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

Author:

Dimitrova Dilyana G,Brazane MiraORCID,Pigeon Julien,Paolantoni Chiara,Ye Tao,Marchand VirginieORCID,Da Silva Bruno,Schaefer Elise,Angelova Margarita T,Stark ZornitzaORCID,Delatycki MartinORCID,Dudding-Byth TracyORCID,Gecz JozefORCID,Placais Pierre-Yves,Teysset LaureORCID,Preat Thomas,Piton AmélieORCID,Hassan Bassem A.ORCID,Roignant Jean-Yves,Motorin YuriORCID,Carré ClémentORCID

Abstract

ABSTRACTFTSJ1 is a conserved human 2’-O-methyltransferase (Nm-MTase) that modifies several transfer RNAs (tRNAs) at position 32 and the wobble position 34 in the AntiCodon Loop (ACL). Its loss of function has been linked to Non-Syndromic X-Linked Intellectual Disability (NSXLID), and more recently to cancers. However, the molecular mechanisms underlying these pathologies are currently unclear. Here we report a novel FTSJ1 pathogenic variant from a NSXLID patient. Using blood cells derived from this patient and other affected individuals carrying FTSJ1 mutations, we performed an unbiased and comprehensive RiboMethSeq analysis to map the ribose methylation (Nm) on all 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 neuronal progenitor cells (NPC) into neurons displays long and thin spine neurites compared to control cells. These defects are also observed in Drosophila and are associated with long term memory deficit in this organism. Altogether, our study adds insight into FTSJ1 pathologies in human by the identification of novel FTSJ1 targets and the defect in neuron morphology.

Publisher

Cold Spring Harbor Laboratory

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