Translation of dipeptide repeat proteins in <i>C9ORF72</i> ALS/FTD through unique and redundant AUG initiation codons.

Sonobe, Yoshifumi; Lee, Soojin; Krishnan, Gopinath; Gu, Yuanzheng; Kwon, Deborah Y; Gao, Fen-Biao; Roos, Raymond P; Kratsios, Paschalis · Elife · 2023

basic_science · Level V

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Abstract

A hexanucleotide repeat expansion in <i>C9ORF72</i> is the most common genetic cause of amyotrophic lateral sclerosis (ALS) and frontotemporal dementia (FTD). A hallmark of ALS/FTD pathology is the presence of dipeptide repeat (DPR) proteins, produced from both sense GGGGCC (poly-GA, poly-GP, poly-GR) and antisense CCCCGG (poly-PR, poly-PG, poly-PA) transcripts. Translation of sense DPRs, such as poly-GA and poly-GR, depends on non-canonical (non-AUG) initiation codons. Here, we provide evidence for canonical AUG-dependent translation of two antisense DPRs, poly-PR and poly-PG. A single AUG is required for synthesis of poly-PR, one of the most toxic DPRs. Unexpectedly, we found redundancy between three AUG codons necessary for poly-PG translation. Further, the eukaryotic translation initiation factor 2D (EIF2D), which was previously implicated in sense DPR synthesis, is not required for AUG-dependent poly-PR or poly-PG translation, suggesting that distinct translation initiation factors control DPR synthesis from sense and antisense transcripts. Our findings on DPR synthesis from the <i>C9ORF72</i> locus may be broadly applicable to many other nucleotide repeat expansion disorders.

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