Novel dominant and recessive variants in human ROBO1 cause distinct neurodevelopmental defects through different mechanisms

Author:

Huang Yan123ORCID,Ma Mengqi123,Mao Xiao45ORCID,Pehlivan Davut1678,Kanca Oguz123,Un-Candan Feride9,Shu Li45,Akay Gulsen1,Mitani Tadahiro1,Lu Shenzhao123,Candan Sukru10,Wang Hua45,Xiao Bo1112,Lupski James R18,Bellen Hugo J123

Affiliation:

1. Department of Molecular and Human Genetics, Baylor College of Medicine , Houston, TX 77030, USA

2. Jan and Dan Duncan Neurological Research Institute , Texas Children’s Hospital, , Houston, TX 77030, USA

3. Baylor College of Medicine , Texas Children’s Hospital, , Houston, TX 77030, USA

4. National Health Commission Key Laboratory for Birth Defect Research and Prevention, Hunan Provincial Maternal and Child Health Care Hospital , Changsha, Hunan 410008, China

5. Department of Medical Genetics, Maternal and Child Health Hospital of Hunan Province , Changsha, Hunan 410008, China

6. Division of Neurology and Developmental Neuroscience , Department of Pediatrics, , Houston, TX 77030, USA

7. Baylor College of Medicine , Department of Pediatrics, , Houston, TX 77030, USA

8. Texas Children’s Hospital , Houston, TX 77030, USA

9. Department of Neuroloy, Balikesir Ataturk Public Hospital , Balikesir 10100, Turkey

10. Department of Medical Genetics, Balikesir Ataturk Public Hospital , Balikesir 10100, Turkey

11. Neurology Department , Xiangya Hospital, , Changsha, Hunan 410008, China

12. Central South University , Xiangya Hospital, , Changsha, Hunan 410008, China

Abstract

Abstract The Roundabout (Robo) receptors, located on growth cones of neurons, induce axon repulsion in response to the extracellular ligand Slit. The Robo family of proteins controls midline crossing of commissural neurons during development in flies. Mono- and bi-allelic variants in human ROBO1 (HGNC: 10249) have been associated with incomplete penetrance and variable expressivity for a breath of phenotypes, including neurodevelopmental defects such as strabismus, pituitary defects, intellectual impairment, as well as defects in heart and kidney. Here, we report two novel ROBO1 variants associated with very distinct phenotypes. A homozygous missense p.S1522L variant in three affected siblings with nystagmus; and a monoallelic de novo p.D422G variant in a proband who presented with early-onset epileptic encephalopathy. We modeled these variants in Drosophila and first generated a null allele by inserting a CRIMIC T2A-GAL4 in an intron. Flies that lack robo1 exhibit reduced viability but have very severe midline crossing defects in the central nervous system. The fly wild-type cDNA driven by T2A-Gal4 partially rescues both defects. Overexpression of the human reference ROBO1 with T2A-GAL4 is toxic and reduces viability, whereas the recessive p.S1522L variant is less toxic, suggesting that it is a partial loss-of-function allele. In contrast, the dominant variant in fly robo1 (p.D413G) affects protein localization, impairs axonal guidance activity and induces mild phototransduction defects, suggesting that it is a neomorphic allele. In summary, our studies expand the phenotypic spectrum associated with ROBO1 variant alleles.

Funder

NIH

U.S. National Human Genome Research Institute

National Heart Lung and Blood Institute

Baylor-Hopkins Center for Mendelian Genomics

U.S. National Institute of Neurological Disorders and Stroke

International Rett Syndrome Foundation

National Natural Science Foundation of China

Major Scientific and Technological Projects for Collaborative Prevention and Control of Birth Defects in Hunan Province

National Key Research and Development Program of China

Publisher

Oxford University Press (OUP)

Subject

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

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