SLC38A3
Full Name
Solute Carrier Family 38 Member 3
Function
Symporter that cotransports specific neutral amino acids and sodium ions, coupled to an H+ antiporter activity (PubMed:10823827).
Mainly participates in the glutamate-GABA-glutamine cycle in brain where it transports L-glutamine from astrocytes in the intercellular space for the replenishment of both neurotransmitters glutamate and gamma-aminobutyric acid (GABA) in neurons and also functions as the major influx transporter in ganglion cells mediating the uptake of glutamine (By similarity).
The transport activity is specific for L-glutamine, L-histidine and L-asparagine (PubMed:10823827).
The transport is electroneutral coupled to the cotransport of 1 Na+ and the antiport of 1 H+ (By similarity).
The transport is pH dependent, saturable, Li+ tolerant and functions in both direction depending on the concentration gradients of its substrates and cotransported ions (PubMed:10823827).
Also mediates an amino acid-gated H+ conductance that is not stoichiometrically coupled to the amino acid transport but which influences the ionic gradients that drive the amino acid transport (By similarity).
In addition, may play a role in nitrogen metabolism, amino acid homeostasis, glucose metabolism and renal ammoniagenesis (By similarity).
Mainly participates in the glutamate-GABA-glutamine cycle in brain where it transports L-glutamine from astrocytes in the intercellular space for the replenishment of both neurotransmitters glutamate and gamma-aminobutyric acid (GABA) in neurons and also functions as the major influx transporter in ganglion cells mediating the uptake of glutamine (By similarity).
The transport activity is specific for L-glutamine, L-histidine and L-asparagine (PubMed:10823827).
The transport is electroneutral coupled to the cotransport of 1 Na+ and the antiport of 1 H+ (By similarity).
The transport is pH dependent, saturable, Li+ tolerant and functions in both direction depending on the concentration gradients of its substrates and cotransported ions (PubMed:10823827).
Also mediates an amino acid-gated H+ conductance that is not stoichiometrically coupled to the amino acid transport but which influences the ionic gradients that drive the amino acid transport (By similarity).
In addition, may play a role in nitrogen metabolism, amino acid homeostasis, glucose metabolism and renal ammoniagenesis (By similarity).
Biological Process
Biological Process amino acid homeostasisISS:UniProtKB
Biological Process amino acid transmembrane transportManual Assertion Based On ExperimentIBA:GO_Central
Biological Process amino acid transportTAS:Reactome
Biological Process asparagine transportManual Assertion Based On ExperimentIDA:UniProtKB
Biological Process brain developmentIEA:Ensembl
Biological Process cellular response to potassium ion starvationIEA:Ensembl
Biological Process female pregnancyIEA:Ensembl
Biological Process glutamine secretionISS:UniProtKB
Biological Process glutamine transportManual Assertion Based On ExperimentIDA:UniProtKB
Biological Process histidine transportManual Assertion Based On ExperimentIDA:UniProtKB
Biological Process L-alanine transportManual Assertion Based On ExperimentIDA:UniProtKB
Biological Process L-asparagine import across plasma membraneISS:UniProtKB
Biological Process L-glutamine import across plasma membraneISS:UniProtKB
Biological Process L-histidine import across plasma membraneISS:UniProtKB
Biological Process L-histidine transportISS:UniProtKB
Biological Process positive regulation of glutamine transportIEA:Ensembl
Biological Process positive regulation of transcription from RNA polymerase II promoter in response to acidic pHIEA:Ensembl
Biological Process transport across blood-brain barrier2 PublicationsNAS:ARUK-UCL
Biological Process amino acid transmembrane transportManual Assertion Based On ExperimentIBA:GO_Central
Biological Process amino acid transportTAS:Reactome
Biological Process asparagine transportManual Assertion Based On ExperimentIDA:UniProtKB
Biological Process brain developmentIEA:Ensembl
Biological Process cellular response to potassium ion starvationIEA:Ensembl
Biological Process female pregnancyIEA:Ensembl
Biological Process glutamine secretionISS:UniProtKB
Biological Process glutamine transportManual Assertion Based On ExperimentIDA:UniProtKB
Biological Process histidine transportManual Assertion Based On ExperimentIDA:UniProtKB
Biological Process L-alanine transportManual Assertion Based On ExperimentIDA:UniProtKB
Biological Process L-asparagine import across plasma membraneISS:UniProtKB
Biological Process L-glutamine import across plasma membraneISS:UniProtKB
Biological Process L-histidine import across plasma membraneISS:UniProtKB
Biological Process L-histidine transportISS:UniProtKB
Biological Process positive regulation of glutamine transportIEA:Ensembl
Biological Process positive regulation of transcription from RNA polymerase II promoter in response to acidic pHIEA:Ensembl
Biological Process transport across blood-brain barrier2 PublicationsNAS:ARUK-UCL
Cellular Location
Cell membrane
Basolateral cell membrane
The localization appears to be basolateral in the plasma membrane of hepatocytes surrounding the central vein. Localized at the cerebrospinal fluid (CSF)-facing membrane of the choroid plexus epithelial cells. In astrocytes, the localization at cell membrane is decreased by ammonia through the PKC signaling. Expressed in both luminal and abluminal plasma membranes of larger microvessels and blood brain barrier (BBB) capillaries (By similarity).
Restricted to the basolateral membranes of S3 segment cells of the proximal tubules (By similarity).
Basolateral cell membrane
The localization appears to be basolateral in the plasma membrane of hepatocytes surrounding the central vein. Localized at the cerebrospinal fluid (CSF)-facing membrane of the choroid plexus epithelial cells. In astrocytes, the localization at cell membrane is decreased by ammonia through the PKC signaling. Expressed in both luminal and abluminal plasma membranes of larger microvessels and blood brain barrier (BBB) capillaries (By similarity).
Restricted to the basolateral membranes of S3 segment cells of the proximal tubules (By similarity).
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Anti-SLC38A3 antibodies
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Target: SLC38A3
Host: Mouse
Specificity: Mouse, Rat, Human
Clone: CBXS-2279
Application*: WB, IP, IF, E
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For Research Use Only. Not For Clinical Use.
(P): Predicted
* Abbreviations
- AActivation
- AGAgonist
- APApoptosis
- BBlocking
- BABioassay
- BIBioimaging
- CImmunohistochemistry-Frozen Sections
- CIChromatin Immunoprecipitation
- CTCytotoxicity
- CSCostimulation
- DDepletion
- DBDot Blot
- EELISA
- ECELISA(Cap)
- EDELISA(Det)
- ESELISpot
- EMElectron Microscopy
- FFlow Cytometry
- FNFunction Assay
- GSGel Supershift
- IInhibition
- IAEnzyme Immunoassay
- ICImmunocytochemistry
- IDImmunodiffusion
- IEImmunoelectrophoresis
- IFImmunofluorescence
- IGImmunochromatography
- IHImmunohistochemistry
- IMImmunomicroscopy
- IOImmunoassay
- IPImmunoprecipitation
- ISIntracellular Staining for Flow Cytometry
- LALuminex Assay
- LFLateral Flow Immunoassay
- MMicroarray
- MCMass Cytometry/CyTOF
- MDMeDIP
- MSElectrophoretic Mobility Shift Assay
- NNeutralization
- PImmunohistologyp-Paraffin Sections
- PAPeptide Array
- PEPeptide ELISA
- PLProximity Ligation Assay
- RRadioimmunoassay
- SStimulation
- SESandwich ELISA
- SHIn situ hybridization
- TCTissue Culture
- WBWestern Blot
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