Active and dynamic mitochondrial S-depalmitoylation revealed by targeted fluorescent probes.
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| Abstract | :  The reversible modification of cysteine residues by thioester formation with palmitate (S-palmitoylation) is an abundant lipid post-translational modification (PTM) in mammalian systems. S-palmitoylation has been observed on mitochondrial proteins, providing an intriguing potential connection between metabolic lipids and mitochondrial regulation. However, it is unknown whether and/or how mitochondrial S-palmitoylation is regulated. Here we report the development of mitoDPPs, targeted fluorescent probes that measure the activity levels of "erasers" of S-palmitoylation, acyl-protein thioesterases (APTs), within mitochondria of live cells. Using mitoDPPs, we discover active S-depalmitoylation in mitochondria, in part mediated by APT1, an S-depalmitoylase previously thought to reside in the cytosol and on the Golgi apparatus. We also find that perturbation of long-chain acyl-CoA cytoplasm and mitochondrial regulatory proteins, respectively, results in selective responses from cytosolic and mitochondrial S-depalmitoylases. Altogether, this work reveals that mitochondrial S-palmitoylation is actively regulated by "eraser" enzymes that respond to alterations in mitochondrial lipid homeostasis. | 
| Year of Publication | :  2018 | 
| Journal | :  Nature communications | 
| Volume | :  9 | 
| Issue | :  1 | 
| Number of Pages | :  334 | 
| Date Published | :  2018 | 
| URL | :  http://dx.doi.org/10.1038/s41467-017-02655-1 | 
| DOI | :  10.1038/s41467-017-02655-1 | 
| Short Title | :  Nat Commun | 
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