Beck_2017_Chem.Sci_8_7588

Reference

Title : Michael addition-based probes for ratiometric fluorescence imaging of protein S-depalmitoylases in live cells and tissues - Beck_2017_Chem.Sci_8_7588
Author(s) : Beck MW , Kathayat RS , Cham CM , Chang EB , Dickinson BC
Ref : Chem Sci , 8 :7588 , 2017
Abstract :

The reversible modification of cysteine residues through thioester formation with palmitate (protein S-palmitoylation) is a prevalent chemical modification that regulates the function, localization, and stability of many proteins. Current methods for monitoring the "erasers" of S-palmitoylation, acyl-protein thioesterases (APTs), rely on destructive proteomic methods or "turn-on" probes, precluding deployment in heterogeneous samples such as primary tissues. To address these challenges, we present the design, synthesis, and biological evaluation of Ratiometric Depalmitoylation Probes (RDPs). RDPs respond to APTs with a robust ratiometric change in fluorescent signal both in vitro and in live cells. Moreover, RDPs can monitor endogenous APT activities in heterogeneous primary human tissues such as colon organoids, presaging the utility of these molecules in uncovering novel roles for APTs in metabolic regulation.

PubMedSearch : Beck_2017_Chem.Sci_8_7588
PubMedID: 29568422

Related information

Citations formats

Beck MW, Kathayat RS, Cham CM, Chang EB, Dickinson BC (2017)
Michael addition-based probes for ratiometric fluorescence imaging of protein S-depalmitoylases in live cells and tissues
Chem Sci 8 :7588

Beck MW, Kathayat RS, Cham CM, Chang EB, Dickinson BC (2017)
Chem Sci 8 :7588