1. Mis-spliced transcripts generate de novo proteins in TDP-43-related ALS/FTD
- Author
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Sahba Seddighi, Yue A. Qi, Anna-Leigh Brown, Oscar G. Wilkins, Colleen Bereda, Cedric Belair, Yongjie Zhang, Mercedes Prudencio, Matthew J Keuss, Aditya Khandeshi, Sarah Pickles, Sarah E. Hill, James Hawrot, Daniel M. Ramos, Hebao Yuan, Jessica Roberts, Erika Kelmer Sacramento, Syed I. Shah, Mike A. Nalls, Jenn Colon-Mercado, Joel F. Reyes, Veronica H. Ryan, Matthew P. Nelson, Casey Cook, Ziyi Li, Laurel Screven, Justin Y Kwan, Anantharaman Shantaraman, Lingyan Ping, Yuka Koike, Björn Oskarsson, Nathan Staff, Duc M. Duong, Aisha Ahmed, Maria Secrier, Jerneg Ule, Steven Jacobson, Jonathan Rohrer, Andrea Malaspina, Jonathan D. Glass, Alessandro Ori, Nicholas T. Seyfried, Manolis Maragkakis, Leonard Petrucelli, Pietro Fratta, and Michael E. Ward
- Subjects
Article - Abstract
Functional loss of TDP-43, an RNA-binding protein genetically and pathologically linked to ALS and FTD, leads to inclusion of cryptic exons in hundreds of transcripts during disease. Cryptic exons can promote degradation of affected transcripts, deleteriously altering cellular function through loss-of-function mechanisms. However, the possibility ofde novoprotein synthesis from cryptic exon transcripts has not been explored. Here, we show that mRNA transcripts harboring cryptic exons generatede novoproteins both in TDP-43 deficient cellular models and in disease. Using coordinated transcriptomic and proteomic studies of TDP-43 depleted iPSC-derived neurons, we identified numerous peptides that mapped to cryptic exons. Cryptic exons identified in iPSC models were highly predictive of cryptic exons expressed in brains of patients with TDP-43 proteinopathy, including cryptic transcripts that generatedde novoproteins. We discovered that inclusion of cryptic peptide sequences in proteins altered their interactions with other proteins, thereby likely altering their function. Finally, we showed that thesede novopeptides were present in CSF from patients with ALS. The demonstration of cryptic exon translation suggests new mechanisms for ALS pathophysiology downstream of TDP-43 dysfunction and may provide a strategy for novel biomarker development.One Sentence SummaryLoss of TDP-43 function results in the expression ofde novoproteins from mis-spliced mRNA transcripts.
- Published
- 2023