The RNA-binding protein FUS participates in several RNA biosynthetic processes and has been linked to the pathogenesis of amyotrophic lateral sclerosis (ALS) and frontotemporal dementia. Here we report that FUS controls back-splicing reactions leading to circular RNA (circRNA) production. We identified circRNAs expressed in in vitro -derived mouse motor neurons (MNs) and determined that the production of a considerable number of these circRNAs is regulated by FUS. Using RNAi and overexpression of wild-type and ALS-asso- ciated FUS mutants, we directly correlate the modulation of circRNA biogenesis with alteration of FUS nuclear levels and with putative toxic gain of function activities. We also demonstrate that FUS regulates circRNA biogenesis by binding the introns flanking the back-splicing junctions and that this control can be reproduced with artificial constructs. Most circRNAs are conserved in humans and specific ones are deregulated in human-induced pluripotent stem cell-derived MNs carrying the FUS P525L mutation associated with ALS

FUS affects circular RNA expression in murine embryonic stem cell-derived motor neurons / Errichelli, Lorenzo; DINI MODIGLIANI, Stefano; Laneve, Pietro; Colantoni, Alessio; Legnini, Ivano; Capauto, Davide; Rosa, Alessandro; DE SANTIS, Riccardo; Scarfò, Rebecca; Peruzzi, Giovanna; Lu, Lei; Caffarelli, Elisa; Shneider, Neil A.; Morlando, Mariangela; Bozzoni, Irene. - In: NATURE COMMUNICATIONS. - ISSN 2041-1723. - 8:(2017), p. 14741. [10.1038/ncomms14741]

FUS affects circular RNA expression in murine embryonic stem cell-derived motor neurons

ERRICHELLI, LORENZO;DINI MODIGLIANI, STEFANO;LANEVE, Pietro;COLANTONI, ALESSIO;LEGNINI, IVANO;CAPAUTO, DAVIDE;ROSA, ALESSANDRO;DE SANTIS, RICCARDO;PERUZZI, Giovanna;CAFFARELLI, ELISA;MORLANDO, MARIANGELA;BOZZONI, Irene
2017

Abstract

The RNA-binding protein FUS participates in several RNA biosynthetic processes and has been linked to the pathogenesis of amyotrophic lateral sclerosis (ALS) and frontotemporal dementia. Here we report that FUS controls back-splicing reactions leading to circular RNA (circRNA) production. We identified circRNAs expressed in in vitro -derived mouse motor neurons (MNs) and determined that the production of a considerable number of these circRNAs is regulated by FUS. Using RNAi and overexpression of wild-type and ALS-asso- ciated FUS mutants, we directly correlate the modulation of circRNA biogenesis with alteration of FUS nuclear levels and with putative toxic gain of function activities. We also demonstrate that FUS regulates circRNA biogenesis by binding the introns flanking the back-splicing junctions and that this control can be reproduced with artificial constructs. Most circRNAs are conserved in humans and specific ones are deregulated in human-induced pluripotent stem cell-derived MNs carrying the FUS P525L mutation associated with ALS
2017
Chemistry (all); Biochemistry, Genetics and Molecular Biology (all); Physics and Astronomy (all)
01 Pubblicazione su rivista::01a Articolo in rivista
FUS affects circular RNA expression in murine embryonic stem cell-derived motor neurons / Errichelli, Lorenzo; DINI MODIGLIANI, Stefano; Laneve, Pietro; Colantoni, Alessio; Legnini, Ivano; Capauto, Davide; Rosa, Alessandro; DE SANTIS, Riccardo; Scarfò, Rebecca; Peruzzi, Giovanna; Lu, Lei; Caffarelli, Elisa; Shneider, Neil A.; Morlando, Mariangela; Bozzoni, Irene. - In: NATURE COMMUNICATIONS. - ISSN 2041-1723. - 8:(2017), p. 14741. [10.1038/ncomms14741]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/950933
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