Literature DB >> 12950445

A comparison of amyloid fibrillogenesis using the novel fluorescent compound K114.

Adam S Crystal1, Benoit I Giasson, Alexander Crowe, Mei-Ping Kung, Zhi-Ping Zhuang, John Q Trojanowski, Virginia M-Y Lee.   

Abstract

Proteinaceous inclusions with amyloidogenic properties are a common link between many neurodegenerative diseases, including Alzheimer's disease and Parkinson's disease. Histological and in vitro studies of amyloid fibrils have advanced the understanding of protein aggregation, and provided important insights into pathogenic mechanisms of these neurodegenerative brain amyloidoses. The classical amyloid dyes Congo Red (CR) and thioflavin T and S, have been used extensively to detect amyloid inclusions in situ. These dyes have also been utilized to monitor the maturation of amyloid fibrils assembled from monomer subunits in vitro. Recently, the compound (trans,trans)-1-bromo-2,5-bis-(3- hydroxycarbonyl-4-hydroxy)styrylbenzene (BSB), derived from the structure of CR, was shown to bind to a wide range of amyloid inclusions in situ. More importantly it was also used to label brain amyloids in live animals. Herein, we show that an analogue of BSB, (trans,trans)-1-bromo-2,5-bis-(4-hydroxy)styrylbenzene (K114), recognizes amyloid lesions, and has distinctive properties which allowed the quantitative monitoring of the formation of amyloid fibrils assembled from the amyloid-beta peptide, alpha-synuclein, and tau.

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Year:  2003        PMID: 12950445     DOI: 10.1046/j.1471-4159.2003.01949.x

Source DB:  PubMed          Journal:  J Neurochem        ISSN: 0022-3042            Impact factor:   5.372


  54 in total

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7.  Physiological C-terminal truncation of α-synuclein potentiates the prion-like formation of pathological inclusions.

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8.  Adsorption and decontamination of α-synuclein from medically and environmentally-relevant surfaces.

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9.  Specificity and regulation of casein kinase-mediated phosphorylation of alpha-synuclein.

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