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Mechanisms of quenching of Alexa fluorophores by natural amino acids.


ABSTRACT: Quenching of fluorophores by the same proteins that they covalently label is a phenomenon that is neither well-known nor well-characterized. It is often assumed that fluorophores are unperturbed by their target proteins. However, it has been observed that attached fluorophores can be quenched by contact with amino acids within the same protein, and this property has been exploited to report on changing conformational states or intramolecular dynamics of proteins. We show in this communication that fluorescence of Alexa dyes is, in fact, quenched by interactions with Trp, Tyr, Met, and His residues through a combination of static and dynamic quenching mechanisms. In light of this finding, the potential effect of intramolecular quenching should be considered in the interpretation of data that involves quantitative measurements of fluorescence intensity in proteins.

SUBMITTER: Chen H 

PROVIDER: S-EPMC2892418 | biostudies-literature | 2010 Jun

REPOSITORIES: biostudies-literature

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Mechanisms of quenching of Alexa fluorophores by natural amino acids.

Chen Huimin H   Ahsan Syed S SS   Santiago-Berrios Mitk'El B MB   Abruña Hector D HD   Webb Watt W WW  

Journal of the American Chemical Society 20100601 21


Quenching of fluorophores by the same proteins that they covalently label is a phenomenon that is neither well-known nor well-characterized. It is often assumed that fluorophores are unperturbed by their target proteins. However, it has been observed that attached fluorophores can be quenched by contact with amino acids within the same protein, and this property has been exploited to report on changing conformational states or intramolecular dynamics of proteins. We show in this communication th  ...[more]

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