371/journal.pone.0110383Decreased miR-26a expression correlates with the progression of podocyte injury in autoimmune glomerulonephritis.Osamu IchiiSaori Otsuka-KanazawaTaro HorinoJunpei KimuraTeppei NakamuraManabu MatsumotoMakoto ToiYasuhiro KonMicroRNAs contribute to the pathogenesis of certain diseases and may serve as biomarkers. We analyzed glomerular microRNA expression in B6.MRLc1, which serve as a mouse model of autoimmune glomerulonephritis. We found that miR-26a was the most abundantly expressed microRNA in the glomerulus of normal C57BL/6 and that its glomerular expression in B6.MRLc1 was significantly lower than that in C57BL/6. In mouse kidneys, podocytes mainly expressed miR-26a, and glomerular miR-26a expression in B6.MRLc1 mice correlated negatively with the urinary albumin levels and podocyte-specific gene expression. Puromycin-induced injury of immortalized mouse podocytes decreased miR-26a expression, perturbed the actin cytoskeleton, and increased the release of exosomes containing miR-26a. Although miR-26a expression increased with differentiation of immortalized mouse podocytes, silencing miR-26a decreased the expression of genes associated with the podocyte differentiation and formation of the cytoskeleton. In particular, the levels of vimentin and actin significantly decreased. In patients with lupus nephritis and IgA nephropathy, glomerular miR-26a levels were significantly lower than those of healthy controls. In B6.MRLc1 and patients with lupus nephritis, miR-26a levels in urinary exosomes were significantly higher compared with those for the respective healthy control. These data indicate that miR-26a regulates podocyte differentiation and cytoskeletal integrity, and its altered levels in glomerulus and urine may serve as a marker of injured podocytes in autoimmune glomerulonephritis.http://europepmc.org/articles/PMC4201534?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Osamu Ichii
Saori Otsuka-Kanazawa
Taro Horino
Junpei Kimura
Teppei Nakamura
Manabu Matsumoto
Makoto Toi
Yasuhiro Kon
spellingShingle Osamu Ichii
Saori Otsuka-Kanazawa
Taro Horino
Junpei Kimura
Teppei Nakamura
Manabu Matsumoto
Makoto Toi
Yasuhiro Kon
Decreased miR-26a expression correlates with the progression of podocyte injury in autoimmune glomerulonephritis.
PLoS ONE
author_facet Osamu Ichii
Saori Otsuka-Kanazawa
Taro Horino
Junpei Kimura
Teppei Nakamura
Manabu Matsumoto
Makoto Toi
Yasuhiro Kon
author_sort Osamu Ichii
title Decreased miR-26a expression correlates with the progression of podocyte injury in autoimmune glomerulonephritis.
title_short Decreased miR-26a expression correlates with the progression of podocyte injury in autoimmune glomerulonephritis.
title_full Decreased miR-26a expression correlates with the progression of podocyte injury in autoimmune glomerulonephritis.
title_fullStr Decreased miR-26a expression correlates with the progression of podocyte injury in autoimmune glomerulonephritis.
title_full_unstemmed Decreased miR-26a expression correlates with the progression of podocyte injury in autoimmune glomerulonephritis.
title_sort decreased mir-26a expression correlates with the progression of podocyte injury in autoimmune glomerulonephritis.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description MicroRNAs contribute to the pathogenesis of certain diseases and may serve as biomarkers. We analyzed glomerular microRNA expression in B6.MRLc1, which serve as a mouse model of autoimmune glomerulonephritis. We found that miR-26a was the most abundantly expressed microRNA in the glomerulus of normal C57BL/6 and that its glomerular expression in B6.MRLc1 was significantly lower than that in C57BL/6. In mouse kidneys, podocytes mainly expressed miR-26a, and glomerular miR-26a expression in B6.MRLc1 mice correlated negatively with the urinary albumin levels and podocyte-specific gene expression. Puromycin-induced injury of immortalized mouse podocytes decreased miR-26a expression, perturbed the actin cytoskeleton, and increased the release of exosomes containing miR-26a. Although miR-26a expression increased with differentiation of immortalized mouse podocytes, silencing miR-26a decreased the expression of genes associated with the podocyte differentiation and formation of the cytoskeleton. In particular, the levels of vimentin and actin significantly decreased. In patients with lupus nephritis and IgA nephropathy, glomerular miR-26a levels were significantly lower than those of healthy controls. In B6.MRLc1 and patients with lupus nephritis, miR-26a levels in urinary exosomes were significantly higher compared with those for the respective healthy control. These data indicate that miR-26a regulates podocyte differentiation and cytoskeletal integrity, and its altered levels in glomerulus and urine may serve as a marker of injured podocytes in autoimmune glomerulonephritis.
url http://europepmc.org/articles/PMC4201534?pdf=render
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