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Pathogenic variants in the survival of motor neurons complex gene <scp> GEMIN5 </scp> cause cerebellar atrophy

Authors :
Takeshi Mizuguchi
Kazuhiro Iwama
Kazuhiro Ogata
Noriko Miyake
Kohei Hamanaka
Atsushi Fujita
Ken Saida
Satoko Miyatake
Masamune Sakamoto
Eriko Koshimizu
Hiroki Maeda
Junya Tamaoki
Makoto Kobayashi
Masayuki Sasaki
Toru Sengoku
Muzhirah Haniffa
Haruna Yokoyama
Naomichi Matsumoto
Futoshi Sekiguchi
Masahiro Kikuchi
Source :
Clinical Genetics. 100:722-730
Publication Year :
2021
Publisher :
Wiley, 2021.

Abstract

Cerebellar ataxia is a genetically heterogeneous disorder. GEMIN5 encoding an RNA-binding protein of the survival of motor neuron complex, is essential for small nuclear ribonucleoprotein biogenesis, and it was recently reported that biallelic loss-of-function variants cause neurodevelopmental delay, hypotonia, and cerebellar ataxia. Here, whole-exome analysis revealed compound heterozygous GEMIN5 variants in two individuals from our cohort of 162 patients with cerebellar atrophy/hypoplasia. Three novel truncating variants and one previously reported missense variant were identified: c.2196dupA, p.(Arg733Thrfs*6) and c.1831G &gt; A, p.(Val611Met) in individual 1, and c.3913delG, p.(Ala1305Leufs*14) and c.4496dupA, p.(Tyr1499*) in individual 2. Western blotting analysis using lymphoblastoid cell lines derived from both affected individuals showed significantly reduced levels of GEMIN5 protein. Zebrafish model for null variants p.(Arg733Thrfs*6) and p.(Ala1305Leufs*14) exhibited complete lethality at 2 weeks and recapitulated a distinct dysplastic phenotype. The phenotypes of affected individuals and the zebrafish mutant models strongly suggest that biallelic loss-of-function variants in GEMIN5 cause cerebellar atrophy/hypoplasia.

Details

ISSN :
13990004 and 00099163
Volume :
100
Database :
OpenAIRE
Journal :
Clinical Genetics
Accession number :
edsair.doi.dedup.....7ba634409c8d673e22418b17b94c7cf2