Publication:
Sodium-dependent uptake of glutamate by novel ApGltS enhanced growth under salt stress of halotolerant cyanobacterium aphanothece halophytica

dc.contributor.authorBoonburapong B.
dc.contributor.authorLaloknam S.
dc.contributor.authorYamada N.
dc.contributor.authorIncharoensakdi A.
dc.contributor.authorTakabe T.
dc.date.accessioned2021-04-05T03:33:56Z
dc.date.available2021-04-05T03:33:56Z
dc.date.issued2012
dc.date.issuedBE2555
dc.description.abstractGlutamate is a major free amino acid in cyanobacteria, but its transport properties remain largely unknown. In this study, we found that a halotolerant cyanobacterium, Aphanothece halophytica, contained a sodium dependent glutamate transporter (ApGltS). The deduced amino acid sequence of ApGltS exhibited low homology (18-19% identity) to GltS from Synechocystis sp. PCC 6803 (slr1145) and Escherichia coli. The predicted ApGltS consisted of 476 amino acid residues with a molecular weight of 50,976 Da. As analysed by hydropathy profiling, ApGltS contains 11 transmembrane segments. The ApgltS gene was isolated and expressed in E. coli ME9107, which is deficient in glutamate uptake. ME9107, expressing ApGltS, took up glutamate and its rates increased with increasing concentrations of NaCl. Kinetics studies revealed that ApGltS is a high-affinity glutamate transporter with a Km of about 5μM. The presence of 0.5M NaCl in the assay medium increased Vmax by about 3-fold. Competition experiments revealed that glutamate, glutamine, aspartate, and asparagine inhibited glutamate uptake. The level of mRNA for ApgltS was higher in A. halophytica grown at high salinity. Under high salinity conditions supplemented with glutamate, A. halophytica showed a significant increase in intracellular glycine betaine.
dc.format.mimetypeapplication/pdf
dc.identifier.citationBioscience, Biotechnology and Biochemistry. Vol 76, No.9 (2012), p.1702-1707
dc.identifier.doi10.1271/bbb.120309
dc.identifier.issn9168451
dc.identifier.other2-s2.0-84866649295
dc.identifier.urihttps://hdl.handle.net/20.500.14740/6960
dc.rights.holderมหาวิทยาลัยศรีนครินทรวิโรฒ
dc.subject.otherAmino acid residues
dc.subject.otherAmino acid sequence
dc.subject.otherAmino acid uptake
dc.subject.otherAphanothece halophytica
dc.subject.otherAspartates
dc.subject.otherCyanobacterium
dc.subject.otherE. coli
dc.subject.otherEnhanced growth
dc.subject.otherFree amino acids
dc.subject.otherGlutamate transporters
dc.subject.otherGlycine betaine
dc.subject.otherHalotolerant
dc.subject.otherHigh salinity
dc.subject.otherKinetics studies
dc.subject.otherSalt stresss
dc.subject.otherSynechocystis sp. PCC 6803
dc.subject.otherTransmembrane segments
dc.subject.otherEscherichia coli
dc.subject.otherHardwoods
dc.subject.otherSalinity measurement
dc.subject.otherSodium
dc.subject.otherSodium chloride
dc.subject.otherTransport properties
dc.subject.otherAmino acids
dc.subject.otherAmino acid transporter
dc.subject.otherBacterial protein
dc.subject.otherBetaine
dc.subject.otherCotransporter
dc.subject.otherEscherichia coli protein
dc.subject.otherGltS protein, E coli
dc.subject.otherGlutamate transporter
dc.subject.otherGlutamic acid
dc.subject.otherMessenger RNA
dc.subject.otherRecombinant protein
dc.subject.otherSodium chloride
dc.subject.otherAmino acid sequence
dc.subject.otherArticle
dc.subject.otherBiosynthesis
dc.subject.otherCyanobacterium
dc.subject.otherDrug effect
dc.subject.otherEnzyme specificity
dc.subject.otherEscherichia coli
dc.subject.otherGenetics
dc.subject.otherGrowth, development and aging
dc.subject.otherKinetics
dc.subject.otherMetabolism
dc.subject.otherMolecular genetics
dc.subject.otherMolecular weight
dc.subject.otherPhylogeny
dc.subject.otherPhysiology
dc.subject.otherProtein tertiary structure
dc.subject.otherSalinity
dc.subject.otherSalt tolerance
dc.subject.otherSequence homology
dc.subject.otherAmino Acid Sequence
dc.subject.otherAmino Acid Transport System X-AG
dc.subject.otherAmino Acid Transport Systems, Acidic
dc.subject.otherBacterial Proteins
dc.subject.otherBetaine
dc.subject.otherCyanobacteria
dc.subject.otherEscherichia coli
dc.subject.otherEscherichia coli Proteins
dc.subject.otherGlutamic Acid
dc.subject.otherKinetics
dc.subject.otherMolecular Sequence Data
dc.subject.otherMolecular Weight
dc.subject.otherPhylogeny
dc.subject.otherProtein Structure, Tertiary
dc.subject.otherRecombinant Proteins
dc.subject.otherRNA, Messenger
dc.subject.otherSalinity
dc.subject.otherSalt-Tolerance
dc.subject.otherSequence Homology, Amino Acid
dc.subject.otherSodium Chloride
dc.subject.otherSubstrate Specificity
dc.subject.otherSymporters
dc.subject.otherAphanothece halophytica
dc.subject.otherCyanobacteria
dc.subject.otherEscherichia coli
dc.subject.otherSynechocystis sp. PCC 6803
dc.titleSodium-dependent uptake of glutamate by novel ApGltS enhanced growth under salt stress of halotolerant cyanobacterium aphanothece halophytica
dc.typeArticle
dspace.entity.typePublication
swu.datasource.scopushttps://www.scopus.com/inward/record.uri?eid=2-s2.0-84866649295&doi=10.1271%2fbbb.120309&partnerID=40&md5=14d9233fe04df6f1dec602021ba4cb79

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