Loss of Anks6 leads to YAP deficiency and liver abnormalities

Author:

Airik Merlin1,Schüler Markus23,McCourt Blake1,Weiss Anna-Carina4,Herdman Nathan1,Lüdtke Timo H4,Widmeier Eugen35ORCID,Stolz Donna B6,Nejak-Bowen Kari N7,Yimlamai Dean8,Wu Yijen L9,Kispert Andreas4,Airik Rannar19ORCID,Hildebrandt Friedhelm3

Affiliation:

1. Division of Nephrology, Department of Pediatrics, University of Pittsburgh, Pittsburgh, PA, USA

2. Division of Nephrology and Internal Intensive Care Medicine, Charite University, Berlin, Germany

3. Division of Nephrology, Boston Children’s Hospital, Boston, MA, USA

4. Department for Molecular Biology, Hannover, Germany

5. Department of Medicine, Renal Division, Medical Center - University of Freiburg, Freiburg, Germany

6. Department of Cell Biology, University of Pittsburgh, Pittsburgh, PA, USA

7. Division of Experimental Pathology, Department of Pathology, University of Pittsburgh, Pittsburgh, PA, USA

8. Division of Gastroenterology and Nutrition, Department of Pediatrics, University of Pittsburgh, Pittsburgh, PA, USA

9. Department of Developmental Biology, University of Pittsburgh, Pittsburgh, PA, USA

Abstract

Abstract ANKS6 is a ciliary protein that localizes to the proximal compartment of the primary cilium, where it regulates signaling. Mutations in the ANKS6 gene cause multiorgan ciliopathies in humans, which include laterality defects of the visceral organs, renal cysts as part of nephronophthisis and congenital hepatic fibrosis (CHF) in the liver. Although CHF together with liver ductal plate malformations are common features of several human ciliopathy syndromes, including nephronophthisis-related ciliopathies, the mechanism by which mutations in ciliary genes lead to bile duct developmental abnormalities is not understood. Here, we generated a knockout mouse model of Anks6 and show that ANKS6 function is required for bile duct morphogenesis and cholangiocyte differentiation. The loss of Anks6 causes ciliary abnormalities, ductal plate remodeling defects and periportal fibrosis in the liver. Our expression studies and biochemical analyses show that biliary abnormalities in Anks6-deficient livers result from the dysregulation of YAP transcriptional activity in the bile duct-lining epithelial cells. Mechanistically, our studies suggest, that ANKS6 antagonizes Hippo signaling in the liver during bile duct development by binding to Hippo pathway effector proteins YAP1, TAZ and TEAD4 and promoting their transcriptional activity. Together, this study reveals a novel function for ANKS6 in regulating Hippo signaling during organogenesis and provides mechanistic insights into the regulatory network controlling bile duct differentiation and morphogenesis during liver development.

Funder

National Institutes of Health

German National Academy of Sciences Leopoldina

German Research Foundation

Cluster of Excellence Inflammation at Interfaces

Hannover Medical School

Publisher

Oxford University Press (OUP)

Subject

Genetics(clinical),Genetics,Molecular Biology,General Medicine

Reference68 articles.

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