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瑞林蛋白中的一个移码缺失突变导致了白色瑞士牧羊犬的小脑发育不全。

A frameshift-deletion mutation in Reelin causes cerebellar hypoplasia in White Swiss Shepherd dogs.

作者信息

Littlejohn Mathew D, Sneddon Nick, Dittmer Keren, Keehan Mike, Stephen Melissa, Drögemüller Michaela, Garrick Dorian

机构信息

AL Rae Centre for Genetics and Breeding, Massey University, Hamilton, New Zealand.

School of Veterinary Science, Massey University, Palmerston North, New Zealand.

出版信息

Anim Genet. 2023 Oct;54(5):632-636. doi: 10.1111/age.13336. Epub 2023 Jun 19.

Abstract

Cerebellar hypoplasia is a heterogeneous neurological condition in which the cerebellum is smaller than usual or not completely developed. The condition can have genetic origins, with Mendelian-effect mutations described in several mammalian species. Here, we describe a genetic investigation of cerebellar hypoplasia in White Swiss Shepherd dogs, where two affected puppies were identified from a litter with a recent common ancestor on both sides of their pedigree. Whole genome sequencing was conducted for 10 dogs in this family, and filtering of these data based on a recessive transmission hypothesis highlighted five protein-altering candidate variants - including a frameshift-deletion of the Reelin (RELN) gene (p.Val947*). Given the status of RELN as a gene responsible for cerebellar hypoplasia in humans, sheep and mice, these data strongly suggest the loss-of-function variant as underlying these effects. This variant has not been found in other dog breeds nor in a cohort of European White Swiss Shepherds, suggesting a recent mutation event. This finding will support the genotyping of a more diverse sample of dogs, and should aid future management of the harmful allele through optimised mating schemes.

摘要

小脑发育不全是一种异质性神经疾病,其中小脑比正常情况小或未完全发育。该病症可能有遗传起源,在几个哺乳动物物种中都描述了孟德尔效应突变。在此,我们描述了对白色瑞士牧羊犬小脑发育不全的基因研究,在一窝小狗中鉴定出两只患病幼犬,它们的谱系两侧都有一个最近的共同祖先。对这个家族中的10只狗进行了全基因组测序,基于隐性遗传假说对这些数据进行筛选,突出了五个导致蛋白质改变的候选变体——包括Reelin(RELN)基因的一个移码缺失(p.Val947*)。鉴于RELN在人类、绵羊和小鼠中是导致小脑发育不全的基因,这些数据强烈表明功能丧失变体是这些效应的基础。在其他犬种或一群欧洲白色瑞士牧羊犬中未发现此变体,表明这是一个近期的突变事件。这一发现将支持对更多样化犬类样本进行基因分型,并应通过优化交配方案有助于未来对有害等位基因的管理。

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