Successful therapeutic intervention in new mouse models of frizzled 2-associated congenital malformations

Author:

Liegel Ryan P.1ORCID,Michalski Megan N.2ORCID,Vaidya Sanika1ORCID,Bittermann Elizabeth1ORCID,Finnerty Erin1,Menke Chelsea A.1,Diegel Cassandra R.2ORCID,Zhong Zhendong A.2,Williams Bart O.2,Stottmann Rolf W.1345ORCID

Affiliation:

1. Cincinnati Children's Hospital Medical Center 1 Division of Human Genetics, Department of Pediatrics , , Cincinnati, OH 45215, USA

2. Center for Cancer and Cell Biology, Van Andel Institute 2 , Grand Rapids, MI 49503, USA

3. Cincinnati Children's Hospital Medical Center 3 Division of Developmental Biology, Department of Pediatrics , , Cincinnati, OH 45215, USA

4. Institute for Genomic Medicine, Abigail Wexner Research Institute, Nationwide Children's Hospital 4 , Columbus, OH 43205, USA

5. School of Medicine, Ohio State University 5 Department of Pediatrics , , Columbus, OH 43205, USA

Abstract

ABSTRACT Frizzled 2 (FZD2) is a transmembrane Wnt receptor. We previously identified a pathogenic human FZD2 variant in individuals with FZD2-associated autosomal dominant Robinow syndrome. The variant encoded a protein with a premature stop and loss of 17 amino acids, including a region of the consensus dishevelled-binding sequence. To model this variant, we used zygote microinjection and i-GONAD-based CRISPR/Cas9-mediated genome editing to generate a mouse allelic series. Embryos mosaic for humanized Fzd2W553* knock-in exhibited cleft palate and shortened limbs, consistent with patient phenotypes. We also generated two germline mouse alleles with small deletions: Fzd2D3 and Fzd2D4. Homozygotes for each allele exhibit a highly penetrant cleft palate phenotype, shortened limbs compared with wild type and perinatal lethality. Fzd2D4 craniofacial tissues indicated decreased canonical Wnt signaling. In utero treatment with IIIC3a (a DKK inhibitor) normalized the limb lengths in Fzd2D4 homozygotes. The in vivo replication represents an approach for further investigating the mechanism of FZD2 phenotypes and demonstrates the utility of CRISPR knock-in mice as a tool for investigating the pathogenicity of human genetic variants. We also present evidence for a potential therapeutic intervention.

Funder

National Institutes of Health

Cincinnati Children's Hospital Medical Center

Cincinnati Children's Research Foundation

Van Andel Research Institute

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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