Quantitative natural history modeling of HPDL-related disease based on cross-sectional data reveals genotype-phenotype correlations.

IF 6.6 1区 医学 Q1 GENETICS & HEREDITY Genetics in Medicine Pub Date : 2024-12-25 DOI:10.1016/j.gim.2024.101349
Julian E Alecu, Amy Tam, Silja Richter, Vicente Quiroz, Luca Schierbaum, Afshin Saffari, Darius Ebrahimi-Fakhari
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Abstract

Purpose: Biallelic HPDL variants have been identified as the cause of a progressive childhood-onset movement disorder, with a broad clinical spectrum from severe neurodevelopmental disorder to juvenile-onset pure hereditary spastic paraplegia type 83. This study aims at delineating the geno- and phenotypic spectra of patients with HPDL-related disease, quantitatively modeling the natural history, and uncovering genotype-phenotype associations.

Methods: A cross-sectional analysis of 90 published and 1 novel case was performed, using a Human-Phenotype-Ontology-based approach. Unsupervised phenotypic clustering was used alongside in silico analyses to identify distinct patient subgroups.

Results: The study models the natural history of the HPDL-related disease in a global cohort, clarifying the molecular and phenotypic spectrum and identifying 3 distinct subgroups characterized by differences in onset, clinical trajectories, and survival. It establishes genotype-phenotype associations, showing that the presence of moderately pathogenic missense variants in 1 allele leads to a milder, spastic paraplegic phenotype with later disease onset, whereas biallelic, highly pathogenic missense or truncating variants are associated with a more severe phenotype and reduced life span.

Conclusion: Quantitative and unbiased natural history modeling in HPDL-related disease reveals significant genotype-phenotype associations, providing a foundation for variant interpretation, anticipatory guidance, and choice of outcome measures in future prospective and functional studies.

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基于横断面数据的hpdl相关疾病的定量自然历史建模揭示了基因型-表型相关性。
目的:双等位基因HPDL变异已被确定为进行性儿童期发病运动障碍的原因,从严重的神经发育障碍到青少年发病的纯遗传性痉挛性截瘫83型,具有广泛的临床谱。本研究旨在描述hpdl相关疾病患者的基因和表型谱,定量模拟其自然历史,并揭示基因型-表型关联。方法:采用基于人类表型本体论的方法,对90例已发表病例和1例新病例进行横断面分析。无监督表型聚类与计算机分析一起用于识别不同的患者亚组。结果:该研究在全球队列中模拟了hpdl相关疾病的自然历史,阐明了分子和表型谱,并确定了以发病、临床轨迹和生存差异为特征的三个不同亚组。它建立了基因型-表型关联,表明在一个等位基因中存在中度致病性错义变异会导致较轻的痉挛性截瘫表型和较晚的疾病发作,而双等位基因、高致病性错义或截短变异则与更严重的表型和缩短的寿命相关。结论:hpdl相关疾病的定量和无偏性自然历史模型揭示了显著的基因型-表型关联,为未来前瞻性和功能性研究的变异解释、预期指导和结局测量选择提供了基础。
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来源期刊
Genetics in Medicine
Genetics in Medicine 医学-遗传学
CiteScore
15.20
自引率
6.80%
发文量
857
审稿时长
1.3 weeks
期刊介绍: Genetics in Medicine (GIM) is the official journal of the American College of Medical Genetics and Genomics. The journal''s mission is to enhance the knowledge, understanding, and practice of medical genetics and genomics through publications in clinical and laboratory genetics and genomics, including ethical, legal, and social issues as well as public health. GIM encourages research that combats racism, includes diverse populations and is written by authors from diverse and underrepresented backgrounds.
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