Nobutoshi Ota, Ting Shi, Jonathan V Sweedler
Index: Amino Acids 43(5) , 1873-86, (2012)
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D-Aspartate (D-Asp) is an endogenous amino acid in the central nervous and reproductive systems of vertebrates and invertebrates. High concentrations of D-Asp are found in distinct anatomical locations, suggesting that it has specific physiological roles in animals. Many of the characteristics of D-Asp have been documented, including its tissue and cellular distribution, formation and degradation, as well as the responses elicited by D-Asp application. D-Asp performs important roles related to nervous system development and hormone regulation; in addition, it appears to act as a cell-to-cell signaling molecule. Recent studies have shown that D-Asp fulfills many, if not all, of the definitions of a classical neurotransmitter-that the molecule's biosynthesis, degradation, uptake, and release take place within the presynaptic neuron, and that it triggers a response in the postsynaptic neuron after its release. Accumulating evidence suggests that these criteria are met by a heterogeneous distribution of enzymes for D-Asp's biosynthesis and degradation, an appropriate uptake mechanism, localization within synaptic vesicles, and a postsynaptic response via an ionotropic receptor. Although D-Asp receptors remain to be characterized, the postsynaptic response of D-Asp has been studied and several L-glutamate receptors are known to respond to D-Asp. In this review, we discuss the current status of research on D-Asp in neuronal and neuroendocrine systems, and highlight results that support D-Asp's role as a signaling molecule.
Structure | Name/CAS No. | Molecular Formula | Articles |
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H-D-Asp-OH
CAS:1783-96-6 |
C4H7NO4 |
Coupling substrate and ion binding to extracellular gate of ...
2007-01-25 [Nature 445 , 387-93, (2007)] |
Oral administration of D-aspartate, but not L-aspartate, dep...
2014-07-25 [Life Sci. 109(1) , 65-71, (2014)] |
Okibacterium endophyticum sp. nov., a novel endophytic actin...
2015-03-01 [Antonie van Leeuwenhoek 107(3) , 835-43, (2015)] |
The prostaglandin EP1 receptor potentiates kainate receptor ...
2014-10-01 [Neurobiol. Dis. 70 , 74-89, (2014)] |
Biochemistry of D-aspartate in mammalian cells.
2007-01-01 [Amino Acids 32(1) , 3-11, (2007)] |
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