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Publication : Six2creFrs2α knockout mice are a novel model of renal cystogenesis.

First Author  Puri P Year  2016
Journal  Sci Rep Volume  6
Pages  36736 PubMed ID  27853247
Mgi Jnum  J:253825 Mgi Id  MGI:6102429
Doi  10.1038/srep36736 Citation  Puri P, et al. (2016) Six2creFrs2alpha knockout mice are a novel model of renal cystogenesis. Sci Rep 6:36736
abstractText  Six2cre-mediated deletion of Frs2alpha (Six2creFrs2alphaKO), a major fibroblast growth factor receptor (Fgfr) docking protein in mouse nephron progenitors results in perinatal renal hypoplasia; however, postnatal Six2creFrs2alphaKO kidneys develop cysts. We sought to determine the pathogenesis of Six2creFrs2alphaKO cyst formation. We performed histological assays, Western blots, and quantitative PCR (qPCR). While embryonic day (E) 18.5 Six2Frs2alphaKO kidneys were hypoplastic and not cystic, postnatal day (P) 7 mutants had proximal tubular-derived cysts that nearly replaced the renal parenchyma by P21. Mutants had high proximal tubular proliferation rates and interstitial fibrosis, similar to known polycystic kidney disease (PKD) models. Six2creFrs2alphaKO kidneys also had upregulation of Wnt/betacatenin signaling, macrophage infiltration and chemokine production (e.g. ectopic Ccl2 in non-dilated proximal tubules), and augmented hedgehog signaling, features also seen in other PKD models. We saw increased Gli1 (hedgehog readout) in postnatal Six2creFrs2alphaKO interstitium and ectopic sonic hedgehog (Shh) in subsets of non-dilated P7 mutant proximal tubules (likely driving the stromal Gli expression). As ectopic tubular Shh and Ccl2 expression is seen after acute kidney injury (AKI), we interrogated another bone fide AKI marker, Kim1 and noted ectopic expression in P7 non-dilated proximal tubules. These observations suggest that aberrantly activated "AKI" pathways may drive pathogenesis in PKD.
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