Sultan Tipu, Scorrano Giovanna, Panciroli Marta, Christoforou Marilena, Raza Alvi Javeria, Di Ludovico Armando, Qureshi Sameen, Efthymiou Stephanie, Salpietro Vincenzo, Houlden Henry
Department of Pediatric Neurology, Children Hospital Lahore, Main Boulevard Gulberg, Nishtar Town, Lahore, Punjab 54000, Pakistan.
Department of Pediatrics, University of L'Aquila, L'Aquila, Italy.
Gene. 2024 Mar 20;899:148119. doi: 10.1016/j.gene.2023.148119. Epub 2023 Dec 29.
The VPS13 family of proteins has been implicated in lipid transport and trafficking between endoplasmic reticulum and organelles, to maintain homeostasis of subcellular membranes. Recently, pathogenic variants in each human VPS13S gene, have been linked to distinct human neurodevelopmental or neurodegenerative disorders. Within the VPS13 family of genes, VPS13D is known to be implicated in mitochondria homeostasis and function.
We investigated a Pakistani sibship affected with neurodevelopmental impairment and severe hyperkinetic (choreoathetoid) movements. Whole exome sequencing (WES) and Sanger sequencing were performed to identify potential candidate variants segregating in the family. We described clinical phenotypes and natural history of the disease during a 3-year clinical follow-up and summarized literature data related to previously identified patients with VPS13D-related neurological disorders.
We identified by WES an homozygous non-synonymous variant in VPS13D (c.5723 T > C; p.Ile1908Thr) as the potential underlying cause of the disease in our family. Two young siblings developed an early-onset neurological impairment characterized by global developmental delay, with impaired speech and motor milestones, associated to hyperkinetic movement disorders as well as progressive and non-progressive neurological abnormalities.
In this study we delineated the heterogeneity of VPS13D-related clinical phenotypes and described a novel VPS13D homozygous variant associated with severe neurological impairment. Further studies will be pivotal to understand the exact VPS13D function and its impact on mitochondria homeostasis, brain development and regulation of movements, to further clarify genotype-phenotype correlations and provide crucial prognostic information and potential therapeutic implications.
VPS13 蛋白家族与内质网和细胞器之间的脂质运输及转运有关,以维持亚细胞膜的稳态。最近,人类每个 VPS13S 基因中的致病变异都与不同的人类神经发育或神经退行性疾病相关。在 VPS13 基因家族中,已知 VPS13D 与线粒体稳态和功能有关。
我们对一个患有神经发育障碍和严重运动亢进(舞蹈徐动症)的巴基斯坦同胞家庭进行了研究。进行了全外显子测序(WES)和桑格测序,以确定在该家族中分离的潜在候选变异。我们描述了该疾病在 3 年临床随访期间的临床表型和自然病史,并总结了与先前确定的 VPS13D 相关神经系统疾病患者相关的文献数据。
我们通过 WES 在 VPS13D 中鉴定出一个纯合的非同义变异(c.5723 T > C;p.Ile1908Thr),作为我们家族中该疾病的潜在根本原因。两名年轻的兄弟姐妹出现了早发性神经功能障碍,其特征为全面发育迟缓、言语和运动发育里程碑受损,伴有运动亢进性运动障碍以及进行性和非进行性神经异常。
在本研究中,我们描述了 VPS13D 相关临床表型的异质性,并描述了一种与严重神经功能障碍相关的新型 VPS13D 纯合变异。进一步的研究对于了解 VPS13D 的确切功能及其对线粒体稳态、脑发育和运动调节的影响至关重要,以进一步阐明基因型 - 表型相关性,并提供关键的预后信息和潜在的治疗意义。