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Functional reconstitution of a rice aquaporin water channel, PIP1; 1, by a micro-batchwise methodology.

Plant Physiol Biochem.. 2014-12; 
V Scalera, P Gena, M Mastrodonato, Y Kitagawa, S Carulli, M Svelto, G Calamita. Department of Biosciences, Biotechnologies and Biopharmaceutics, University of Bari "Aldo Moro", Bari, Italy.
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摘要

Assessing the selectivity, regulation and physiological relevance of aquaporin membrane channels (AQPs) requires structural and functional studies of wild type and modified proteins. In particular, when characterizing their transport properties, reconstitution in isolation from native cellular or membrane processes is of pivotal importance. Here, we describe rapid and efficient incorporation of OsPIP1;1, a rice AQP, in liposomes at analytical scale. PIP1;1 was produced as a histidine-tagged form, 10His-OsPIP1;1, in an Escherichia coli-based expression system. The recombinant protein was purified by affinity chromatography and incorporated into liposomes by a micro-batchwise technology using egg-yolk phospholipi... More

关键词

Oryza sativa; AQP channels; PIP1; Osmotic water transport; Liposomes; Membrane protein reconstitution; Micro-batchwise technology