A structural and mechanistic study of pi-clamp-mediated cysteine perfluoroarylation

作者:Dai Peng; Williams Jonathan K; Zhang Chi; Welborn Matthew; Shepherd James J; Zhu Tianyu; Van Voorhis Troy; Hong Mei; Pentelute Bradley L*
来源:Scientific Reports, 2017, 7(1): 7954.
DOI:10.1038/s41598-017-08402-2

摘要

Natural enzymes use local environments to tune the reactivity of amino acid side chains. In searching for small peptides with similar properties, we discovered a four-residue pi-clamp motif (Phe-Cys-ProPhe) for regio- and chemoselective arylation of cysteine in ribosomally produced proteins. Here we report mutational, computational, and structural findings directed toward elucidating the molecular factors that drive pi-clamp-mediated arylation. We show the significance of a trans conformation prolyl amide bond for the pi-clamp reactivity. The pi-clamp cysteine arylation reaction enthalpy of activation (Delta H-double dagger) is significantly lower than a non-pi-clamp cysteine. Solid-state NMR chemical shifts indicate the prolyl amide bond in the pi-clamp motif adopts a 1: 1 ratio of the cis and trans conformation, while in the reaction product Pro3 was exclusively in trans. In two structural models of the perfluoroarylated product, distinct interactions at 4.7 angstrom between Phe1 side chain and perfluoroaryl electrophile moiety are observed. Further, solution F-19 NMR and isothermal titration calorimetry measurements suggest interactions between hydrophobic side chains in a pi-clamp mutant and the perfluoroaryl probe. These studies led us to design a pi-clamp mutant with an 85-fold rate enhancement. These findings will guide us toward the discovery of small reactive peptides to facilitate abiotic chemistry in water.

  • 出版日期2017-8-11
  • 单位MIT