RRC ID 11770
著者 Takahashi E, Niimi K, Itakura C.
タイトル Motor coordination impairment in aged heterozygous rolling Nagoya, Cav2.1 mutant mice.
ジャーナル Brain Res
Abstract Although rolling Nagoya mice exhibit ataxia and carry a mutation in the alpha1 subunit of the Cav2.1 channel regulating neurotransmitter release, heterozygous mice have not received a great deal of attention. Given the pivotal role of Cav2.1 channels in controlling neurotransmitter release, age-dependent alterations in Cav2.1 channel function may result in aberrant synaptic signaling, leading to motor dysfunction. To examine age-related motor alterations in heterozygous mice, we used a battery of tests (e.g., motor activity, footprint, traction, wire suspension, balance beam, rotating rod, hind-limb extension analysis) in 2- and 22-month-old mice and examined expression patterns of the alpha1 gene in their cerebellum. No significant difference was observed between 2-month-old heterozygous and wild-type mice in the any of the behavioral tests or in the alpha1 expression levels. Although 22-month-old heterozygous and wild-type mice exhibited no significant difference in motor activity, footprint, or traction tests, 22-month-old heterozygous mice showed deficits in the wire hanging, balance beam, and rotating rod tests. Additionally, 22-month-old heterozygous mice displayed clasping behavior in the hind-limb extension test. Expression analysis showed that wild-type Cav2.1alpha(1) mRNA was lower in aged mice than in young mice and that mutant-type Cav2.1alpha(1) mRNA was higher in aged mice than in young mice. These findings suggest that heterozygous mice show age-related motor changes due to mutant-type Cav2.1 and that heterozygous mice may represent a new model for examining motor function.
巻・号 1279
ページ 50-7
公開日 2009-7-7
DOI 10.1016/j.brainres.2009.05.016
PII S0006-8993(09)00941-X
PMID 19446536
MeSH Aging* Analysis of Variance Animals Calcium Channels, N-Type Calcium Channels, P-Type / genetics* Calcium Channels, P-Type / metabolism Calcium Channels, Q-Type / genetics* Calcium Channels, Q-Type / metabolism Cerebellum / metabolism Gene Expression Male Mice Mice, Mutant Strains Motor Activity / genetics* Movement Disorders / genetics* Neuropsychological Tests RNA, Messenger / metabolism Reverse Transcriptase Polymerase Chain Reaction
IF 2.733
引用数 24
WOS 分野 NEUROSCIENCES
リソース情報
実験動物マウス RBRC00388