| Literature DB >> 26913567 |
Tomoki Kai1,2, Yoshiyuki Tsukamoto1, Naoki Hijiya1, Akinori Tokunaga3, Chisato Nakada1, Tomohisa Uchida1, Tsutomu Daa4, Hidekatsu Iha5, Mika Takahashi1,2, Takeo Nomura2, Fuminori Sato2, Hiromitsu Mimata2, Masahito Ikawa6, Masao Seto7, Keiko Matsuura1,8, Masatsugu Moriyama1.
Abstract
We have previously reported that Salvador homologue 1 (SAV1), a component of the Hippo pathway, is significantly down-regulated in high-grade clear cell renal cell carcinoma (ccRCC) due to 14q copy number loss, and that this down-regulation contributes to the proliferation and survival of renal tubular epithelial cells through activation of Yes-associated protein 1 (YAP1), a downstream target of the Hippo pathway. However, the impact of SAV1 loss on the proliferation and survival of kidney cells in vivo remained to be determined. To address this issue, we generated kidney-specific Sav1-knockout (Cdh16-Cre;Sav1(fl/fl) ) mice. Sav1 deficiency enhanced the proliferation of renal tubular epithelial cells in Cdh16-Cre;Sav1(fl/fl) mice, accompanied by nuclear localization of Yap1, suggesting suppression of the Hippo pathway. Sav1 deficiency in renal tubules also caused structural and cellular abnormalities of the epithelial cells, including significant enlargement of their nuclei. Furthermore, Cdh16-Cre;Sav1(fl/fl) mice developed both glomerular and tubular cysts. Although lining cells of the glomerular cysts showed no atypia, those of the tubular cysts showed variations in cell size and nuclear shape, which became more severe as the mice aged. In aged Cdh16-Cre;Sav1(fl/fl) mice, we observed focal disruption of proximal tubules and perivascular lymphocytic infiltration. In conclusion, Sav1 is required for the maintenance of growth, nuclear size and structure of renal tubules under physiological conditions, and its deficiency leads to the acquisition of enhanced proliferation of renal epithelial cells through suppression of Hippo signalling.Entities:
Keywords: Hippo pathway; SAV1; YAP1; clear cell renal cell carcinoma; knockout mouse, atypical renal tubule
Mesh:
Substances:
Year: 2016 PMID: 26913567 DOI: 10.1002/path.4706
Source DB: PubMed Journal: J Pathol ISSN: 0022-3417 Impact factor: 7.996