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PMID: 11722611 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Resistance to NMDA toxicity correlates with appearance of nuclear inclusions, behavioural deficits and changes in calcium homeostasis in mice transgenic for exon 1 of the huntington gene.

The European journal of neuroscience ·Vol. 14 ·No. 9 ·2001-11-00 ·Pages 1492-504

Hansson O, Guatteo E, Mercuri NB, Bernardi G, Li XJ, Castilho RF, Brundin P

Abstract

Transgenic Huntington's disease (HD) mice, expressing exon 1 of the human HD gene (lines R6/1 and R6/2), are totally resistant to striatal lesions caused by the NMDA receptor agonist quinolinic acid (QA). Here we show that this resistance develops gradually over time in both R6/1 and R6/2 mice, and that it occurred earlier in R6/2 (CAG-155) than in R6/1 (CAG-115) mice. The development of the resistance coincided with the appearance of nuclear inclusions and with the onset of motor deficits. In the HD mice, hippocampal neurons were also resistant to QA, especially in the CA1 region. Importantly, there was no change in susceptibility to QA in transgenic mice with a normal CAG repeat (CAG-18). R6/1 mice were also resistant to NMDA-, but not to AMPA-induced striatal damage. Interestingly, QA-induced current and calcium influx in striatal R6/2 neurons were not decreased. However, R6/2 neurons had a better capacity to handle cytoplasmic calcium ([Ca2+]c) overload following QA and could avoid [Ca2+]c deregulation and cell lysis. In addition, basal [Ca2+]c levels were increased five-fold in striatal R6/2 neurons. This might cause an adaptation of R6 neurons to excitotoxic stress resulting in an up-regulation of defense mechanisms, including an increased capacity to handle [Ca2+]c overload. However, the increased level of basal [Ca2+]c in the HD mice might also disturb intracellular signalling in striatal neurons and thereby cause neuronal dysfunction and behavioural deficits.

MeSH Terms
Aging/genetics Animals Behavior, Animal/drug effects,physiology Brain/drug effects,metabolism,physiopathology Calcium/metabolism Cell Nucleus/drug effects,metabolism,pathology Cell Survival/drug effects,physiology Drug Resistance/genetics Excitatory Amino Acid Agonists/toxicity Exons/genetics Female Hippocampus/drug effects,metabolism,physiopathology Homeostasis/genetics Huntingtin Protein Huntington Disease/genetics,metabolism,physiopathology Immunohistochemistry Inclusion Bodies/drug effects,metabolism,pathology Male Mice Mice, Transgenic Neostriatum/drug effects,metabolism,physiopathology Nerve Degeneration/chemically induced,genetics,metabolism Nerve Tissue Proteins/metabolism Nuclear Proteins/metabolism Receptors, N-Methyl-D-Aspartate/drug effects,metabolism Trinucleotide Repeats/genetics
Chemicals
Excitatory Amino Acid Agonists Htt protein, mouse Huntingtin Protein Nerve Tissue Proteins Nuclear Proteins Receptors, N-Methyl-D-Aspartate Calcium
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Hansson O
Section for Neuronal Survival, Wallenberg Neuroscience Center, Lund University, Lund, Sweden. [email protected]
Guatteo E
Mercuri N B
Bernardi G
Li X J
Castilho R F
Brundin P
Article Info
Journal
The European journal of neuroscience
Abbr.
Eur J Neurosci
ISSN
0953-816X
Published
2001-11-00
Pages
1492-504
Language
English
Region
France
NLM ID
8918110
Subset
IM
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