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[Preprint]. 2024 Nov 18:2024.03.01.24303485. Originally published 2024 Mar 5. [Version 2] doi: 10.1101/2024.03.01.24303485

Neurodevelopmental disorders associated variants in ADAT3 disrupt the activity of the ADAT2/ADAT3 tRNA deaminase complex and impair neuronal migration

Jordi Del-Pozo-Rodriguez, Peggy Tilly, Romain Lecat, Hugo Rolando Vaca, Laureline Mosser, Elena Brivio, Till Balla, Marina Vitoria Gomes, Elizabeth Ramos-Morales, Noémie Schwaller, Thalia Salinas-Giegé, Grace VanNoy, Eleina M England, Alysia Kern Lovgren, Melanie O’Leary, Maya Chopra, Naomi Meave Ojeda, Mehran Beiraghi Toosi, Atieh Eslahi, Masoome Alerasool, Majid Mojarrad, Lynn S Pais, Rebecca C Yeh, Dustin L Gable, Mais O Hashem, Firdous Abdulwahab, Hamad Alzaidan, Hesham Aldhalaan, Ehab Tous, Afaf Alsagheir, Mohammed Alowain, Abdullah Tamim, Khowlah Alfayez, Amal Alhashem, Aisha Alnuzha, Mona Kamel, Bashayer S Al-Awam, Walaa Elnaggar, Nihal Almenabawy, Anne O’Donnell-Luria, Jennifer E Neil, Joseph G Gleeson, Christopher A Walsh, Fowzan S Alkuraya, Lama AlAbdi, Nour Elkhateeb, Laila Selim, Siddharth Srivastava, Danny D Nedialkova, Laurence Drouard, Christophe Romier, Efil Bayam, Juliette D Godin
PMCID: PMC10942499  PMID: 38496416

Abstract

The ADAT2/ADAT3 complex catalyzes the adenosine to inosine modification at the wobble position of eukaryotic tRNAs. Mutations in ADAT3 , the catalytically inactive subunit of the ADAT2/ADAT3 complex, have been identified in patients presenting with severe neurodevelopmental disorders (NDDs). Yet, the physiological function of ADAT2/ADAT3 complex during brain development remains totally unknown. Here we showed that maintaining a proper level of ADAT2/ADAT3 catalytic activity is required for correct radial migration of projection neurons in the developing mouse cortex. In addition, we not only reported 20 new NDD patients carrying biallelic variants in ADAT3 but also deeply characterized the impact of those variants on ADAT2/ADAT3 structure, biochemical properties, enzymatic activity and tRNAs editing and abundance. We demonstrated that all the identified variants alter both the abundance and the activity of the complex leading to a significant decrease of I 34 with direct consequence on their steady-state. Using in vivo complementation assays, we correlated the severity of the migration phenotype with the degree of the loss of function caused by the variants. Altogether, our results indicate a critical role of ADAT2/ADAT3 during cortical development and provide cellular and molecular insights into the pathogenicity of ADAT3-related neurodevelopmental disorder.

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