Citation

  • Authors: Glisic, D., Lehmann, C., Figiel, M., Odemis, V., Lindner, R., Engele, J.
  • Year: 2012
  • Journal: J Neurochem 122 844-55
  • Applications: in vitro / DNA / jetPEI
  • Cell type: Astrocyte

Method

For transfection, astrocytes were grown in 6-wells cell culture plates. Transfection was performed in a mixture of 800µL MEM supplemented with 2% FCS and 200µL of 150 mM NaCl containing 1 µg of the plasmid and 1 µL of jetPEI.

Abstract

The endothelin and epidermal growth factor (EGF) systems are central to the control of reactive brain processes and are thought to partly exert these tasks by endothelin-induced transactivation of the epidermal growth factor receptor (EGFR) Here we show that beyond EGFR transactivation, endothelins prevent the ligand-induced internalization of the EGFR. We unravel that endothelins abrogate internalization of the EGFR by either promoting the formation of "internalization-deficient" EGFR/ErB2-heterodimers or by activating c-Abl kinase, a negative regulator of EGFR internalization. We further provide evidence that this cross-talk is operational in the control of astrocytic glutamate transport. Specifically, we establish that the inhibitory effects exerted by endothelins on basal as well as EGF-induced expression of the major astroglial glutamate transporter subtype, glutamate transporter 1, are a direct consequence of the endothelin-dependent retention of the EGFR at the cell surface. Together our findings unravel a previously unknown cross-talk between endothelin and epidermal growth factor receptors, which may have implications for a variety of pathological conditions.

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