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Neurabin I haploinsufficiency disrupts ion channel regulation and synaptic maturation in human cortical neurons in neurodevelopmental disorders

Molecular Psychiatry. 2026-08; 
Binte Zehra, Nesrin Mohamed, Richa Tambi, Muhammad Faizan, Dharana Satsangi, Alexander D Giddey, Gilles Bru-Mercier, Ahmad Farhat, Nesreen K Al-Jezawi, Muhammad Kumail, Nasna Nassir, Bipin Balan, Noor Kosaji, Mariam Eldesouky, Talal Al Yazeedi, Shuhd BinEshaq, Suhana Shiyas, Nidhina Vinod, Saif S Alqassim, Awab Ahmed, Mohammad Amiruddin Hashmi, Nelson C Soares, Marc Woodbury-Smith, Stefan S Du Plessis, Dimitri J Stavropoulos, Stephen W Scherer, Alawi Alsheikh-Ali, Reem Khalil, Mauro Pessia, Maria Cristina D'Adamo, Bakhrom K Berdiev, Mohammed Uddin
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PCR Cloning and Subcloning For the expression of the full-length PPP1R9A gene in mutant iPSCs, the expression vector pcDNA3.1(+) eGFP subcloned with the PPP1R9A gene was obtained from GenScript Biotech Corp (USA). Get A Quote

摘要

Heterozygous loss-of-function variants in Neurabin I (PPP1R9A), responsible for encoding a cytoskeletal scaffolding protein essential for synaptic plasticity, are recurrently associated with neurodevelopmental and neuropsychiatric disorders, yet their direct effects on human neuronal maturation remain unclear. Here, we establish the first comprehensive human mechanistic model of PPP1R9A haploinsufficiency using an isogenic CRISPR/Cas9-engineered iPSC system differentiated into cortical neurons to define dosage-dependent functional consequences. PPP1R9A+/- neurons exhibited pronounced hyperspinogenesis and increased neuritic complexity, indicative of aberrant structural maturation; however, whole-cell patch-clam... More

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