Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
10816170 | Cellular Signalling | 2013 | 9 Pages |
Abstract
Epithelial to mesenchymal transition (EMT) of tubular cells contributes to the renal accumulation of matrix protein that is associated with diabetic nephropathy. Both high glucose and transforming growth factor-β (TGF-β) are able to induce EMT in cell culture. In this study, we examined the role of the thioredoxin-interacting protein (TXNIP) on EMT induced by high glucose or TGF-β1 in HK-2 cells. EMT was assessed by the expression of α-smooth muscle actin (α-SMA) and E-cadherin and the induction of a myofibroblastic phenotype. High glucose (30 mM) was shown to induce EMT at 72 h. This was blocked by knockdown of TXNIP or antioxidant NAC. Meanwhile, we also found that knockdown of TXNIP or antioxidant NAC inhibited high glucose-induced generation of reactive oxygen species (ROS), phosphorylation of p38 MAPK and ERK1/2 and expression of TGF-β1. HK-2 cells that were exposed to TGF-β1 (4 ng/ml) also underwent EMT. The expression of TXNIP gene and protein was increased in HK-2 cells treated with TGF-β1. Transfection with TXNIP shRNA was able to attenuate TGF-β1 induced-EMT. These results suggested that knockdown of TXNIP antagonized high glucose-induced EMT by inhibiting ROS production, activation of p38 MAPK and ERK1/2, and expression of TGF-β1, highlighting TXNIP as a potential therapy target for diabetic nephropathy.
Keywords
ERKTGF-βTXNIPTrxAGEsECMNACα-SMATGF-β1MAPKN-acetylcysteineROSAngiotensin IIepithelial to mesenchymal transitionα-smooth muscle actintransforming growth factor-βEMTthioredoxinAng IIExtracellular matrixAdvanced glycation end productsDiabetic nephropathythioredoxin-interacting proteinmitogen-activated protein kinaseextracellular signal-regulated kinasehigh glucoseReactive oxygen species
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Authors
Jinying Wei, Yonghong Shi, Yanjuan Hou, Yunzhuo Ren, Chunyang Du, Lianshan Zhang, Ying Li, Huijun Duan,