Pals1 haploinsufficiency results in proteinuria and cyst formation

The nephron is the basic physiologic subunit of the mammalian kidney and is made up of several apicobasally polarized epithelial cell types. The process of apicobasal polarization in animal cells is controlled by the evolutionarily conserved Crumbs (CRB), Partitioning-defective, and Scribble protein...

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Hauptverfasser: Weide, Thomas (VerfasserIn) , Kriz, Wilhelm (VerfasserIn)
Dokumenttyp: Article (Journal)
Sprache:Englisch
Veröffentlicht: 2017
In: Journal of the American Society of Nephrology
Year: 2017, Jahrgang: 28, Heft: 7, Pages: 2093-2107
ISSN:1533-3450
DOI:10.1681/ASN.2016040474
Online-Zugang:Verlag, kostenfrei, Volltext: http://dx.doi.org/10.1681/ASN.2016040474
Verlag, kostenfrei, Volltext: http://jasn.asnjournals.org.ezproxy.medma.uni-heidelberg.de/content/28/7/2093
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Verfasserangaben:Thomas Weide, Beate Vollenbröker, Ulf Schulze, Ivona Djuric, Maria Edeling, Jakob Bonse, Florian Hochapfel, Olga Panichkina, Dirk-Oliver Wennmann, Britta George, Seonhee Kim, Christoph Daniel, Jochen Seggewiß, Kerstin Amann, Wilhelm Kriz, Michael P. Krahn, and Hermann Pavenstädt
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Zusammenfassung:The nephron is the basic physiologic subunit of the mammalian kidney and is made up of several apicobasally polarized epithelial cell types. The process of apicobasal polarization in animal cells is controlled by the evolutionarily conserved Crumbs (CRB), Partitioning-defective, and Scribble protein complexes. Here, we investigated the role of protein associated with LIN-7 1 (Pals1, also known as Mpp5), a core component of the apical membrane-determining CRB complex in the nephron. Pals1 interacting proteins, including Crb3 and Wwtr1/Taz, have been linked to renal cyst formation in mice before. Immunohistologic analysis revealed Pals1 expression in renal tubular cells and podocytes of human kidneys. Mice lacking one Pals1 allele (functionally haploid for Pals1) in nephrons developed a fully penetrant phenotype, characterized by cyst formation and severe defects in renal barrier function, which led to death within 6-8 weeks. In Drosophila nephrocytes, deficiency of the Pals1 ortholog caused alterations in slit-diaphragm-like structures. Additional studies in epithelial cell culture models revealed that Pals1 functions as a dose-dependent upstream regulator of the crosstalk between Hippo- and TGF-β-mediated signaling. Furthermore, Pals1 haploinsufficiency in mouse kidneys associated with the upregulation of Hippo pathway target genes and marker genes of TGF-β signaling, including biomarkers of renal diseases. These findings support a link between apical polarity proteins and renal diseases, especially renal cyst diseases. Further investigation of the Pals1-linked networks is required to decipher the mechanisms underlying the pathogenesis of these diseases.
Beschreibung:Published: 06 March 2017
Gesehen am 14.06.2018
Beschreibung:Online Resource
ISSN:1533-3450
DOI:10.1681/ASN.2016040474