Metalloprotein entatic control of ligand-metal bonds quantified by ultrafast x-ray spectroscopy.

Mara, Michael W; Hadt, Ryan G; Reinhard, Marco Eli; Kroll, Thomas; Lim, Hyeongtaek; Hartsock, Robert W; Alonso-Mori, Roberto; Chollet, Matthieu et al. · Science · 2017

basic_science · Level V

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Abstract

The multifunctional protein cytochrome c (cyt c) plays key roles in electron transport and apoptosis, switching function by modulating bonding between a heme iron and the sulfur in a methionine residue. This Fe-S(Met) bond is too weak to persist in the absence of protein constraints. We ruptured the bond in ferrous cyt c using an optical laser pulse and monitored the bond reformation within the protein active site using ultrafast x-ray pulses from an x-ray free-electron laser, determining that the Fe-S(Met) bond enthalpy is ~4 kcal/mol stronger than in the absence of protein constraints. The 4 kcal/mol is comparable with calculations of stabilization effects in other systems, demonstrating how biological systems use an entatic state for modest yet accessible energetics to modulate chemical function.

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