Hydrogen-bonding partner of the proton-conducting histidine in the influenza M2 proton channel revealed from 1H chemical shifts.

Author(s)
Mei Hong # , Keith J. Fritzsching * and Jonathan K. Williams *
Publisher
J Am Chem Soc
Year
2012
Volume
134
Issue
36
Pages
14753-14755
DOI
10.1021/ja307453v

Abstract

Abstract Image

The influenza M2 protein conducts protons through a critical histidine (His) residue, His37. Whether His37 only interacts with water to relay protons into the virion or whether a low-barrier hydrogen bond (LBHB) also exists between the histidines to stabilize charges before proton conduction is actively debated. To address this question, we have measured the imidazole 1HNchemical shifts of His37 at different temperatures and pH using 2D 15N–1H correlation solid-state NMR. At low temperature, the HN chemical shifts are 8–15 ppm at all pH values, indicating that the His37 side chain forms conventional hydrogen bonds (H-bonds) instead of LBHBs. At ambient temperature, the dynamically averaged HN chemical shifts are 4.8 ppm, indicating that the H-bonding partner of the imidazole is water instead of another histidine in the tetrameric channel. These data show that His37 forms H-bonds only to water, with regular strength, thus supporting the His–water proton exchange model and ruling out the low-barrier H-bonded dimer model.