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PMID: 12164872 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Effects of high glucose and TGF-beta1 on the expression of collagen IV and vascular endothelial growth factor in mouse podocytes.

Kidney international ·Vol. 62 ·No. 3 ·2002-09-00 ·Pages 901-13

Iglesias-de la Cruz MC, Ziyadeh FN, Isono M, Kouahou M, Han DC, Kalluri R, Mundel P, Chen S

Abstract

Effects of high glucose and TGF-beta1 on the expression of collagen IV and vascular endothelial growth factor in mouse podocytes. The podocyte takes center stage in the pathogenesis of glomerular basement membrane (GBM) thickening and proteinuria in diabetic glomerulopathy. In part, GBM thickening may occur when the podocyte synthesizes increased amounts of collagen IV. Proteinuria may develop if the podocyte secretes excessive amounts of vascular endothelial growth factor (VEGF), which may increase the glomerular permeability to macromolecules. The augmented production of collagen IV and VEGF may be caused by metabolic mediators of diabetes such as hyperglycemia and transforming growth factor-beta (TGF-beta). The effects of high glucose and exogenous TGF-beta1 were examined on a mouse podocyte cell line that retains its differentiated phenotype. The gene expression and protein production of certain alpha chains of collagen IV, the major isoforms of VEGF, and components of the TGF-beta system were assayed. An inhibitor of TGF-beta signaling was used to determine whether some of the high glucose effects might be mediated by the TGF-beta system. Compared with normal glucose (5.5 mmol/L), high glucose (HG, 25 mmol/L) for 14 days stimulated [3H]-proline incorporation, a measure of collagen production, by 1.8-fold, and exogenous TGF-beta1 (2 ng/mL) for 24 hours stimulated proline incorporation by 2.4-fold. Northern analysis showed that exposure to HG for 14 days increased the mRNA level of alpha1(IV) collagen by 51% and alpha5(IV) by 90%, whereas treatment with TGF-beta1 (2 ng/mL) for 24 hours decreased the mRNA level of alpha1(IV) by 36% and alpha5(IV) by 40%. Consistent with these effects on mRNA expression, Western blotting showed that HG increased alpha1(IV) protein by 44% and alpha5(IV) by 28%, while TGF-beta1 decreased alpha1(IV) protein by 29% and alpha5(IV) by 7%. In contrast to their opposing actions on alpha1 and alpha5(IV), both HG and exogenous TGF-beta1 increased alpha3(IV) collagen and VEGF, with TGF-beta1 having the greater effect. An inhibitor of the TGF-beta type I receptor (ALK5) was able to prevent the stimulation of alpha3(IV) and VEGF proteins by HG. Unlike in other renal cell types, HG did not increase TGF-beta1 mRNA or protein in the podocyte, but HG did induce the expression of the ligand-binding TGF-beta type II receptor (TbetaRII). Because HG had up-regulated TbetaRII after two weeks, the addition of physiological-dose TGF-beta1 (0.010 ng/mL) for 24 hours stimulated the production of alpha3(IV) and VEGF proteins to a greater extent in high than in normal glucose. Up-regulation of TbetaRII in the podocyte was corroborated by immunohistochemistry of the kidney cortex in the db/db mouse, a model of type 2 diabetes. High glucose and exogenous TGF-beta1 exert disparate effects on the expression of alpha1 and alpha5(IV) collagen. However, high glucose and TGF-beta1 coordinately induce the production of alpha3(IV) collagen and VEGF in the podocyte. The HG-induced increases in alpha3(IV) collagen and VEGF proteins are mediated by the TGF-beta system. By increasing the expression of TbetaRII, high glucose may augment the response of the podocyte to ambient levels of TGF-beta1.

MeSH Terms
Activin Receptors, Type I/analysis,antagonists & inhibitors,genetics Animals Benzamides/pharmacology Cell Differentiation Cells, Cultured Collagen Type IV/genetics Diabetic Nephropathies/etiology,physiopathology Dioxoles/pharmacology Drug Synergism Endothelial Growth Factors/genetics Gene Expression/drug effects Glucose/pharmacology Intercellular Signaling Peptides and Proteins/genetics Kidney Glomerulus/chemistry,cytology,drug effects Lymphokines/genetics Mice Proline/pharmacokinetics Protein Serine-Threonine Kinases Receptor, Transforming Growth Factor-beta Type I Receptor, Transforming Growth Factor-beta Type II Receptors, Transforming Growth Factor beta/analysis,antagonists & inhibitors,genetics Transforming Growth Factor beta/pharmacology Transforming Growth Factor beta1 Vascular Endothelial Growth Factor A Vascular Endothelial Growth Factors
Chemicals
4-(5-benzo(1,3)dioxol-5-yl-4-pyridin-2-yl-1H-imidazol-2-yl)benzamide Benzamides Collagen Type IV Dioxoles Endothelial Growth Factors Intercellular Signaling Peptides and Proteins Lymphokines Receptors, Transforming Growth Factor beta Tgfb1 protein, mouse Transforming Growth Factor beta Transforming Growth Factor beta1 Vascular Endothelial Growth Factor A Vascular Endothelial Growth Factors Proline Protein Serine-Threonine Kinases Activin Receptors, Type I Receptor, Transforming Growth Factor-beta Type I Receptor, Transforming Growth Factor-beta Type II Tgfbr1 protein, mouse Glucose
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Iglesias-de la Cruz M Carmen
Renal-Electrolyte and Hypertension Division, Department of Medicine, University of Pennsylvania, 700 Clinical Research Building, 415 Curie Boulevard, Philadelphia, PA 19104-4218, USA.
Ziyadeh Fuad N
Isono Motohide
Kouahou Martine
Han Dong Cheol
Kalluri Raghu
Mundel Peter
Chen Sheldon
Article Info
Journal
Kidney international
Abbr.
Kidney Int
ISSN
0085-2538
Published
2002-09-00
Pages
901-13
Language
English
Region
United States
NLM ID
0323470
Subset
IM
Grants
NIDDK NIH HHS · DK 07006 · United States
NIDDK NIH HHS · DK 09993 · United States
NIDDK NIH HHS · DK 44513 · United States
NIDDK NIH HHS · DK 45191 · United States
NIDDK NIH HHS · DK 54608 · United States
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