| Literature DB >> 35830857 |
Erik Rosenhahn1, Thomas J O'Brien2, Maha S Zaki3, Ina Sorge4, Dagmar Wieczorek5, Kevin Rostasy6, Antonio Vitobello7, Sophie Nambot8, Fowzan S Alkuraya9, Mais O Hashem10, Amal Alhashem11, Brahim Tabarki12, Abdullah S Alamri13, Ayat H Al Safar13, Dalal K Bubshait13, Nada F Alahmady14, Joseph G Gleeson15, Mohamed S Abdel-Hamid16, Nicole Lesko17, Sofia Ygberg18, Sandrina P Correia19, Anna Wredenberg17, Shahryar Alavi20, Seyed M Seyedhassani21, Mahya Ebrahimi Nasab21, Haytham Hussien22, Tarek E I Omar22, Ines Harzallah23, Renaud Touraine23, Homa Tajsharghi24, Heba Morsy25, Henry Houlden25, Mohammad Shahrooei26, Maryam Ghavideldarestani27, Ghada M H Abdel-Salam3, Annalaura Torella28, Mariateresa Zanobio29, Gaetano Terrone30, Nicola Brunetti-Pierri31, Abdolmajid Omrani32, Julia Hentschel1, Johannes R Lemke33, Heinrich Sticht34, Rami Abou Jamra1, Andre E X Brown35, Reza Maroofian25, Konrad Platzer36.
Abstract
PPFIBP1 encodes for the liprin-β1 protein, which has been shown to play a role in neuronal outgrowth and synapse formation in Drosophila melanogaster. By exome and genome sequencing, we detected nine ultra-rare homozygous loss-of-function variants in 16 individuals from 12 unrelated families. The individuals presented with moderate to profound developmental delay, often refractory early-onset epilepsy, and progressive microcephaly. Further common clinical findings included muscular hyper- and hypotonia, spasticity, failure to thrive and short stature, feeding difficulties, impaired vision, and congenital heart defects. Neuroimaging revealed abnormalities of brain morphology with leukoencephalopathy, ventriculomegaly, cortical abnormalities, and intracranial periventricular calcifications as major features. In a fetus with intracranial calcifications, we identified a rare homozygous missense variant that by structural analysis was predicted to disturb the topology of the SAM domain region that is essential for protein-protein interaction. For further insight into the effects of PPFIBP1 loss of function, we performed automated behavioral phenotyping of a Caenorhabditis elegans PPFIBP1/hlb-1 knockout model, which revealed defects in spontaneous and light-induced behavior and confirmed resistance to the acetylcholinesterase inhibitor aldicarb, suggesting a defect in the neuronal presynaptic zone. In conclusion, we establish bi-allelic loss-of-function variants in PPFIBP1 as a cause of an autosomal recessive severe neurodevelopmental disorder with early-onset epilepsy, microcephaly, and periventricular calcifications.Entities:
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Year: 2022 PMID: 35830857 PMCID: PMC9388382 DOI: 10.1016/j.ajhg.2022.06.008
Source DB: PubMed Journal: Am J Hum Genet ISSN: 0002-9297 Impact factor: 11.043