Variable phenotypes and penetrance between and within different zebrafish ciliary transition zone mutants

Author:

Wang Jun1ORCID,Thomas Holly R.1,Thompson Robert G.1,Waldrep Stephanie C.1,Fogerty Joseph2,Song Ping2,Li Zhang3,Ma Yongjie1,Santra Peu4,Hoover Jonathan D.1,Yeo Nan Cher1,Drummond Iain A.5,Yoder Bradley K.3,Amack Jeffrey D.4,Perkins Brian2,Parant John M.1ORCID

Affiliation:

1. University of Alabama at Birmingham School of Medicine 1 Department of Pharmacology and Toxicology , , Birmingham, AL 35294 , USA

2. Cole Eye Institute, Cleveland Clinic 2 Department of Ophthalmic Research , , Cleveland, OH 44106 , USA

3. University of Alabama at Birmingham 3 Department of Cell, Developmental and Integrative Biology , , AL 35294 , USA

4. SUNY Upstate Medical University 4 Department of Cell and Developmental Biology , , Syracuse, NY 13210 , USA

5. Davis Center for Aging and Regeneration, Mount Desert Island Biological Laboratory 5 , 159 Old Bar Harbor Road, Bar Harbor, ME 04609 , USA

Abstract

ABSTRACT Meckel syndrome, nephronophthisis, Joubert syndrome and Bardet–Biedl syndrome are caused by mutations in proteins that localize to the ciliary transition zone (TZ). The phenotypically distinct syndromes suggest that these TZ proteins have differing functions. However, mutations in a single TZ gene can result in multiple syndromes, suggesting that the phenotype is influenced by modifier genes. We performed a comprehensive analysis of ten zebrafish TZ mutants, including mks1, tmem216, tmem67, rpgrip1l, cc2d2a, b9d2, cep290, tctn1, nphp1 and nphp4, as well as mutants in ift88 and ift172. Our data indicate that variations in phenotypes exist between different TZ mutants, supporting different tissue-specific functions of these TZ genes. Further, we observed phenotypic variations within progeny of a single TZ mutant, reminiscent of multiple disease syndromes being associated with mutations in one gene. In some mutants, the dynamics of the phenotype became complex with transitory phenotypes that are corrected over time. We also demonstrated that multiple-guide-derived CRISPR/Cas9 F0 ‘crispant’ embryos recapitulate zygotic null phenotypes, and rapidly identified ciliary phenotypes in 11 cilia-associated gene candidates (ankfn1, ccdc65, cfap57, fhad1, nme7, pacrg, saxo2, c1orf194, ttc26, zmynd12 and cfap52).

Funder

National Institutes of Health

School of Medicine, University of Alabama at Birmingham

Research to Prevent Blindness

Foundation Fighting Blindness

Publisher

The Company of Biologists

Subject

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

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