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      Dysregulation of podocyte phenotype in idiopathic collapsing glomerulopathy and HIV-associated nephropathy.

      1 , ,
      Nephron

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          Abstract

          Idiopathic collapsing glomerulopathy (ICG) and HIV-associated nephropathy (HIV-AN) are characterized by severe nephrotic syndrome, collapse and sclerosis of the glomerular tuft with prominent podocyte alterations and extensive tubulointerstitial lesions. We previously showed phenotypic changes in podocytes from patients with diffuse mesangial sclerosis, a severe glomerulopathy sharing several morphological features with collapsing glomerulopathy. The aim of this study was to analyze the podocyte phenotype in ICG and HIV-AN.

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          Deregulation of Pax-2 expression in transgenic mice generates severe kidney abnormalities.

          The Pax genes comprise a family of transcription factors active in specific tissues during embryonic development and are associated with at least three developmental mutations in mouse and man. In the developing kidney, Pax-2 is expressed in the induced mesenchyme, in the ureter epithelium, and in early epithelial structures derived from the mesenchyme. Pax-2 expression is repressed upon terminal differentiation of the renal tubule epithelium, but persists in the undifferentiated epithelium of human Wilms' tumours. We have produced a dominant gain-of-function mutation in transgenic mice by deregulating the expression of the mouse Pax-2 gene. The data obtained with four independently derived transgenic embryos and with one transgenic line demonstrate that deregulated Pax-2 expression results in histologically abnormal and dysfunctional renal epithelium with properties similar to congenital nephrotic syndrome. Thus, repression of Pax-2 is required for normal kidney development and persistent expression of Pax-2 may restrict the differentiation potential of renal epithelial cells.
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            Author and article information

            Journal
            Nephron
            Nephron
            1660-8151
            1660-8151
            Jul 2002
            : 91
            : 3
            Affiliations
            [1 ] INSERM U 423, Tour Lavoisier, Hôpital Necker-Enfants Malades, Université René Descartes, 149 rue de Sèvres, F-75743 Paris Cedex 15, France.
            Article
            nef91416
            12119471
            d6c2203f-91a5-4f67-b427-57cb7b09c78b
            Copyright 2002 S. Karger AG, Basel
            History

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