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PMID: 17535104 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Lithium therapy improves neurological function and hippocampal dendritic arborization in a spinocerebellar ataxia type 1 mouse model.

PLoS medicine ·Vol. 4 ·No. 5 ·2007-05-00 ·Pages e182

Watase K, Gatchel JR, Sun Y, Emamian E, Atkinson R, Richman R, Mizusawa H, Orr HT, Shaw C, Zoghbi HY

Abstract

Spinocerebellar ataxia type 1 (SCA1) is a dominantly inherited neurodegenerative disorder characterized by progressive motor and cognitive dysfunction. Caused by an expanded polyglutamine tract in ataxin 1 (ATXN1), SCA1 pathogenesis involves a multifactorial process that likely begins with misfolding of ATXN1, which has functional consequences on its interactions, leading to transcriptional dysregulation. Because lithium has been shown to exert neuroprotective effects in a variety of conditions, possibly by affecting gene expression, we tested the efficacy of lithium treatment in a knock-in mouse model of SCA1 (Sca1(154Q/2Q) mice) that replicates many features of the human disease. Sca1(154Q/2Q) mice and their wild-type littermates were fed either regular chow or chow that contained 0.2% lithium carbonate. Dietary lithium carbonate supplementation resulted in improvement of motor coordination, learning, and memory in Sca1(154Q/2Q) mice. Importantly, motor improvement was seen when treatment was initiated both presymptomatically and after symptom onset. Neuropathologically, lithium treatment attenuated the reduction of dendritic branching in mutant hippocampal pyramidal neurons. We also report that lithium treatment restored the levels of isoprenylcysteine carboxyl methyltransferase (Icmt; alternatively, Pccmt), down-regulation of which is an early marker of mutant ATXN1 toxicity. The effect of lithium on a marker altered early in the course of SCA1 pathogenesis, coupled with its positive effect on multiple behavioral measures and hippocampal neuropathology in an authentic disease model, make it an excellent candidate treatment for human SCA1 patients.

MeSH Terms
Animals Antimanic Agents/pharmacology Ataxin-1 Ataxins Dendrites/enzymology,pathology Female Glycogen Synthase Kinase 3/metabolism Glycogen Synthase Kinase 3 beta Hippocampus/pathology Lithium Carbonate/pharmacology Male Maze Learning/drug effects Memory/drug effects Mice Mice, Inbred C57BL Mice, Neurologic Mutants Motor Activity/drug effects Nerve Tissue Proteins/genetics Nuclear Proteins/genetics Phosphorylation/drug effects Protein Methyltransferases/genetics Proto-Oncogene Proteins c-akt/metabolism RNA, Messenger/metabolism Spinocerebellar Ataxias/drug therapy,genetics,pathology
Chemicals
ATXN1 protein, human Antimanic Agents Ataxin-1 Ataxins Atxn1 protein, mouse Nerve Tissue Proteins Nuclear Proteins RNA, Messenger Lithium Carbonate Protein Methyltransferases protein-S-isoprenylcysteine O-methyltransferase Glycogen Synthase Kinase 3 beta Proto-Oncogene Proteins c-akt Glycogen Synthase Kinase 3
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Watase Kei
21st Century COE program on Brain Integration and Its Disorders, Tokyo Medical and Dental University, Tokyo, Japan.
Gatchel Jennifer R
Sun Yaling
Emamian Effat
Atkinson Richard
Richman Ronald
Mizusawa Hidehiro
Orr Harry T
Shaw Chad
Zoghbi Huda Y
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Article Info
Journal
PLoS medicine
Abbr.
PLoS Med
ISSN
1549-1676
Published
2007-05-00
Pages
e182
Language
English
Region
United States
NLM ID
101231360
PMCID
PMC1880853
Subset
IM
Grants
NIMH NIH HHS · F30 MH072117 · United States
NICHD NIH HHS · P30 HD024064 · United States
NINDS NIH HHS · NS045667 · United States
NINDS NIH HHS · NS27699 · United States
NIMH NIH HHS · F30MH072117 · United States
NINDS NIH HHS · R01 NS045667 · United States
NINDS NIH HHS · R37 NS027699 · United States
NINDS NIH HHS · R01 NS027699 · United States
NICHD NIH HHS · HD24064 · United States
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