AI Article Synopsis

  • HNK-1 glyco-epitope, important for brain function, is linked to the GluR2 glutamate receptor, which is crucial for synaptic transmission and plasticity.
  • Mice without the enzyme for HNK-1 biosynthesis show impaired synaptic functions, indicating the significance of this epitope in the nervous system.
  • The presence of HNK-1 stabilizes GluR2 on neuron surfaces and enhances its interaction with N-cadherin, suggesting a role in regulating AMPA receptor trafficking and stability.

Article Abstract

HNK-1 (human natural killer-1) glyco-epitope, a sulfated glucuronic acid attached to N-acetyllactosamine on the nonreducing termini of glycans, is highly expressed in the nervous system. Our previous report showed that mice lacking a glucuronyltransferase (GlcAT-P), a key enzyme for biosynthesis of the HNK-1 epitope, showed reduced long term potentiation at hippocampal CA1 synapses. In this study, we identified an alpha-amino-3-hydroxy-5-methylisoxazole propionate (AMPA)-type glutamate receptor subunit, GluR2, which directly contributes to excitatory synaptic transmission and synaptic plasticity, as a novel HNK-1 carrier molecule. We demonstrated that the HNK-1 epitope is specifically expressed on the N-linked glycan(s) on GluR2 among the glutamate receptors tested, and the glycan structure, including HNK-1 on GluR2, was determined using liquid chromatography-tandem mass spectrometry. As for the function of HNK-1 on GluR2, we found that the GluR2 not carrying HNK-1 was dramatically endocytosed and expressed less on the cell surface compared with GluR2 carrying HNK-1 in both cultured hippocampal neurons and heterologous cells. These results suggest that HNK-1 stabilizes GluR2 on neuronal surface membranes and regulates the number of surface AMPA receptors. Moreover, we showed that the expression of the HNK-1 epitope enhanced the interaction between GluR2 and N-cadherin, which has important roles in AMPA receptor trafficking. Our findings suggest that the HNK-1 epitope on GluR2 regulates cell surface stability of GluR2 by modulating the interaction with N-cadherin.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2781576PMC
http://dx.doi.org/10.1074/jbc.M109.024208DOI Listing

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