Protein S-sulfhydration has been recognized as an important post-translational modification that regulates H2S signals. However, the reactivity and biological implications of the products of S-sulfhydration, i.e. persulfides, are still unclear. This is mainly due to the instability of persulfides and difficulty to access these molecules. Under physiological conditions persulfides mainly exist in anionic forms because of their low pKa values. However, current methods do not allow for the direct generation of persulfide anions under biomimetic and non-H2S conditions. Herein we report the development of a functional disulfide, FmSSPy-A (Fm =9-fluorenylmethyl; Py = pyridinyl). This reagent can effectively convert both small molecule and protein thiols (-SH) to form –S-SFm adducts under mild conditions. It allows for a H2S-free and biomimetic protocol to generate highly reactive persulfides (in their anionic forms). We also demonstrated the high nucleophilicity of persulfides toward a number of thiol-blocking reagents. This method holds promise for further understanding the chemical biology of persulfides and S-sulfhydration.
Revised: December 19, 2016 |
Published: February 12, 2016
Citation
Park C., B.A. Johnson, J. Duan, J. Park, J.J. Day, D.R. Gang, and W. Qian, et al. 2016.9-Fluoenylmethyl (Fm) Disulfides: Biomimetic Precursors for Persulfides.Organic Letters 18, no. 5:904-907.PNNL-SA-115055.doi:10.1021/acs.orglett.5b03557