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PMID: 15476861 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

The Lathyrus excitotoxin beta-N-oxalyl-L-alpha,beta-diaminopropionic acid is a substrate of the L-cystine/L-glutamate exchanger system xc-.

Toxicology and applied pharmacology ·Vol. 200 ·No. 2 ·2004-10-15 ·Pages 83-92

Warren BA, Patel SA, Nunn PB, Bridges RJ

Abstract

Beta-N-oxalyl-L-alpha-beta-diaminopropionic acid (beta-L-ODAP) is an unusual amino acid present in seeds of plants from the Lathyrus genus that is generally accepted as the causative agent underlying the motor neuron degeneration and spastic paraparesis in human neurolathyrism. Much of the neuropathology produced by beta-L-ODAP appears to be a direct consequence of its structural similarities to the excitatory neurotransmitter L-glutamate and its ability to induce excitotoxicity as an agonist of non-NMDA receptors. Its actions within the CNS are, however, not limited to non-NMDA receptors, raising the likely possibility that the anatomical and cellular specificity of the neuronal damage observed in neurolathyrism may result from the cumulative activity of beta-L-ODAP at multiple sites. Accumulating evidence suggests that system xc-, a transporter that mediates the exchange of L-cystine and L-glutamate, is one such site. In the present work, two distinct approaches were used to define the interactions of beta-L-ODAP with system xc-: Traditional radiolabel-uptake assays were employed to quantify inhibitory activity, while fluorometrically coupled assays that follow the exchange-induced efflux of L-glutamate were used to assess substrate activity. In addition to confirming that beta-L-ODAP is an effective competitive inhibitor of system xc-, we report that the compound exhibits a substrate activity comparable to that of the endogenous substrate L-cystine. The ability of system xc- to transport and accumulate beta-L-ODAP identifies additional variables that could influence its toxicity within the CNS, including the ability to limit its access to EAA receptors by clearing the excitotoxin from the extracellular synaptic environment, as well as serving as a point of entry through which beta-L-ODAP could have increased access to intracellular targets.

MeSH Terms
Amino Acid Transport System y+/antagonists & inhibitors,metabolism Amino Acids, Diamino/metabolism,pharmacology,toxicity Animals Binding, Competitive Cell Line, Tumor Cyanobacteria Toxins Cystine/metabolism Fluorometry Glutamic Acid/metabolism Glycine/analogs & derivatives,pharmacology Humans Kinetics Neurotoxins/metabolism,pharmacology,toxicity Quisqualic Acid/pharmacology Rats Receptors, Glutamate/metabolism
Chemicals
Amino Acid Transport System y+ Amino Acids, Diamino Cyanobacteria Toxins Neurotoxins Receptors, Glutamate SLC7A11 protein, human carboxyphenylglycine beta-N-methylamino-L-alanine oxalyldiaminopropionic acid Glutamic Acid Cystine Quisqualic Acid Glycine
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Warren Brady A
COBRE Center for Structural and Functional Neuroscience, Department of Biomedical and Pharmaceutical Sciences, University of Montana, Missoula 59812, USA.
Patel Sarjubhai A
Nunn Peter B
Bridges Richard J
Article Info
Journal
Toxicology and applied pharmacology
Abbr.
Toxicol Appl Pharmacol
ISSN
0041-008X
Published
2004-10-15
Pages
83-92
Language
English
Region
United States
NLM ID
0416575
Subset
IM
Grants
NINDS NIH HHS · NS30570 · United States
NCRR NIH HHS · RR15583 · United States
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