Eif2b3 mutants recapitulate phenotypes of vanishing white matter disease and validate novel disease alleles in zebrafish

Author:

Lee Yu-Ri1ORCID,Kim Se Hee2,Ben-Mahmoud Afif3,Kim Oc-Hee1,Choi Tae-Ik1,Lee Kang-Han1,Ku Bonsu4,Eum Juneyong5,Kee Yun5,Lee Sangkyu6,Cha Jihoon7,Won DongJu8,Lee Seung-Tae8,Choi Jong Rak8,Lee Joon Soo2,Kim Heung Dong2,Kim Hyung-Goo3,Bonkowsky Joshua L9,Kang Hoon-Chul2,Kim Cheol-Hee1

Affiliation:

1. Department of Biology, Chungnam National University, Daejeon, Korea

2. Department of Pediatrics, Division of Pediatric Neurology, Pediatric Epilepsy Clinic, Epilepsy Research Institute, Yonsei University College of Medicine, Severance Children’s Hospital, Seoul, Korea

3. Neurological Disorders Research Center, Qatar Biomedical Research Institute, Hamad Bin Khalifa University, Doha, Qatar

4. Korea Research Institute of Bioscience and Biotechnology, Daejeon, Korea

5. Division of Biomedical Convergence, Kangwon National University, Chuncheon, Korea

6. College of Pharmacy, Kyungpook National University, Daegu, Korea

7. Department of Radiology and Research Institute of Radiological Science, Severance Hospital, Yonsei University College of Medicine, Seoul, Korea

8. Department of Laboratory Medicine, Severance Hospital, Yonsei University College of Medicine, Seoul, Korea

9. Department of Pediatrics, University of Utah School of Medicine and Brain and Spine Center, Primary Children’s Hospital, Salt Lake City, UT, USA

Abstract

Abstract Leukodystrophy with vanishing white matter (VWM), also called Childhood Ataxia with Central Nervous System Hypomyelination, is caused by mutations in the subunits of the eukaryotic translation initiation factor, EIF2B1, EIF2B2, EIF2B3, EIF2B4 or EIF2B5. However, little is known regarding the underlying pathogenetic mechanisms, and there is no curative treatment for VWM. In this study, we established the first EIF2B3 animal model for VWM disease in vertebrates by CRISPR mutagenesis of the highly conserved zebrafish ortholog eif2b3. Using CRISPR, we generated two mutant alleles in zebrafish eif2b3, 10- and 16-bp deletions, respectively. The eif2b3 mutants showed defects in myelin development and glial cell differentiation, and increased expression of genes in the induced stress response pathway. Interestingly, we also found ectopic angiogenesis and increased VEGF expression. Ectopic angiogenesis in the eif2b3 mutants was reduced by the administration of VEGF receptor inhibitor SU5416. Using the eif2b3 mutant zebrafish model together with in silico protein modeling analysis, we demonstrated the pathogenicity of 18 reported mutations in EIF2B3, as well as of a novel variant identified in a 19-month-old female patient: c.503 T > C (p.Leu168Pro). In summary, our zebrafish mutant model of eif2b3 provides novel insights into VWM pathogenesis and offers rapid functional analysis of human EIF2B3 gene variants.

Funder

National Research Foundation

Publisher

Oxford University Press (OUP)

Subject

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

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