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Neurodegenerative diseases: Quantitative predictions of protein–RNA interactions

by: Davide Cirillo, Federico Agostini, Petr Klus, Domenica Marchese, Silvia Rodriguez, Benedetta Bolognesi, Gian G. Tartaglia
RNA, Vol. 19, No. 2. (1 February 2013), pp. 129-140, doi:10.1261/rna.034777.112  Key: citeulike:11863341

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Abstract

Increasing evidence indicates that RNA plays an active role in a number of neurodegenerative diseases. We recently introduced a theoretical framework, catRAPID, to predict the binding ability of protein and RNA molecules. Here, we use catRAPID to investigate ribonucleoprotein interactions linked to inherited intellectual disability, amyotrophic lateral sclerosis, Creutzfeuld-Jakob, Alzheimer’s, and Parkinson’s diseases. We specifically focus on (1) RNA interactions with fragile X mental retardation protein FMRP; (2) protein sequestration caused by CGG repeats; (3) noncoding transcripts regulated by TAR DNA-binding protein 43 TDP-43; (4) autogenous regulation of TDP-43 and FMRP; (5) iron-mediated expression of amyloid precursor protein APP and α-synuclein; (6) interactions between prions and RNA aptamers. Our results are in striking agreement with experimental evidence and provide new insights in processes associated with neuronal function and misfunction.


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