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Lysine-Less Variants of Spinal Muscular Atrophy SMN and SMNΔ7 Proteins Are Degraded by the Proteasome Pathway.

Int J Mol Sci. 2017; 
Sánchez-LanzasRaúl,CastañoJos
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PCR Cloning and Subcloning Amplified DNAs were subcloned into pcDNA3.1 vector (Invitrogen) after digestion with BamHI/XhoI. Lysine-less variants (K0) with all Lys residues changed to Arg of SMN or SMN∆7 were synthesized by GenScript and subcloned into the appropriate vectors as indicated above. Get A Quote

摘要

Spinal muscular atrophy is due to mutations affecting the gene coding for the full-length protein (survival motor neuron; SMN) and the gene that preferentially generates an exon 7-deleted protein (SMNΔ7) by alternative splicing. To study SMN and SMNΔ7 degradation in the cell, we have used tagged versions at the N- (Flag) or C-terminus (V5) of both proteins. Transfection of those constructs into HeLa cells and treatment with cycloheximide showed that those protein constructs were degraded. Proteasomal degradation usually requires prior lysine ubiquitylation. Surprisingly, lysine-less variants of both proteins tagged either at N- (Flag) or C-terminus (V5) were also degraded. The degradation of the endogen... More

关键词

proteasome,protein degradation discipline,survival motor neuron (SMN),ubiqu