Differing effects of substrate and non-substrate transport inhibitors on glutamate uptake reversal.

Autor: Anderson, C.M., Bridges, R.J., Chamberlin, A.R., Shimamoto, K., Yasuda-Kamatani, Y., Swanson, R.A.
Předmět:
Zdroj: Journal of Neurochemistry; 12/15/2001, Vol. 79 Issue 6, p1207-1216, 10p, 7 Black and White Photographs, 3 Charts, 9 Graphs
Abstrakt: Na[sup +]-dependent excitatory amino acid transporters (EAATs) normally function to remove extracellular glutamate from brain extracellular space, but EAATs can also increase extracellular glutamate by reversal of uptake. Effects of inhibitors on EAATs can be complex, depending on cell type, whether conditions favor glutamate uptake or uptake reversal and whether the inhibitor itself is a substrate for the transporters. The present study assessed EAAT inhibitors for their ability to inhibit glutamate uptake, act as transporter substrates and block uptake reversal in astrocyte and neuron cultures. lthreo-β-hydroxyaspartate (l-TBHA), dlthreo-β-benzyloxyaspartate (dl-TBOA), ltrans-pyrrolidine-2,4-dicarboxylic acid (ltrans-2,4-PDC) (+/–)-cis-4-methy-trans-pyrrolidine-2,4-dicarboxylic acid (cis-4-methy-trans-2,4-PDC) and lantiendo-3,4-methanopyrrolidine-2,4-dicarboxylic acid (lantiendo-3,4-MPDC) inhibited l-[[sup 14]C]glutamate uptake in astrocytes with equilibrium binding constants ranging from 17 µm (dl-TBOA and l-TBHA) – 43 µm (cis-4-methy-trans-2,4-PDC). Transportability of inhibitors was assessed in astrocytes and neurons. While l-TBHA, ltrans-2,4-PDC, cis-4-methy-trans-2,4-PDC and lantiendo-3,4-MPDC displayed significant transporter substrate activities in neurons and astrocytes, dl-TBOA was a substrate only in astrocytes. This effect of dl-TBOA was concentration-dependent, leading to complex effects on glutamate uptake reversal. At concentrations low enough to produce minimal dl-TBOA uptake velocity (≤ 10 µm), dl-TBOA blocked uptake reversal in ATP-depleted astrocytes; this blockade was negated at concentrations that drove substantial dl-TBOA uptake (> 10 µm). These findings indicate that the net effects of EAAT inhibitors can vary with cell type and exposure conditions. [ABSTRACT FROM AUTHOR]
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