Generation and mutational analysis of a transgenic murine model of the human MAF mutation

Author:

Fujino Mitsunori12ORCID,Ojima Masami1,Ishibashi Shun13,Mizuno Seiya4,Takahashi Satoru14567

Affiliation:

1. Department of Anatomy and Embryology University of Tsukuba Ibaraki Japan

2. Human Biology School of Integrative and Global Majors, University of Tsukuba Ibaraki Japan

3. Medical Sciences Graduate School of Comprehensive Human Sciences, University of Tsukuba Ibaraki Japan

4. Laboratory Animal Resource Center University of Tsukuba Ibaraki Japan

5. Life Science Center, Tsukuba Advanced Research Alliance (TARA) University of Tsukuba Ibaraki Japan

6. International Institute for Integrative Sleep Medicine (WPI‐IIIS) University of Tsukuba Ibaraki Japan

7. Transborder Medical Research Center University of Tsukuba Ibaraki Japan

Abstract

AbstractAymé‐Gripp syndrome is an autosomal dominant multisystem disorder. The major clinical features of this syndrome include congenital cataracts, sensorineural hearing loss, intellectual disability, and a distinctive flat facial appearance. MAF has been identified as a causative gene of the syndrome, and heterozygous variants owing to impairment in glycogen synthase kinase 3 (GSK3)‐mediated MAF phosphorylation shows related disorders. However, the underlying mechanisms of these types of disorders in affected individuals remain poorly understood. To explore the underlying mechanisms and discover new phenotypes, a murine model with a Maf mutation on a GSK3 phosphorylation motif, p.Thr58Ile, was generated using CRISPR‐Cas9 gene editing. This is a homologous mutation to that in human patients. Our murine model exhibited similar phenotypes to those in humans, such as lens abnormalities, short stature, growth retardation, and abnormal skull morphology. The murine model showed decreased brain volume and malocclusion. Considering the sequencing and genotyping data, our models were successfully generated for the first time (to the best of our knowledge). Therefore, this study offers new and unique functional insights into human and murine MAF and novel clinical values of MAF pathogenic variants associated with changes in the functions of several organs based on a viable murine model.

Funder

Japan Science and Technology Agency

Uehara Memorial Foundation

Publisher

Wiley

Subject

Genetics (clinical),Genetics

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