Cerebellar ataxia is a lethal neurological disease, which afflicts about 150,000 people in the US. There are currently no known preventive, neuroprotective or symptomatic treatments for this devastating disease. Using a transgenic mouse model we recently identified a novel mechanism of initiation of cerebellar ataxia through hyperexcitability of the deep cerebellar neurons (DCN), the sole output pathway of the cerebellum. Small conductance Ca -activated K+ (SK) channels, key regulators of firing frequency in the DCN, were silenced in DCN neurons of Tg mice with a naturally occurring dominant-inhibitory SK isoform (SK3-1B) that suppresses the entire SK channel family. Tg mice developed severe cerebellar ataxia by the 12th day of life characterized by motor incoordination, intention tremor and gait abnormalities in the absence of neurodegeneration. This model, together with findings from other animal models for cerebellar ataxia, strongly suggests that increased DCN excitability may be an important step in the causation of this disorder. Pharmacological reduction of DCN excitability may provide a novel therapeutic approach for cerebellar ataxia. Since SK channels are critical in regulating the firing frequency of DCN neurons and their blockade causes enhanced firing, an opener of SK channels should slow down DCN firing and ameliorate the symptoms of cerebellar ataxia. Riluzole, a FDA approved drug for the therapy of amyotrophic lateral sclerosis, has been reported to be a potent SK channel opener. In a preliminary study in a Tg mouse model for human spinocerebellar ataxia type 2 (SCA2), we found that riluzole produced a dramatic improvement in motor performance after only 4 days of treatment. We plan to extend these exciting preliminary findings by pursuing 3 specific aims:
Aim 1 : Evaluation of riluzole in 2 animal models of ataxia;
Aim 2 : Design of a more potent and selective SK opener that unlike riluzole does not block slowly inactivating sodium channels;
Aim 3 : Evaluation of our new SK opener in 2 animal models of ataxia. Taken together these important proof-of-concept studies will help to determine whether SK channel openers constitute a new therapeutic approach to improve motor performance in dominant cerebellar ataxias.

Agency
National Institute of Health (NIH)
Institute
National Institute of Neurological Disorders and Stroke (NINDS)
Type
Exploratory/Developmental Grants (R21)
Project #
5R21NS052165-02
Application #
7140222
Study Section
National Institute of Neurological Disorders and Stroke Initial Review Group (NSD)
Program Officer
Gwinn, Katrina
Project Start
2005-07-15
Project End
2009-04-30
Budget Start
2006-05-01
Budget End
2009-04-30
Support Year
2
Fiscal Year
2006
Total Cost
$211,298
Indirect Cost
Name
University of California Davis
Department
Pharmacology
Type
Schools of Medicine
DUNS #
047120084
City
Davis
State
CA
Country
United States
Zip Code
95618
Hasenau, A-L; Nielsen, G; Morisseau, C et al. (2011) Improvement of endothelium-dependent vasodilations by SKA-31 and SKA-20, activators of small- and intermediate-conductance Ca2+ -activated K+ -channels. Acta Physiol (Oxf) 203:117-26
Köhler, Ralf; Kaistha, Brajesh P; Wulff, Heike (2010) Vascular KCa-channels as therapeutic targets in hypertension and restenosis disease. Expert Opin Ther Targets 14:143-55
Sankaranarayanan, Ananthakrishnan; Raman, Girija; Busch, Christoph et al. (2009) Naphtho[1,2-d]thiazol-2-ylamine (SKA-31), a new activator of KCa2 and KCa3.1 potassium channels, potentiates the endothelium-derived hyperpolarizing factor response and lowers blood pressure. Mol Pharmacol 75:281-95
Brahler, Sebastian; Kaistha, Anuradha; Schmidt, Volker J et al. (2009) Genetic deficit of SK3 and IK1 channels disrupts the endothelium-derived hyperpolarizing factor vasodilator pathway and causes hypertension. Circulation 119:2323-32
Wulff, Heike; Kolski-Andreaco, Aaron; Sankaranarayanan, Ananthakrishnan et al. (2007) Modulators of small- and intermediate-conductance calcium-activated potassium channels and their therapeutic indications. Curr Med Chem 14:1437-57