» Articles » PMID: 22203053

Adenovirus-mediated Gene Transfer of TGF-β1 to the Renal Glomeruli Leads to Proteinuria

Overview
Journal Am J Pathol
Publisher Elsevier
Specialty Pathology
Date 2011 Dec 29
PMID 22203053
Citations 8
Authors
Affiliations
Soon will be listed here.
Abstract

The mechanism of proteinuria in many common kidney diseases involves glomerular hemodynamic effects and local expression of angiogenic, fibrogenic, and vasoactive factors. Transforming growth factor (TGF)-β has been associated with many diseases involving proteinuria and renal fibrosis. TGF-β has been shown to induce podocyte dedifferentiation in vitro, but its in vivo effects on the glomerular filtration barrier are not well described. In this study, we used an adenovirus vector to transfer active TGF-β1 to the glomeruli of rat kidneys. Transient TGF-β1 overexpression induced significant proteinuria, podocyte foot process effacement, nephrin down-regulation, and nephrinuria. The expression of synaptopodin was also significantly down-regulated by TGF-β1. Increased glomerular expression of Snail, suggestive of an in vivo dedifferentiation process, was associated with a loss of podocyte epithelial markers. The expression of angiopoietin-1 and angiopoietin-2 was significantly increased in TGF-β1-transfected glomeruli, and TGF-β1 increased the expression of the angiopoietin receptor, Tie2, in podocyte cell culture. TGF-β1 down-regulated nephrin and synaptopodin expression in podocytes in cell culture; this effect was reversed by the blockade of both angiopoietin and Tie2 activities. These findings suggest that locally produced TGF-β1 can cause podocyte dedifferentiation marked by a loss of synaptopodin, nephrin, and foot process effacement, partly regulated by angiopoietins. This process represents a novel pathway that may explain proteinuria in a variety of common renal diseases.

Citing Articles

TGF-β1 is involved in senescence-related pathways in glomerular endothelial cells via p16 translocation and p21 induction.

Ueda S, Tominaga T, Ochi A, Sakurai A, Nishimura K, Shibata E Sci Rep. 2021; 11(1):21643.

PMID: 34737348 PMC: 8569175. DOI: 10.1038/s41598-021-01150-4.


Lefty-1 inhibits renal epithelial-mesenchymal transition by antagonizing the TGF-β/Smad signaling pathway.

Zhang L, Liu X, Liang J, Wu J, Tan D, Hu W J Mol Histol. 2020; 51(1):77-87.

PMID: 32065356 DOI: 10.1007/s10735-020-09859-8.


Anti-inflammatory effects of Lefty-1 in renal tubulointerstitial inflammation via regulation of the NF-κB pathway.

Zhang L, Xu C, Hu W, Wu P, Qin C, Zhang J Int J Mol Med. 2017; 41(3):1293-1304.

PMID: 29286065 PMC: 5819905. DOI: 10.3892/ijmm.2017.3327.


Transforming Growth Factor β1-induced Apoptosis in Podocytes via the Extracellular Signal-regulated Kinase-Mammalian Target of Rapamycin Complex 1-NADPH Oxidase 4 Axis.

Das R, Xu S, Nguyen T, Quan X, Choi S, Kim S J Biol Chem. 2015; 290(52):30830-42.

PMID: 26565025 PMC: 4692212. DOI: 10.1074/jbc.M115.703116.


Pentoxifylline Attenuates Proteinuria in Anti-Thy1 Glomerulonephritis via Downregulation of Nuclear Factor-κB and Smad2/3 Signaling.

Chen Y, Chiang W, Yang Y, Lai C, Wu K, Lin S Mol Med. 2015; 21:276-84.

PMID: 25879629 PMC: 4503651. DOI: 10.2119/molmed.2015.00023.