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Positively selected modifications in the pore of TbAQP2 allow pentamidine to enter Trypanosoma brucei

Authors :
Harry P. de Koning
Ibrahim A. Teka
Hasan M. S. Ibrahim
Christopher M Woodley
Simon Gudin
Patrik Mili
Arvind Kumar
Daniel Paape
Fredrik Svensson
Fabian Hulpia
Jane C. Munday
Mark Carrington
Mohammed I. Al-Salabi
Dominik Gurvic
Laura F Anderson
Christophe Dardonville
David W. Boykin
Chinyere E Okpara
Ali H. Alghamdi
Luca Settimo
Laura Watson
Maria Esther Martin Abril
Joanna Wielinska
Gustavo D. Campagnaro
Graeme Smart
Ulrich Zachariae
Anthonius A. Eze
Richard R. Tidwell
Anna Dimitriou
Siu Pui Ying Kelly
Paul M. O'Neill
Publication Year :
2020
Publisher :
Cold Spring Harbor Laboratory, 2020.

Abstract

Mutations in the Trypanosoma brucei aquaporin AQP2 are associated with resistance to pentamidine and melarsoprol. We show that TbAQP2 but not TbAQP3 was positively selected for increased pore size from a common ancestor aquaporin. We demonstrate that TbAQP2’s unique architecture permits pentamidine permeation through its central pore and show how specific mutations in highly conserved motifs affect drug permeation. Introduction of key TbAQP2 amino acids into TbAQP3 renders the latter permeable to pentamidine. Molecular dynamics demonstrates that permeation by dicationic pentamidine is energetically favourable in TbAQP2, driven by the membrane potential, although aquaporins are normally strictly impermeable for ionic species. We also identify the structural determinants that make pentamidine a permeant but exclude most other diamidine drugs. Our results have wide-ranging implications for optimising antitrypanosomal drugs and averting cross-resistance. Moreover, these new insights in aquaporin permeation may allow the pharmacological exploitation of other members of this ubiquitous gene family.

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....e12a2c3019e9ca4c7a9a0aacc54e2b6b
Full Text :
https://doi.org/10.1101/2020.03.08.982751