PubMed · 39315527
Elucidating the clinical and genetic spectrum of inositol polyphosphate phosphatase INPP4A-related neurodevelopmental disorder.
Abstract
PURPOSE: Biallelic INPP4A variants have recently been associated with severe neurodevelopmental disease in single-case reports. Here, we expand and elucidate the clinical-genetic spectrum and provide a pathomechanistic explanation for genotype-phenotype correlations. METHODS: Clinical and genomic investigations of 30 individuals were undertaken alongside molecular and in silico modelling and translation reinitiation studies. RESULTS: We characterize a clinically variable disorder with cardinal features, including global developmental delay, severe-profound intellectual disability, microcephaly, limb weakness, cerebellar signs, and short stature. A more severe presentation associated with biallelic INPP4A variants downstream of exon 4 has additional features of (ponto)cerebellar hypoplasia, reduced cerebral volume, peripheral spasticity, contractures, intractable seizures, and cortical visual impairment. Our studies identify the likely pathomechanism of this genotype-phenotype correlation entailing translational reinitiation in exon 4 resulting in an N-terminal truncated INPP4A protein retaining partial functionality, associated with less severe disease. We also identified identical reinitiation site conservation in Inpp4a-/- mouse models displaying similar genotype-phenotype correlation. Additionally, we show fibroblasts from a single affected individual exhibit disrupted endocytic trafficking pathways, indicating the potential biological basis of the condition. CONCLUSION: Our studies comprehensively characterize INPP4A-related neurodevelopmental disorder and suggest genotype-specific clinical assessment guidelines. We propose that the potential mechanistic basis of observed genotype-phenotype correlations entails exon 4 translation reinitiation.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Lettie E Rawlins, Reza Maroofian, Stuart J Cannon, Muhannad Daana, Mina Zamani, Shamsul Ghani, Joseph S Leslie, Nishanka Ubeyratna, Nasar Khan, Hamid Khan, Annarita Scardamaglia, Robin Cloarec, Shujaat Ali Khan, Muhammad Umair, Saeid Sadeghian, Hamid Galehdari, Almundher Al-Maawali, Adila Al-Kindi, Reza Azizimalamiri, Gholamreza Shariati, Faraz Ahmad, Amna Al-Futaisi, Pedro M Rodriguez Cruz, Ainara Salazar-Villacorta, Moustapha Ndiaye, Amadou G Diop, Alireza Sedaghat, Alihossein Saberi, Mohammad Hamid, Maha S Zaki, Barbara Vona, Daniel Owrang, Abdullah M Alhashem, Makram Obeid, Amjad Khan, Ahmad Beydoun, Marwan Najjar, Homa Tajsharghi, Giovanni Zifarelli, Peter Bauer, Wejdan S Hakami, Amal M Al Hashem, Rose-Mary N Boustany, Lydie Burglen, Shahryar Alavi, Adam C Gunning, Martina Owens, Ehsan G Karimiani, Joseph G Gleeson, Mathieu Milh, Somaya Salah, Jahangir Khan, Volker Haucke, Caroline F Wright, Lucy McGavin, Orly Elpeleg, Muhammad I Shabbir, Henry Houlden, Michael Ebner, Emma L Baple, Andrew H Crosby. 2024-09-21. Elucidating the clinical and genetic spectrum of inositol polyphosphate phosphatase INPP4A-related neurodevelopmental disorder.. https://doi.org/10.1016/j.gim.2024.101278
Cite the original work for its findings. Save a collection to share your selection of sources.