Membrane topology of the electrogenic aspartate-alanine antiporter AspT of Tetragenococcus halophilus |
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Authors: | Nanatani Kei Ohonishi Fumito Yoneyama Hiroshi Nakajima Tasuku Abe Keietsu |
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Affiliation: | Laboratory of Enzymology, Department of Molecular and Cell Biology, Graduate School of Agricultural Science, Tohoku University, Sendai 981-8555, Japan. |
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Abstract: | AspT is an electrogenic aspartate:alanine exchange protein that represents the vectorial component of a proton-motive metabolic cycle found in some strains of Tetragenococcus halophilus. AspT is the sole member of a new family, the Aspartate: Alanine Exchanger (AAE) family, in secondary transporters, according to the computational classification proposed by Saier et al. (http://www.biology.ucsd.edu/~msaier/transport/). We analyzed the topology of AspT biochemically, by using fusion methods in combination with alkaline phosphatase or beta-lactamase. These results suggested that AspT has a unique topology; 8 TMS, a large cytoplasmic loop (183 amino acids) between TMS5 and TMS6, and N- and C-termini that both face the periplasm. These results demonstrated a unique 2D-structure of AspT as the novel AAE family. |
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Keywords: | Membrane topology Aspartate:Alanine Antiporter Proton-motive force Fusion methods Electrogenic |
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