Partial loss of FITM2 function causes hereditary spastic paraplegia

遗传性痉挛性截瘫 错义突变 遗传学 外显子组测序 生物 等位基因 复合杂合度 突变 空等位基因 先证者 杂合子丢失 表型 移码突变 基因
作者
Ainara Salazar‐Villacorta,Laura M. Bond,Leehyeon Kim,Katherine K. Anagnostopoulou,Annarita Scardamaglia,Eugenia Filippakopoulou,Athina Ververi,Stéphanie Efthymiou,Argirios Dinopoulos,David Murphy,Georgia Karadima,Georgios Koutsis,Marios Kaliakatsos,Henry Houlden,Tobias C. Walther,Robert V. Farese
出处
期刊:Cold Spring Harbor Laboratory - medRxiv
标识
DOI:10.1101/2025.01.23.24319660
摘要

FITM2 encodes fat-storage inducing transmembrane protein 2 (FIT2), a lipid diphosphatase in the ER that cleaves acyl-CoAs and is crucial for ER homeostasis. In humans, homozygous null mutations in FITM2 are associated with a syndrome characterized by deafness and dystonia. Here, we report two families with hereditary spastic paraplegia (HSP) in whom exome sequencing revealed compound heterozygosity for FITM2 mutations. In each family, the affected probands carry one putative null allele and one G100R missense allele. Functional analyses demonstrated that the G100R allele is hypomorphic, with FIT2 protein levels reduced to 20% of wild type, leading to proportionately decreased enzyme activity. The occurrence of similar HSP disease phenotypes and the same hypomorphic mutation in these families suggests that the G100R mutation and its associated reduced enzyme activity represent a newly recognized clinical manifestation of FITM2 mutations, expanding the spectrum of conditions associated with this gene.

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