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Phosphorylation of huntingtin at residue T3 is decreased in Huntington's disease and modulates mutant huntingtin protein conformation.

Proc. Natl. Acad. Sci. U.S.A.. 2017; 
CariuloCristina,AzzolliniLucia,VeraniMargherita,MartufiPaola,BoggioRoberto,ChikiAnass,DeguireSean M,CherubiniMarta,GinesSilvia,MarshJ Lawrence,ConfortiPaola,CattaneoElena,SantimoneIolanda,SquitieriFerdinando,LashuelHilal A,PetriccaLara,CaricasoleAn
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DNA Sequencing cDNAs encoding N-terminal HTT fragments (exon 1) bearing different polyQ lengths (Q16, Q39, or Q72) were synthesized by Genscript, quality-controlled by DNA sequencing, and subcloned into pCDNA3.1, and their expression in mammalian cells was validated as previously reported (24). N17 domain mutant HTT exon 1 constructs (threonine in position 3 mutated to alanine) were synthesized and validated as above. cDNAs encoding human full-length HTT (Q18) in pCDNA3.1 were reported previously (75). Get A Quote

摘要

Posttranslational modifications can have profound effects on the biological and biophysical properties of proteins associated with misfolding and aggregation. However, their detection and quantification in clinical samples and an understanding of the mechanisms underlying the pathological properties of misfolding- and aggregation-prone proteins remain a challenge for diagnostics and therapeutics development. We have applied an ultrasensitive immunoassay platform to develop and validate a quantitative assay for detecting a posttranslational modification (phosphorylation at residue T3) of a protein associated with polyglutamine repeat expansion, namely Huntingtin, and characterized its presence in a variety... More

关键词

huntingtin,immunoassay,neurodegeneration,phosphorylation,posttranslational modifica