Journal article
Arginine-rich C9ORF72 ALS proteins stall ribosomes in a manner distinct from a canonical ribosome-associated quality control substrate
V Kriachkov, AR Ormsby, EP Kusnadi, HEG McWilliam, JD Mintern, SL Amarasinghe, ME Ritchie, L Furic, DM Hatters
Journal of Biological Chemistry | ELSEVIER | Published : 2023
Abstract
Hexanucleotide expansion mutations in C9ORF72 are a frequent cause of amyotrophic lateral sclerosis. We previously reported that long arginine-rich dipeptide repeats (DPRs), mimicking abnormal proteins expressed from the hexanucleotide expansion, caused translation stalling when expressed in cell culture models. Whether this stalling provides a mechanism of pathogenicity remains to be determined. Here, we explored the molecular features of DPR-induced stalling and examined whether known mechanisms such as ribosome quality control (RQC) regulate translation elongation on sequences that encode arginine-rich DPRs. We demonstrate that arginine-rich DPRs lead to stalling in a length-dependent man..
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Grants
Awarded by Victorian Cancer Agency
Funding Acknowledgements
This work was funded by grants to D. M. H. (National Health and Medical Research Council APP1161803 and Australian Research Council DP170103093) and to L. F. [Department of Health and Human Services acting through the Victorian Cancer Agency (fellowship MCRF16007) ] .