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PMID: 17804483 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Interference with TGF-beta signaling by Smad3-knockout in mice limits diabetic glomerulosclerosis without affecting albuminuria.

American journal of physiology. Renal physiology ·Vol. 293 ·No. 5 ·2007-11-00 ·Pages F1657-65

Wang A, Ziyadeh FN, Lee EY, Pyagay PE, Sung SH, Sheardown SA, Laping NJ, Chen S

Abstract

Transforming growth factor (TGF)-beta plays a critical role in diabetic nephropathy. To isolate the contribution of one of the signaling pathways of TGF-beta, the Smad3 gene in the mouse was knocked out at exons 2 and 3, and the effect was studied in streptozotocin (STZ)-induced diabetes over a period of 6 wk. TGF-beta activity was increased in the diabetic mice but was not able to signal via Smad3 in the knockout (KO) mice. As expected in the wild type, the kidneys of the STZ-diabetic mice showed both structural and functional defects that are characteristic of diabetic renal involvement. In the Smad3-KO mice, however, the defects that were improved were renal hypertrophy, mesangial matrix expansion, fibronectin overproduction, glomerular basement membrane thickening, plasma creatinine, and the blood urea nitrogen. The parameters not significantly altered by the Smad3-KO were albuminuria, reduction in podocyte slit pore density, and the increase in vascular endothelial growth factor abundance and activity. It seems that the absence of Smad3 modifies the natural course of murine diabetic nephropathy, providing renal functional protection and preventing structural lesions relating to kidney hypertrophy and matrix accumulation, even though albuminuria and changes in podocyte morphology persist. In conclusion, the effects of the Smad3-KO mirror the effects of anti-TGF-beta therapy in diabetes, suggesting that the chief component of TGF-beta signaling that is relevant to kidney disease is the Smad3 pathway.

MeSH Terms
Albuminuria Animals Basement Membrane/pathology Blood Urea Nitrogen Creatinine/blood Diabetes Mellitus, Experimental/metabolism,pathology Diabetic Nephropathies/prevention & control Extracellular Matrix Fibronectins/metabolism Glomerular Mesangium Glomerulosclerosis, Focal Segmental/prevention & control Kidney/metabolism,physiopathology Kidney Glomerulus/pathology Mice Mice, Knockout Signal Transduction Smad2 Protein/metabolism Smad3 Protein/deficiency,metabolism Transforming Growth Factor beta/metabolism Transforming Growth Factor beta1/metabolism Vascular Endothelial Growth Factor A/metabolism
Chemicals
Fibronectins Smad2 Protein Smad2 protein, mouse Smad3 Protein Smad3 protein, mouse Transforming Growth Factor beta Transforming Growth Factor beta1 Vascular Endothelial Growth Factor A Creatinine
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Wang Amy
Division of Nephrology, Northwestern University, 303 E. Chicago Ave., Tarry 4-755, Chicago, IL 60611, USA.
Ziyadeh Fuad N
Lee Eun Young
Pyagay Petr E
Sung Sun Hee
Sheardown Steven A
Laping Nicholas J
Chen Sheldon
Article Info
Journal
American journal of physiology. Renal physiology
Abbr.
Am J Physiol Renal Physiol
ISSN
1931-857X
Published
2007-11-00
Epub
2007-00-05
Pages
F1657-65
Language
English
Region
United States
NLM ID
100901990
Subset
IM
Grants
NIDDK NIH HHS · DK044513 · United States
NIDDK NIH HHS · DK061537 · United States
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