| Literature DB >> 29081981 |
Tsuneaki Yoshinaga1,2, Katsuya Nakamura1,2, Masumi Ishikawa1, Tomomi Yamaguchi1,3, Kyoko Takano1,3, Keiko Wakui1,3, Tomoki Kosho1,3, Kunihiro Yoshida2,4, Yoshimitsu Fukushima1,3, Yoshiki Sekijima2.
Abstract
A Japanese family with autosomal recessive cerebellar ataxia type 8 (SCAR8, MIM 610743) is described. We identified a novel SYNE1 frameshift deletion (c.6843del, p.Q2282Sfs*3). This family shared similar clinical manifestations characterized by adult-onset, relatively pure cerebellar ataxia with mild eye movement abnormality. Intelligence and bulbar and respiratory functions were unaffected. This study suggests the clinical utility of using panel-based exome sequencing for genetic diagnosis in hereditary ataxias in a cost-efficient manner.Entities:
Year: 2017 PMID: 29081981 PMCID: PMC5656760 DOI: 10.1038/hgv.2017.52
Source DB: PubMed Journal: Hum Genome Var ISSN: 2054-345X
Figure 1Clinical features of a family with a novel SYNE1 mutation. (a) Pedigree of the family. (b–e) T1-weighted brain MRI showed marked atrophy in the cerebellar hemispheres and vermis. b, c Patient 1. d, e Patient 2. ■/●, affected individuals; /, deceased; →, proband; MRI, magnetic resonance imaging.
Figure 2Mutation in SYNE1 observed in the present family. (a) Direct nucleotide sequencing of PCR-amplified DNA around codon 6,843 on exon 46 of the SYNE1 gene. The arrow head denotes the deleted base. The DNA and corresponding amino-acid sequences of the wild-type and mutant SYNE1 alleles are also shown. (b) Schematic diagram of Nesprin-1 and some of the major alternating isoforms, and locations of reported SYNE1 variants. The location of the mutation in this study is denoted by the arrow head. Circle variants are missense variants, triangles are splice site variants, and rectangles are truncated variants. Biallelic variants are shown in a solid color. AMC, autosomal recessive arthrogryposis multiplex congenital; CH, a pair of N-terminal CH domains; KASH, C-terminal Klarsicht/ANC-1/Syne homology (KASH) domain; MND, motor neuron disease; Others, autism and pontocerebellar hypoplasia; SCAR8, autosomal recessive cerebellar ataxia type 8; SR, spectrin repeats.