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犬 PITRM1 框内缺失与严重早发性癫痫、线粒体功能障碍和神经退行性变有关。

In-frame deletion in canine PITRM1 is associated with a severe early-onset epilepsy, mitochondrial dysfunction and neurodegeneration.

机构信息

Department of Medical and Clinical Genetics, University of Helsinki, Helsinki, Finland.

Folkhälsan Research Center, Helsinki, Finland.

出版信息

Hum Genet. 2021 Nov;140(11):1593-1609. doi: 10.1007/s00439-021-02279-y. Epub 2021 Apr 9.

Abstract

We investigated the clinical, genetic, and pathological characteristics of a previously unknown severe juvenile brain disorder in several litters of Parson Russel Terriers. The disease started with epileptic seizures at 6-12 weeks of age and progressed rapidly to status epilepticus and death or euthanasia. Histopathological changes at autopsy were restricted to the brain. There was severe acute neuronal degeneration and necrosis diffusely affecting the grey matter throughout the brain with extensive intraneuronal mitochondrial crowding and accumulation of amyloid-β (Aβ). Combined homozygosity mapping and genome sequencing revealed an in-frame 6-bp deletion in the nuclear-encoded pitrilysin metallopeptidase 1 (PITRM1) encoding for a mitochondrial protease involved in mitochondrial targeting sequence processing and degradation. The 6-bp deletion results in the loss of two amino acid residues in the N-terminal part of PITRM1, potentially affecting protein folding and function. Assessment of the mitochondrial function in the affected brain tissue showed a significant deficiency in respiratory chain function. The functional consequences of the mutation were modeled in yeast and showed impaired growth in permissive conditions and an impaired respiration capacity. Loss-of-function variants in human PITRM1 result in a childhood-onset progressive amyloidotic neurological syndrome characterized by spinocerebellar ataxia with behavioral, psychiatric and cognitive abnormalities. Homozygous Pitrm1-knockout mice are embryonic lethal, while heterozygotes show a progressive, neurodegenerative phenotype characterized by impairment in motor coordination and Aβ deposits. Our study describes a novel early-onset PITRM1-related neurodegenerative canine brain disorder with mitochondrial dysfunction, Aβ accumulation, and lethal epilepsy. The findings highlight the essential role of PITRM1 in neuronal survival and strengthen the connection between mitochondrial dysfunction and neurodegeneration.

摘要

我们研究了几窝帕森罗素梗(Parson Russell Terriers)中一种先前未知的严重青少年脑疾病的临床、遗传和病理学特征。该疾病始于 6-12 周龄时的癫痫发作,并迅速发展为癫痫持续状态和死亡或安乐死。尸检的组织病理学变化仅限于大脑。存在严重的急性神经元变性和坏死,广泛影响大脑灰质,伴有广泛的神经元内线粒体拥挤和淀粉样β(Aβ)堆积。联合纯合性作图和全基因组测序显示,核编码的丝氨酸肽酶 1(PITRM1)编码基因中有一个 6 个碱基对的缺失,该酶参与线粒体靶向序列加工和降解。该 6 个碱基对的缺失导致 PITRM1 氨基末端缺失两个氨基酸残基,可能影响蛋白质折叠和功能。对受影响脑组织中线粒体功能的评估显示呼吸链功能显著不足。在酵母中对突变的功能后果进行建模表明,在允许条件下生长能力受损,呼吸能力受损。人类 PITRM1 中的功能丧失变体导致儿童期发病的进行性淀粉样神经综合征,其特征为脊髓小脑共济失调伴行为、精神和认知异常。Pitrm1 敲除纯合子小鼠是胚胎致死的,而杂合子则表现出进行性神经退行性表型,表现为运动协调能力受损和 Aβ沉积。我们的研究描述了一种新的早发性 PITRM1 相关犬脑退行性疾病,伴有线粒体功能障碍、Aβ 积累和致死性癫痫。这些发现强调了 PITRM1 在神经元存活中的重要作用,并加强了线粒体功能障碍与神经退行性变之间的联系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e668/8519929/b54df5672b5b/439_2021_2279_Fig1_HTML.jpg

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