Human Molecular Genetics · 2016 · 45 citations · 27 references
Larger DprsGeneticsMolecular BiologyDisease Gene IdentificationSynaptic SignalingProtein FoldingProteomicsRelevant SizeProtein ChemistryLongest DprsBiochemistryC9orf72 ExpansionsProtein ModelingProtein BioinformaticsNatural SciencesPeptide LibraryComputational BiologyProtein EvolutionDegenerative DiseaseProtein EngineeringNeuroscienceSystems BiologyMedicine
C9orf72 expansions are the most common genetic cause of FTLD and MND identified to date. Although being intronic, the expansion is translated into five different dipeptide repeat proteins (DPRs) that accumulate within patients' neurons. Attempts have been made to model DPRs in cell and animals. However, the majority of these use DPRs repeat numbers much shorter than those observed in patients. To address this we have generated a selection of DPR expression constructs with repeat numbers in excess of 1000 repeats, matching what is seen in patients. Small and larger DPRs produce inclusions with similar morphology but different cellular effects. We demonstrate a length dependent effect using electrophysiology with a phenotype only occurring with the longest DPRs. These data highlight the importance of using physiologically relevant repeat numbers when modelling DPRs.
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Kohji Mori, Shih‐Ming Weng, Thomas Arzberger et al. · Science · 2013 · 1.3K citations
Elisa Majounie, Alan E. Renton, Kin Y. Mok et al. · The Lancet Neurology · 2012 · 1.2K citations · Full text
Neurodegenerative Diseases, Amyotrophic Lateral Sclerosis, Dementia +7
GGGGCC repeat expansion in C9orf72 compromises nucleocytoplasmic transport
Brian D. Freibaum, Yubing Lu, Nam Chul Kim et al. · Nature · 2015 · 831 citations · Full text