Generation and initial characterization of mice lacking full‐length BAI3 (ADGRB3) expression

Author:

Shiu Fu Hung12ORCID,Wong Jennifer C.1ORCID,Bhattacharya Debanjan3ORCID,Kuranaga Yuki4,Parag Rashed R.45ORCID,Alsharif Haifa A.67,Bhatnagar Sushant67ORCID,Van Meir Erwin G.45,Escayg Andrew1ORCID

Affiliation:

1. Department of Human Genetics Emory University School of Medicine Atlanta Georgia USA

2. Neuroscience Graduate Program, Graduate Division of Biological and Biomedical Sciences, Laney Graduate School Emory University Atlanta Georgia USA

3. Department of Neurology and Rehabilitation Medicine University of Cincinnati College of Medicine Cincinnati Ohio USA

4. Department of Neurosurgery, Heersink School of Medicine University of Alabama at Birmingham Birmingham Alabama USA

5. O'Neal Comprehensive Cancer Center University of Alabama at Birmingham Birmingham Alabama USA

6. Division of Endocrinology, Diabetes, and Metabolism, Department of Medicine, Heersink School of Medicine University of Alabama at Birmingham Birmingham Alabama USA

7. Comprehensive Diabetes Center University of Alabama at Birmingham Birmingham Alabama USA

Abstract

AbstractBrain‐specific angiogenesis inhibitor 3 (ADGRB3/BAI3) belongs to the family of adhesion G protein‐coupled receptors. It is most highly expressed in the brain where it plays a role in synaptogenesis and synapse maintenance. Genome‐wide association studies have implicated ADGRB3 in disorders such as schizophrenia and epilepsy. Somatic mutations in ADGRB3 have also been identified in cancer. To better understand the in vivo physiological role of ADGRB3, we used CRISPR/Cas9 editing to generate a mouse line with a 7‐base pair deletion in Adgrb3 exon 10. Western blot analysis confirmed that homozygous mutants (Adgrb3∆7/∆7) lack full‐length ADGRB3 expression. The mutant mice were viable and reproduced in Mendelian ratios but demonstrated reduced brain and body weights and deficits in social interaction. Measurements of locomotor function, olfaction, anxiety levels and prepulse inhibition were comparable between heterozygous and homozygous mutants and wild‐type littermates. Since ADGRB3 is also expressed in organs such as lung and pancreas, this new mouse model will facilitate elucidation of ADGRB3's role in non‐central nervous system‐related functions. Finally, since somatic mutations in ADGRB3 were identified in patients with several cancer types, these mice can be used to determine whether loss of ADGRB3 function contributes to tumour development.

Funder

National Cancer Institute

Publisher

Wiley

Subject

Pharmacology,Toxicology,General Medicine

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