4.6 Article

miR-184 and miR-150 promote renal glomerular mesangial cell aging by targeting Rab1a and Rab31

Journal

EXPERIMENTAL CELL RESEARCH
Volume 336, Issue 2, Pages 192-203

Publisher

ELSEVIER INC
DOI: 10.1016/j.yexcr.2015.07.006

Keywords

miR-184; miR-150; Renal aging; Glomerular mesangial cell; Autophagy; Oxidative stress

Funding

  1. National Basic Research Program of China [2013CB530800, 2011CBA01003]
  2. Natural Science Foundation of China [81260114]

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The molecular mechanism of kidney aging is not well understood, but the abnormal expression of miRNAs with aging is considered to be an important contributor. miR-184 and miR-150 were screened using a miRNA microarray and qRT-PCR and found to be significantly upregulated in 24-month-old rats. Rat renal primary glomerular mesangial cells (GMCs) were isolated from 3-month and 24-month-old rats for the in vitro analysis of the roles of miR-184 and miR-150 in kidney aging. Bioinformatics analyses suggested that Rab1a and Rab31, which are associated with cell autophagy, were targeted by both miR-184 and miR-150. miR-184 and miR-150 were increased significantly in aging GMCs versus young cells, while Rab1a and Rab31 were significantly lower in aging cells. Furthermore, dual luciferase reporter assays revealed that miR-184 and miR-150 bound to the 3'-UTR of Rab1a and Rab31 mRNAs. Transfection of miR-184 and miR-150 mimics into young GMCs suppressed the expression of Rab1a and Rab31. Transfected cells showed lower autophagy activities and higher levels of cellular oxidative products, leading to the aging of young GMCs. However, miR-184 and miR-150 inhibitors promoted autophagy and reduced oxidative damage by upregulating Rab1a and Rab31 in old GMCs. In conclusion, miR-184 and miR-150 inhibited autophagy, promoting GMC aging. (C) 2015 Elsevier Inc. All rights reserved.

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