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Two members of the Tellurite-Resistance/Dicarboxylate Transporter (TDT) family have been functionally characterised. One is the TehA protein of Escherichia coli which has been implicated in resistance to tellurite; the other is the Mae1 protein of Schizosaccharomyces pombe which functions in the uptake of malate and other dicarboxylates by a proton symport mechanism. These proteins have 10 putative transmembrane helices.

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dbo:abstract
  • Two members of the Tellurite-Resistance/Dicarboxylate Transporter (TDT) family have been functionally characterised. One is the TehA protein of Escherichia coli which has been implicated in resistance to tellurite; the other is the Mae1 protein of Schizosaccharomyces pombe which functions in the uptake of malate and other dicarboxylates by a proton symport mechanism. These proteins have 10 putative transmembrane helices. (en)
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  • C4dic_mal_tran
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  • 35051798 (xsd:integer)
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  • 1942 (xsd:nonNegativeInteger)
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  • 997823559 (xsd:integer)
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dbp:caption
  • crystal structure of plant slac1 homolog teha (en)
dbp:interpro
  • IPR004695 (en)
dbp:name
  • C4dic_mal_tran (en)
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  • 213 (xsd:integer)
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  • 253.0
dbp:pfam
  • PF03595 (en)
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  • C4dic_mal_tran (en)
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  • 2 (xsd:integer)
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  • Two members of the Tellurite-Resistance/Dicarboxylate Transporter (TDT) family have been functionally characterised. One is the TehA protein of Escherichia coli which has been implicated in resistance to tellurite; the other is the Mae1 protein of Schizosaccharomyces pombe which functions in the uptake of malate and other dicarboxylates by a proton symport mechanism. These proteins have 10 putative transmembrane helices. (en)
rdfs:label
  • Tellurite-resistance/dicarboxylate transporter (en)
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