Borowsky B, Mezey E, Hoffman B J
Laboratory of Cell Biology, National Institute of Mental Health, Bethesda, Maryland 20892.
Neuron. 1993 May;10(5):851-63. doi: 10.1016/0896-6273(93)90201-2.
We have isolated a cDNA encoding a high affinity, Na+/Cl(-)-dependent glycine transporter, GLYT-2, which is distinct from another glycine transporter, GLYT-1. While the 3' sequences of these two cDNAs are identical, the 5' noncoding regions and the N-termini are completely different. GLYT-1 is found only in the white matter of the CNS, while GLYT-2 is found in the gray matter of the CNS as well as in macrophages and mast cells in peripheral tissues. Our findings suggest that tissue-specific alternative splicing or alternative promoter usage from a single gene results in two mRNA products encoding similar but distinct glycine transporters. The anatomic distribution of GLYT-2 mRNA supports the emerging status of glycine as a supraspinal neurotransmitter and suggests that glycine may function as a chemical messenger outside the CNS.
我们分离出了一个编码高亲和力、Na⁺/Cl⁻依赖性甘氨酸转运体GLYT-2的cDNA,它与另一种甘氨酸转运体GLYT-1不同。虽然这两个cDNA的3'序列相同,但5'非编码区和N端完全不同。GLYT-1仅在中枢神经系统的白质中发现,而GLYT-2则在中枢神经系统的灰质以及外周组织的巨噬细胞和肥大细胞中发现。我们的研究结果表明,来自单个基因的组织特异性可变剪接或可变启动子使用导致了两种编码相似但不同的甘氨酸转运体的mRNA产物。GLYT-2 mRNA的解剖分布支持了甘氨酸作为脊髓上神经递质的新地位,并表明甘氨酸可能在中枢神经系统外作为化学信使发挥作用。