Expanding the genotypic and phenotypic spectrum of PGAP1 deficiency: clinical and functional insights from 15 patients
Abstract
Glycosylphosphatidylinositol-anchored proteins (GPI-APs) are essential for neuronal development, synaptic organization and signaling. Defects in GPI-anchor biosynthesis or remodeling cause rare neurodevelopmental disorders, including post-GPI attachment to proteins 1 (PGAP1) deficiency. PGAP1 encodes an inositol deacylase required for GPI-anchor remodeling and appropriate trafficking and membrane localization of GPI-APs. Loss of PGAP1 function disrupts GPI-AP processing, but the clinical spectrum remains incompletely defined because reported cohorts are small. We report 15 individuals with biallelic PGAP1 variants from 11 unrelated families identified through international collaboration. Clinical information was collected using a standardized phenotyping questionnaire and review of available clinical records. The most frequently recorded features were developmental delay or intellectual disability, motor developmental delay, speech impairment, facial dysmorphism, hypotonia and seizures. Independent walking was clearly recorded in a minority of individuals, while feeding, ophthalmological, musculoskeletal and neuroimaging findings were recorded in subsets of the cohort. Clinical investigations were performed as part of routine care and were not uniform across sites. Accordingly, source-dependent assessments including MRI, EEG, EMG/NCS, formal ophthalmology, hearing assessment, systemic imaging, IQ/DQ testing, MRC scoring and anthropometric Z-scores are reported descriptively or using available-data denominators. Spasticity, hypertonia or possible peripheral nerve involvement was recorded in some clinical summaries; however, electrophysiological confirmation was not uniformly available, and confirmed peripheral neuropathy was not analyzed as a cohort-level prevalence outcome. Functional studies in selected patient-derived cells or model systems demonstrated PI-PLC resistance of GPI-APs, supporting impaired GPI-anchor remodeling. These findings expand the genotypic and recorded phenotypic spectrum of PGAP1 deficiency.
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Authors: Florencia Haase, Oselyne Ong, Irene Valenzuela, Adam Bournazos, Zainab Al Masseri, Frenny Sheth, Jayesh Sheth, Harsh Sheth, Rebecca Buchert, Tobias B. Haack, Joris Andrieux, Thomas Liehr, Alma Kuechler, Daniel De Los Reyes Helices, Jessica Merjane, Sandra T. Cooper, Taroh Kinoshita, Yoshiko Murakami, Richard Webster, Wendy Gold, Leszek Lisowski
Institutions: The University of Sydney, The University of Osaka, Hebron University, University of Tübingen, Vall d'Hebron Institut de Recerca, Jena University Hospital, Institute of Human Genetics, Children's Hospital at Westmead, King Faisal Specialist Hospital & Research Centre, Hôpital Jeanne de Flandre, Narodowy Instytut Leków, Children's Medical Research Institute, Sydney Children’s Hospitals Network, Institute of Genetics and Hospital for Genetic Diseases