Biallelic loss-of-function variants in RABGAP1 cause a novel neurodevelopmental syndrome

RABGAP1 的双等位基因功能丧失变异导致了一种新的神经发育综合征

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作者:Rachel Youjin Oh, Ashish R Deshwar, Ashish Marwaha, Nesrin Sabha, Michael Tropak, Huayun Hou, Kyoko E Yuki, Michael D Wilson, Patrick Rump, Roelineke Lunsing, Noha Elserafy, Clara W T Chung, Stacy Hewson, Tanja Klein-Rodewald, Julia Calzada-Wack, Adrián Sanz-Moreno, Markus Kraiger, Susan Marschall, 

Conclusion

Collectively, our results provide evidence of a novel neurodevelopmental syndrome caused by biallelic loss-of-function variants in RABGAP1.

Methods

Through GeneMatcher, we identified 5 patients from 3 unrelated families with homozygous variants in the RABGAP1 gene found on exome sequencing. We established lymphoblastoid cells lines derived from an affected individual and her parents and performed RNA sequencing and functional studies. Rabgap1 knockout mice were generated and phenotyped.

Purpose

RABGAP1 is a GTPase-activating protein implicated in a variety of cellular and molecular processes, including mitosis, cell migration, vesicular trafficking, and mTOR signaling. There are no known Mendelian diseases caused by variants in RABGAP1.

Results

We report 5 patients presenting with a common constellation of features, including global developmental delay/intellectual disability, microcephaly, bilateral sensorineural hearing loss, and seizures, as well as overlapping dysmorphic features. Neuroimaging revealed common features, including delayed myelination, white matter volume loss, ventriculomegaly, and thinning of the corpus callosum. Functional analysis of patient cells revealed downregulated mTOR signaling and abnormal localization of early endosomes and lysosomes. Rabgap1 knockout mice exhibited several features in common with the patient cohort, including microcephaly, thinning of the corpus callosum, and ventriculomegaly.

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