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Lnc RNA MALAT1 is dysregulated in diabetic nephropathy and involved in high glucose-induced podocyte injury via its interplay with β-catenin.

Authors :
Hu, Mengsi
Wang, Rong
Li, Xiaobing
Fan, Minghua
Lin, Jiangong
Zhen, Junhui
Chen, Liqun
Lv, Zhimei
Source :
Journal of Cellular & Molecular Medicine; Nov2017, Vol. 21 Issue 11, p2732-2747, 16p
Publication Year :
2017

Abstract

Metastasis associated lung adenocarcinoma transcript 1( MALAT1) is a long non-coding RNA, broadly expressed in mammalian tissues including kidney and up-regulated in a variety of cancer cells. To date, its functions in podocytes are largely unknown. β-catenin is a key mediator in the canonical and non-canonical Wnt signalling pathway; its aberrant expression promotes podocyte malfunction and albuminuria, and contributes to kidney fibrosis. In this study, we found that MALAT1 levels were increased in kidney cortices from C57 BL/6 mice with streptozocin ( STZ)-induced diabetic nephropathy, and dynamically regulated in cultured mouse podocytes stimulated with high glucose, which showed a trend from rise to decline. The decline of MALAT1 levels was accompanied with β-catenin translocation to the nuclei and enhanced expression of serine/arginine splicing factor 1 ( SRSF1), a MALAT1 RNA-binding protein. Further we showed early interference with MALAT1 si RNA partially restored podocytes function and prohibited β-catenin nuclear accumulation and SRSF1 overexpression. Intriguingly, we showed that β-catenin was involved in MALAT1 transcription by binding to the promotor region of MALAT1; β-catenin knock-down also decreased MALAT1 levels, suggesting a novel feedback regulation between MALAT1 and β-catenin. Notably, β-catenin deletion had limited effects on SRSF1 expression, demonstrating β-catenin might serve as a downstream signal of SRSF1. These findings provided evidence for a pivotal role of MALAT1 in diabetic nephropathy and high glucose-induced podocyte damage. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
15821838
Volume :
21
Issue :
11
Database :
Complementary Index
Journal :
Journal of Cellular & Molecular Medicine
Publication Type :
Academic Journal
Accession number :
125996126
Full Text :
https://doi.org/10.1111/jcmm.13189