Increased expression of secreted frizzled-related protein 4 in polycystic kidneys.

Romaker D, Puetz M, Teschner S, Donauer J, Geyer M, Gerke P, Rumberger B, Dworniczak B, Pennekamp P, Buchholz B, Neumann HP, Kumar R, Gloy J, Eckardt KU, Walz G

Forschungsartikel (Zeitschrift)

Zusammenfassung

Autosomal dominant polycystic kidney disease (ADPKD) is a common hereditary disease associated with progressive renal failure. Although cyst growth and compression of surrounding tissue may account for some loss of renal tissue, the other factors contributing to the progressive renal failure in patients with ADPKD are incompletely understood. Here, we report that secreted frizzled-related protein 4 (sFRP4) is upregulated in human ADPKD and in four different animal models of PKD, suggesting that sFRP4 expression is triggered by a common mechanism that underlies cyst formation. Cyst fluid from ADPKD kidneys activated the sFRP4 promoter and induced production of sFRP4 protein in renal tubular epithelial cell lines. Antagonism of the vasopressin 2 receptor blocked both promoter activity and tubular sFRP4 expression. In addition, sFRP4 selectively influenced members of the canonical Wnt signaling cascade and promoted cystogenesis of the zebrafish pronephros. sFRP4 was detected in the urine of both patients and animals with PKD, suggesting that sFRP4 may be a potential biomarker for monitoring the progression of ADPKD. Taken together, these observations suggest a potential role for SFRP4 in the pathogenesis of ADPKD.

Details zur Publikation

FachzeitschriftJournal of the American Society of Nephrology (JASN)
Jahrgang / Bandnr. / Volume20
Ausgabe / Heftnr. / Issue1
Seitenbereich48-56
StatusVeröffentlicht
Veröffentlichungsjahr2009
Sprache, in der die Publikation verfasst istEnglisch
DOI10.1681/ASN.2008040345
StichwörterPolycystic Kidney Autosomal Dominant; Mice; Wnt Proteins; Cells Cultured; Animals; Xenopus; TRPP Cation Channels; Signal Transduction; Kidney; Cyst Fluid; Nephrons; Proto-Oncogene Proteins; Spiro Compounds; Transcription Factors; Morpholines; Disease Models Animal; Zebrafish; Polycystic Kidney Diseases; Humans; Polycystic Kidney Autosomal Dominant; Mice; Wnt Proteins; Cells Cultured; Animals; Xenopus; TRPP Cation Channels; Signal Transduction; Kidney; Cyst Fluid; Nephrons; Proto-Oncogene Proteins; Spiro Compounds; Transcription Factors; Morpholines; Disease Models Animal; Zebrafish; Polycystic Kidney Diseases; Humans

Autor*innen der Universität Münster

Dworniczak, Bernd
Klinik für Medizinische Genetik
Pennekamp, Petra
Klinik für Medizinische Genetik