Maroofian, Reza

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Banks, Emily; Francis, Vincent; Lin, Sheng-Jia; Kharfallah, Fares; Fonov, Vladimir; Lévesque, Maxime; Han, Chanshuai; Kulasekaran, Gopinath; Tuznik, Marius; Bayati, Armin; Al-Khater, Reem; Alkuraya, Fowzan S; Argyriou, Loukas; Babaei, Meisam; Bahlo, Melanie; Bakhshoodeh, Behnoosh; Barr, Eileen; Bartik, Lauren; Bassiony, Mahmoud; Bertrand, Miriam; ... (2024). Loss of symmetric cell division of apical neural progenitors drives DENND5A-related developmental and epileptic encephalopathy. Nature communications, 15(7239) Nature Publishing Group 10.1038/s41467-024-51310-z

Saffari, Afshin; Lau, Tracy; Tajsharghi, Homa; Karimiani, Ehsan Ghayoor; Kariminejad, Ariana; Efthymiou, Stephanie; Zifarelli, Giovanni; Sultan, Tipu; Toosi, Mehran Beiraghi; Sedighzadeh, Sahar; Siu, Victoria Mok; Ortigoza-Escobar, Juan Darío; AlShamsi, Aisha M; Ibrahim, Shahnaz; Al-Sannaa, Nouriya Abbas; Al-Hertani, Walla; Sandra, Whalen; Tarnopolsky, Mark; Alavi, Shahryar; Li, Chumei; ... (2023). The clinical and genetic spectrum of autosomal-recessive TOR1A-related disorders. Brain : a journal of neurology, 146(8), pp. 3273-3288. Oxford University Press 10.1093/brain/awad039

Langhammer, Franziska; Maroofian, Reza; Badar, Rueda; Gregor, Anne; Rochman, Michelle; Ratliff, Jeffrey B; Koopmans, Marije; Herget, Theresia; Hempel, Maja; Kortüm, Fanny; Heron, Delphine; Mignot, Cyril; Keren, Boris; Brooks, Susan; Botti, Christina; Ben-Zeev, Bruria; Argilli, Emanuela; Sherr, Elliot H; Gowda, Vykuntaraju K; Srinivasan, Varunvenkat M; ... (2023). Genotype-phenotype correlations in RHOBTB2-associated neurodevelopmental disorders. Genetics in medicine, 25(8), p. 100885. Springer Nature 10.1016/j.gim.2023.100885

Gracia-Diaz, Carolina; Zhou, Yijing; Yang, Qian; Maroofian, Reza; Espana-Bonilla, Paula; Lee, Chul-Hwan; Zhang, Shuo; Padilla, Natàlia; Fueyo, Raquel; Waxman, Elisa A; Lei, Sunyimeng; Otrimski, Garrett; Li, Dong; Sheppard, Sarah E; Mark, Paul; Harr, Margaret H; Hakonarson, Hakon; Rodan, Lance; Jackson, Adam; Vasudevan, Pradeep; ... (2023). Gain and loss of function variants in EZH1 disrupt neurogenesis and cause dominant and recessive neurodevelopmental disorders. Nature Communications, 14(1), p. 4109. Springer Nature 10.1038/s41467-023-39645-5

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