The ribose methylation enzyme FTSJ1 has a conserved role in neuron morphology and learning performance

Author:

Brazane Mira1ORCID,Dimitrova Dilyana G1,Pigeon Julien2ORCID,Paolantoni Chiara3,Ye Tao4ORCID,Marchand Virginie5ORCID,Da Silva Bruno1,Schaefer Elise6ORCID,Angelova Margarita T1ORCID,Stark Zornitza7ORCID,Delatycki Martin7,Dudding-Byth Tracy8,Gecz Jozef9ORCID,Plaçais Pierre-Yves10,Teysset Laure1ORCID,Préat Thomas10ORCID,Piton Amélie4,Hassan Bassem A2ORCID,Roignant Jean-Yves311ORCID,Motorin Yuri12ORCID,Carré Clément1ORCID

Affiliation:

1. Transgenerational Epigenetics & Small RNA Biology, Sorbonne Université, Centre National de la Recherche Scientifique, Laboratoire de Biologie du Développement - Institut de Biologie Paris Seine, Paris, France

2. Paris Brain Institute-Institut du Cerveau (ICM), Sorbonne Université, Inserm, CNRS, Hôpital Pitié-Salpêtrière, Paris, France

3. Center for Integrative Genomics, Génopode Building, Faculty of Biology and Medicine, University of Lausanne, Lausanne, Switzerland

4. Institute of Genetics and Molecular and Cellular Biology, Strasbourg University, CNRS UMR7104, INSERM U1258, Illkirch, France

5. Université de Lorraine, CNRS, INSERM, EpiRNASeq Core Facility, UMS2008/US40 IBSLor,Nancy, France

6. Service de Génétique Médicale, Hôpitaux Universitaires de Strasbourg, Institut de Génétique Médicale d’Alsace, Strasbourg, France

7. Victorian Clinical Genetics Services, Murdoch Children’s Research Institute, Melbourne, Australia; Department of Paediatrics, The University of Melbourne, Melbourne, Australia

8. University of Newcastle, Newcastle, Australia

9. Adelaide Medical School and Robinson Research Institute, The University of Adelaide; South Australian Health and Medical Research Institute, Adelaide, Australia

10. Energy & Memory, Brain Plasticity Unit, CNRS, ESPCI Paris, PSL Research University, Paris, France

11. Institute of Pharmaceutical and Biomedical Sciences, Johannes Gutenberg-University Mainz, Mainz, Germany

12. Université de Lorraine, CNRS, UMR7365 IMoPA, Nancy, France

Abstract

FTSJ1 is a conserved human 2′-O-methyltransferase (Nm-MTase) that modifies several tRNAs at position 32 and the wobble position 34 in the anticodon loop. Its loss of function has been linked to X-linked intellectual disability (XLID), and more recently to cancers. However, the molecular mechanisms underlying these pathologies are currently unclear. Here, we report a novelFTSJ1pathogenic variant from an X-linked intellectual disability patient. Using blood cells derived from this patient and other affected individuals carryingFTSJ1mutations, we performed an unbiased and comprehensive RiboMethSeq analysis to map the ribose methylation on all human tRNAs and identify novel targets. In addition, we performed a transcriptome analysis in these cells and found that several genes previously associated with intellectual disability and cancers were deregulated. We also found changes in the miRNA population that suggest potential cross-regulation of some miRNAs with these key mRNA targets. Finally, we show that differentiation of FTSJ1-depleted human neural progenitor cells into neurons displays long and thin spine neurites compared with control cells. These defects are also observed inDrosophilaand are associated with long-term memory deficits. Altogether, our study adds insight into FTSJ1 pathologies in humans and flies by the identification of novel FTSJ1 targets and the defect in neuron morphology.

Funder

Agence Nationale de la Recherche

Fondation Maladies Rares

Sorbonne Université

Deutsche Forschungsgemeinschaft

Fondation pour la Recherche Médicale

Ligue National contre le cancer Île de France

Publisher

Life Science Alliance, LLC

Subject

Health, Toxicology and Mutagenesis,Plant Science,Biochemistry, Genetics and Molecular Biology (miscellaneous),Ecology

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