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PMID: 17646426 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Enhancing glutamate transport: mechanism of action of Parawixin1, a neuroprotective compound from Parawixia bistriata spider venom.

Molecular pharmacology ·Vol. 72 ·No. 5 ·2007-11-00 ·Pages 1228-37

Fontana AC, de Oliveira Beleboni R, Wojewodzic MW, Ferreira Dos Santos W, Coutinho-Netto J, Grutle NJ, Watts SD, Danbolt NC, Amara SG

Abstract

Previous studies have shown that a compound purified from the spider Parawixia bistriata venom stimulates the activity of glial glutamate transporters and can protect retinal tissue from ischemic damage. To understand the mechanism by which this compound enhances transport, we examined its effects on the functional properties of glutamate transporters after solubilization and reconstitution in liposomes and in transfected COS-7 cells. Here, we demonstrate in both systems that Parawixin1 promotes a direct and selective enhancement of glutamate influx by the EAAT2 transporter subtype through a mechanism that does not alter the apparent affinities for the cosubstrates glutamate or sodium. In liposomes, we observed maximal enhancement by Parawixin1 when extracellular sodium and intracellular potassium concentrations are within physiological ranges. Moreover, the compound does not enhance the reverse transport of glutamate under ionic conditions that favor efflux, when extracellular potassium is elevated and the sodium gradient is reduced, nor does it alter the exchange of glutamate in the absence of internal potassium. These observations suggest that Parawixin1 facilitates the reorientation of the potassium-bound transporter, the rate-limiting step in the transport cycle, a conclusion further supported by experiments showing that Parawixin1 does not stimulate uptake by an EAAT2 transport mutant (E405D) defective in the potassium-dependent reorientation step. Thus, Parawixin1 enhances transport through a novel mechanism targeting a step in the transport cycle distinct from substrate influx or efflux and provides a basis for the design of new drugs that act allosterically on transporters to increase glutamate clearance.

MeSH Terms
Animals Biological Transport/drug effects COS Cells Chlorocebus aethiops Dose-Response Relationship, Drug Excitatory Amino Acid Transporter 2/drug effects,genetics Glutamates/metabolism Neuroprotective Agents/analysis,pharmacology Sodium/metabolism Spider Venoms/chemistry,pharmacology
Chemicals
Excitatory Amino Acid Transporter 2 Glutamates Neuroprotective Agents Spider Venoms Sodium
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Fontana Andréia Cristina Karklin
Department of Neurobiology, University of Pittsburgh, 6068 BST3, 3501 Fifth Ave., Pittsburgh, PA 15260, USA. fontanaa@pitt.edu
de Oliveira Beleboni Renê
Wojewodzic Marcin Wlodzimierz
Ferreira Dos Santos Wagner
Coutinho-Netto Joaquim
Grutle Nina Julie
Watts Spencer D
Danbolt Niels Christian
Amara Susan G
Article Info
Journal
Molecular pharmacology
Abbr.
Mol Pharmacol
ISSN
0026-895X
Published
2007-11-00
Epub
2007-00-23
Pages
1228-37
Language
English
Region
United States
NLM ID
0035623
Subset
IM
Grants
NIMH NIH HHS · MH080726 · United States
NINDS NIH HHS · NS33272 · United States
Corrections
CommentIn
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