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Cloning, expression, and localization of a rat brain high-affinity glycine transporter.
Division of Biology, California Institute of Technology, Pasadena 91125.
A cDNA clone encoding a glycine transporter has been isolated from rat brain by a combined PCR and plaque-hybridization strategy. mRNA synthesized from this clone (designated GLYT1) directs the expression of sodium- and chloride-dependent, high-affinity uptake of [3H]glycine by Xenopus oocytes. [3H]Glycine transport mediated by clone GLYT1 is blocked by sarcosine but is not blocked by methyl-aminoisobutyric acid or L-alanine, a substrate specificity similar to that described for a previously identified glycine-uptake system called system Gly. In situ hybridization reveals that GLYT1 is prominently expressed in the cervical spinal cord and brainstem, two regions of the central nervous system where glycine is a putative neurotransmitter. GLYT1 is also strongly expressed in the cerebellum and olfactory bulb and is expressed at lower levels in other brain regions. The open reading frame of the GLYT1 cDNA predicts a protein containing 633 amino acids with a molecular mass of approximately 70 kDA. The primary structure and hydropathicity profile of GLYT1 protein reveal that this protein is a member of the sodium- and chloride-dependent superfamily of transporters that utilize neurotransmitters and related substances as substrates.
PMID: 1353889 [PubMed - indexed for MEDLINE]
PMCID: PMC49671
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Cited by 12 PubMed Central articles
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Bergmann glial GlyT1 mediates glycine uptake and release in mouse cerebellar slices.
Huang H, Barakat L, Wang D, Bordey A.
J Physiol. 2004 Nov 1; 560(Pt 3):721-36. Epub 2004 Aug 26.
[J Physiol. 2004]
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Role of glial and neuronal glycine transporters in the control of glycinergic and glutamatergic synaptic transmission in lamina X of the rat spinal cord.
Bradaïa A, Schlichter R, Trouslard J.
J Physiol. 2004 Aug 15; 559(Pt 1):169-86. Epub 2004 Jul 2.
[J Physiol. 2004]
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The glycine neurotransmitter transporter GLYT1 is an organic osmolyte transporter regulating cell volume in cleavage-stage embryos.
Steeves CL, Hammer MA, Walker GB, Rae D, Stewart NA, Baltz JM.
Proc Natl Acad Sci U S A. 2003 Nov 25; 100(24):13982-7. Epub 2003 Nov 13.
[Proc Natl Acad Sci U S A. 2003]
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