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Chimeric Peptide Species Contribute to Divergent Dipeptide Repeat Pathology in c9ALS/FTD and SCA36.


ABSTRACT: GGGGCC hexanucleotide repeat expansions (HREs) in C9orf72 cause amyotrophic lateral sclerosis (ALS) and frontotemporal dementia (FTD) and lead to the production of aggregating dipeptide repeat proteins (DPRs) via repeat associated non-AUG (RAN) translation. Here, we show the similar intronic GGCCTG HREs that causes spinocerebellar ataxia type 36 (SCA36) is also translated into DPRs, including poly(GP) and poly(PR). We demonstrate that poly(GP) is more abundant in SCA36 compared to c9ALS/FTD patient tissue due to canonical AUG-mediated translation from intron-retained GGCCTG repeat RNAs. However, the frequency of the antisense RAN translation product poly(PR) is comparable between c9ALS/FTD and SCA36 patient samples. Interestingly, in SCA36 patient tissue, poly(GP) exists as a soluble species, and no TDP-43 pathology is present. We show that aggregate-prone chimeric DPR (cDPR) species underlie the divergent DPR pathology between c9ALS/FTD and SCA36. These findings reveal key differences in translation, solubility, and protein aggregation of DPRs between c9ALS/FTD and SCA36.

SUBMITTER: McEachin ZT 

PROVIDER: S-EPMC8138626 | biostudies-literature | 2020 Jul

REPOSITORIES: biostudies-literature

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Chimeric Peptide Species Contribute to Divergent Dipeptide Repeat Pathology in c9ALS/FTD and SCA36.

McEachin Zachary T ZT   Gendron Tania F TF   Raj Nisha N   García-Murias María M   Banerjee Anwesha A   Purcell Ryan H RH   Ward Patricia J PJ   Todd Tiffany W TW   Merritt-Garza Megan E ME   Jansen-West Karen K   Hales Chadwick M CM   García-Sobrino Tania T   Quintáns Beatriz B   Holler Christopher J CJ   Taylor Georgia G   San Millán Beatriz B   Teijeira Susana S   Yamashita Toru T   Ohkubo Ryuichi R   Boulis Nicholas M NM   Xu Chongchong C   Wen Zhexing Z   Streichenberger Nathalie N   Fogel Brent L BL   Kukar Thomas T   Abe Koji K   Dickson Dennis W DW   Arias Manuel M   Glass Jonathan D JD   Jiang Jie J   Tansey Malú G MG   Sobrido María-Jesús MJ   Petrucelli Leonard L   Rossoll Wilfried W   Bassell Gary J GJ  

Neuron 20200505 2


GGGGCC hexanucleotide repeat expansions (HREs) in C9orf72 cause amyotrophic lateral sclerosis (ALS) and frontotemporal dementia (FTD) and lead to the production of aggregating dipeptide repeat proteins (DPRs) via repeat associated non-AUG (RAN) translation. Here, we show the similar intronic GGCCTG HREs that causes spinocerebellar ataxia type 36 (SCA36) is also translated into DPRs, including poly(GP) and poly(PR). We demonstrate that poly(GP) is more abundant in SCA36 compared to c9ALS/FTD pati  ...[more]

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