Published in

Nature Research, Scientific Reports, 1(5), 2015

DOI: 10.1038/srep10757

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Facilitated Tau Degradation by USP14 Aptamers via Enhanced Proteasome Activity

This paper is made freely available by the publisher.
This paper is made freely available by the publisher.

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Abstract

AbstractThe ubiquitin-proteasome system (UPS) is the primary mechanism by which intracellular proteins, transcription factors and many proteotoxic proteins with aggregation-prone structures are degraded. The UPS is reportedly downregulated in various neurodegenerative disorders, with increased proteasome activity shown to be beneficial in many related disease models. Proteasomes function under tonic inhibitory conditions, possibly via the ubiquitin chain-trimming function of USP14, a proteasome-associated deubiquitinating enzyme (DUB). We identified three specific RNA aptamers of USP14 (USP14-1, USP14-2 and USP14-3) that inhibited its deubiquitinating activity. The nucleotide sequences of these non-cytotoxic USP14 aptamers contained conserved GGAGG motifs, with G-rich regions upstream and similar secondary structures. They efficiently elevated proteasomal activity, as determined by the increased degradation of small fluorogenic peptide substrates and physiological polyubiquitinated Sic1 proteins. Additionally, proteasomal degradation of tau proteins was facilitated in the presence of the UPS14 aptamers in vitro. Our results indicate that these novel inhibitory UPS14 aptamers can be used to enhance proteasome activity and to facilitate the degradation of proteotoxic proteins, thereby protecting cells from various neurodegenerative stressors.