Aquaporin Gating: A New Twist to Unravel Permeation through Water Channels

Author:

Ozu MarceloORCID,Alvear-Arias Juan JoséORCID,Fernandez Miguel,Caviglia Agustín,Peña-Pichicoi Antonio,Carrillo Christian,Carmona EmersonORCID,Otero-Gonzalez AnselmoORCID,Garate José AntonioORCID,Amodeo Gabriela,Gonzalez CarlosORCID

Abstract

Aquaporins (AQPs) are small transmembrane tetrameric proteins that facilitate water, solute and gas exchange. Their presence has been extensively reported in the biological membranes of almost all living organisms. Although their discovery is much more recent than ion transport systems, different biophysical approaches have contributed to confirm that permeation through each monomer is consistent with closed and open states, introducing the term gating mechanism into the field. The study of AQPs in their native membrane or overexpressed in heterologous systems have experimentally demonstrated that water membrane permeability can be reversibly modified in response to specific modulators. For some regulation mechanisms, such as pH changes, evidence for gating is also supported by high-resolution structures of the water channel in different configurations as well as molecular dynamics simulation. Both experimental and simulation approaches sustain that the rearrangement of conserved residues contributes to occlude the cavity of the channel restricting water permeation. Interestingly, specific charged and conserved residues are present in the environment of the pore and, thus, the tetrameric structure can be subjected to alter the positions of these charges to sustain gating. Thus, is it possible to explore whether the displacement of these charges (gating current) leads to conformational changes? To our knowledge, this question has not yet been addressed at all. In this review, we intend to analyze the suitability of this proposal for the first time.

Funder

National Agency for Research and Development

Millennium Science Initiative Program ICM-ANID

Center Science and Life, Basic Financing for Scientific and Technologic Centres of Excellence ANID

National Committee of Scientific and Technologic Research

FONCYT

University of Buenos Aires

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

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