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Tandem fluorescence imaging of dynamic S-acylation and protein turnover.


ABSTRACT: The functional significance and regulation of reversible S-acylation on diverse proteins remain unclear because of limited methods for efficient quantitative analysis of palmitate turnover. Here, we describe a tandem labeling and detection method to simultaneously monitor dynamic S-palmitoylation and protein turnover. By combining S-acylation and cotranslational fatty acid chemical reporters with orthogonal clickable fluorophores, dual pulse-chase analysis of Lck revealed accelerated palmitate cycling upon T-cell activation. Subsequent pharmacological perturbation of Lck palmitate turnover suggests yet uncharacterized serine hydrolases contribute to dynamic S-acylation in cells. In addition to dually fatty-acylated proteins, this tandem fluorescence imaging method can be generalized to other S-acylated proteins using azidohomoalanine as a methonine surrogate. The sensitivity and efficiency of this approach should facilitate the functional characterization of cellular factors and drugs that modulate protein S-acylation. Furthermore, diverse protein modifications could be analyzed with this tandem imaging method using other chemical reporters to investigate dynamic regulation of protein function.

SUBMITTER: Zhang MM 

PROVIDER: S-EPMC2889305 | biostudies-literature | 2010 May

REPOSITORIES: biostudies-literature

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Tandem fluorescence imaging of dynamic S-acylation and protein turnover.

Zhang Mingzi M MM   Zhang Mingzi M MM   Tsou Lun K LK   Charron Guillaume G   Raghavan Anuradha S AS   Hang Howard C HC  

Proceedings of the National Academy of Sciences of the United States of America 20100426 19


The functional significance and regulation of reversible S-acylation on diverse proteins remain unclear because of limited methods for efficient quantitative analysis of palmitate turnover. Here, we describe a tandem labeling and detection method to simultaneously monitor dynamic S-palmitoylation and protein turnover. By combining S-acylation and cotranslational fatty acid chemical reporters with orthogonal clickable fluorophores, dual pulse-chase analysis of Lck revealed accelerated palmitate c  ...[more]

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