Energetics and mechanism of anion permeation across formate-nitrite transporters.

2017-09-20 | journal article. A publication with affiliation to the University of Göttingen.

Jump to: Cite & Linked | Documents & Media | Details | Version history

Cite this publication

​Energetics and mechanism of anion permeation across formate-nitrite transporters.​
Atkovska, K. & Hub, J. S.​ (2017) 
Scientific reports7(1) art. 12027​.​ DOI: https://doi.org/10.1038/s41598-017-11437-0 

Documents & Media

s41598-017-11437-0.pdf3.67 MBAdobe PDF

License

Published Version

Attribution 4.0 CC BY 4.0

Details

Authors
Atkovska, Kalina; Hub, Jochen S.
Abstract
Formate-nitrite transporters (FNTs) facilitate the translocation of monovalent polyatomic anions, such as formate and nitrite, across biological membranes. FNTs are widely distributed among pathogenic bacteria and eukaryotic parasites, but they lack human homologues, making them attractive drug targets. The mechanisms and energetics involved in anion permeation across the FNTs have remained largely unclear. Both, channel and transporter mode of function have been proposed, with strong indication of proton coupling to the permeation process. We combine molecular dynamics simulations, quantum mechanical calculations, and pK a calculations, to compute the energetics of the complete permeation cycle of an FNT. We find that anions as such, are not able to traverse the FNT pore. Instead, anion binding into the pore is energetically coupled to protonation of a centrally located histidine. In turn, the histidine can protonate the permeating anion, thereby enabling its release. Such mechanism can accommodate the functional diversity among the FNTs, as it may facilitate both, export and import of substrates, with or without proton co-transport. The mechanism excludes proton leakage via the Grotthuss mechanism, and it rationalises the selectivity for weak acids.
Issue Date
20-September-2017
Journal
Scientific reports 
ISSN
2045-2322
Language
English

Reference

Citations


Social Media