Loss of zebrafish pkd1l1 causes biliary defects that have implications for biliary atresia splenic malformation

Author:

Ali Rouknuddin Q.1ORCID,Meyer-Miner Anne12,David-Rachel Marie12,Lee Fiona J. H.1,Wilkins Benjamin J.3,Karpen Saul J.4,Ciruna Brian12,Ghanekar Anand567,Kamath Binita M.189ORCID

Affiliation:

1. The Hospital for Sick Children 1 Program in Developmental & Stem Cell Biology , , Toronto, ON M5G 0A4 , Canada

2. The University of Toronto 2 Department of Molecular Genetics , , Toronto, ON M5S 1A8 , Canada

3. The Children's Hospital of Philadelphia 3 Department of Pathology and Laboratory Medicine , , Philadelphia, PA 19104 , USA

4. University School of Medicine and Children's Healthcare of Atlanta 4 Department of Pediatrics Emory , , Atlanta, GA 30322 , USA

5. University Health Network, Toronto, ON M5C 2C4 5 Division of General Surgery , , Canada

6. 6 Department of Surgery, The Hospital for Sick Children, Toronto, ON M5G 1X8, Canada

7. University of Toronto 7 Department of Surgery , , Toronto, ON M5T 1P5 , Canada

8. Hepatology and Nutrition, The Hospital for Sick Children 8 Division of Gastroenterology , , Toronto, ON M5G 1X8 , Canada

9. University of Toronto 9 Department of Pediatrics , , Toronto, ON M5G 1X8 , Canada

Abstract

ABSTRACT Biliary atresia is a fibroinflammatory neonatal disease with no effective therapies. A subset of cases (10-20%) is associated with laterality defects – labeled biliary atresia splenic malformation (BASM) syndrome. Recently, whole-exome sequencing of patients with BASM identified deleterious variants in PKD1L1. PKD1L1 is involved in left-right axis determination; however, its role in cholangiocytes is unknown. We generated the pkd1l1hsc117 allele using CRISPR/Cas9 mutagenesis in zebrafish to determine the role of Pkd1l1 in biliary development and function. Wild-type and mutant larvae were assessed for laterality defects, biliary function and biliary tree architecture at 5 days post fertilization. pkd1l1hsc117 mutant larvae exhibited early left-right patterning defects. The gallbladder was positioned on the left in 47% of mutants compared to 4% of wild-type larvae. Accumulation of PED6 in the gallbladder, an indicator of hepatobiliary function, was significantly reduced in pkd1l1hsc117 mutants (46%) compared to wild-type larvae (4%). pkd1l1hsc117 larvae exhibited fewer biliary epithelial cells and reduced density of the intrahepatic biliary network compared to those in wild-type larvae. These data highlight the essential role of pkd1l1 in normal development and function of the zebrafish biliary system, supporting a role for this gene as a cause of BASM.

Funder

Canadian Liver Foundation

Children's Hospital of Philadelphia

Rare Disease Foundation

BC Children's Hospital Foundation

Canadian Institutes of Health Research

Canada Research Chairs

The Hospital for Sick Children

Publisher

The Company of Biologists

Subject

General Biochemistry, Genetics and Molecular Biology,Immunology and Microbiology (miscellaneous),Medicine (miscellaneous),Neuroscience (miscellaneous)

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