Abstract
Aquaporins are highly selective water channel proteins integrated into plasma membranes of single cell organisms; plant roots and stromae; eye lenses, renal and red blood cells in vertebrates. To date, only a few microbial aquaporins have been characterized and their physiological importance is not well understood. Here we report on the cloning, expression and characterization of a novel aquaporin, RsAqpZ, from a purple photosynthetic bacterium, Rhodobacter sphaeroides ATCC 17023. The protein was expressed homologously at a high yield (∼20 mg/L culture) under anaerobic photoheterotrophic growth conditions. Stopped-flow light scattering experiments demonstrated its high water permeability (0.17±0.05 cm/s) and low energy of activation for water transport (2.93±0.60 kcal/mol) in reconstituted proteoliposomes at a protein to lipid ratio (w/w) of 0.04. We developed a fluorescence correlation spectroscopy based technique and utilized a fluorescent protein fusion of RsAqpZ, to estimate the single channel water permeability of RsAqpZ as 1.24 (±0.41) × 10-12 cm3/s or 4.17 (±1.38) × 1010 H2O molecules/s, which is among the highest single channel permeability reported for aquaporins. Towards application to water purification technologies, we also demonstrated functional incorporation of RsAqpZ in amphiphilic block copolymer membranes. © 2014 Erbakan et al.
Cite
CITATION STYLE
Erbakan, M., Shen, Y. X., Grzelakowski, M., Butler, P. J., Kumar, M., & Curtis, W. R. (2014). Molecular cloning, overexpression and characterization of a novel water channel protein from Rhodobacter sphaeroides. PLoS ONE, 9(1). https://doi.org/10.1371/journal.pone.0086830
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.