Nuclear translocation of LINE-1 ORF1p alters nuclear envelope integrity and disrupts nucleocytoplasmic transport in neurons
Znaidi, R.; Massiani-Beaudoin, O.; Mailly, P.; Monnet, H.; Joshi, R.; Fuchs, J.
Show abstract
LINE-1 retrotransposons are emerging as possible culprits in neurodegenerative diseases. However, the molecular mechanisms underlying the pathogenic role of LINE-1 and their encoded proteins ORF1p and ORF2p are still not completely understood. While the endonuclease and reverse transcriptase activities of ORF2p have been associated with DNA damage and inflammation, no pathogenic role has yet been assigned to ORF1p. Using a neuronal model of oxidative stress displaying increased LINE-1 expression, we report here that ORF1p stress-dependently translocated into the nucleus, localized to the nuclear envelope and directly interacted with nuclear import proteins, nuclear pore complex components and the inner nuclear lamina. Stress-dependent targeting of nuclear envelope components by ORF1p altered nuclear envelope integrity, disrupted nucleocytoplasmic transport and induced heterochromatin destructuration, features associated with neurodegenerative diseases and aging. Neurons of post-mortem Parkinson disease (PD) patients and non-PD affected controls expressed ORF1p and nuclear ORF1p levels correlated with altered nuclear shape in PD. Overexpression of ORF1p in neurons in the absence of stress recapitulated nuclear envelope dysfunctions and increased nuclear ORF1p levels correlated with a loss of nuclear circularity. Stress-induced nuclear alterations were restored by blocking ORF1p nuclear import or by the small molecule remodelin. This study thus reveals a retrotransposition- and ORF2p- independent pathogenic action of ORF1p at the nuclear envelope and points to ORF1p as a novel target for neuroprotection.
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