Cerebellar ataxia and Purkinje cell dysfunction caused by Ca2+-activated K+ channel deficiency

被引:330
作者
Sausbier, M
Hu, H
Arntz, C
Feil, S
Kamm, S
Adelsberger, H
Sausbier, U
Sailer, CA
Feil, R
Hofmann, F
Korth, M
Shipston, MJ
Knaus, HG
Wolfer, DP
Pedroarena, CM
Storm, JF [1 ]
Ruth, P
机构
[1] Univ Tubingen, Hertie Inst Klin Hirnforsch, Pharmakol & Toxikol Pharmazeut Inst, D-72076 Tubingen, Germany
[2] Univ Tubingen, Hertie Inst Klin Hirnforsch, Abt Kognit Neurol, D-72076 Tubingen, Germany
[3] Univ Oslo, Inst Physiol, N-0317 Oslo, Norway
[4] Univ Oslo, Ctr Mol Biol & Neurosci, N-0317 Oslo, Norway
[5] Tech Univ Munich, Inst Pharmacol & Toxicol, D-80802 Munich, Germany
[6] Univ Munich, Inst Physiol, D-80336 Munich, Germany
[7] Univ Innsbruck, Inst Biochem Pharmacol, A-6020 Innsbruck, Austria
[8] Univ Klinikum Hamburg Eppendorf, Inst Pharmakol Pharmazeuten, D-20246 Hamburg, Germany
[9] Univ Edinburgh, Sch Med, Membrane Biol Grp, Div Biomed Sci, Edinburgh EH8 9XD, Midlothian, Scotland
[10] Univ Zurich, Inst Anat, CH-8057 Zurich, Switzerland
基金
英国惠康基金;
关键词
D O I
10.1073/pnas.0401702101
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Malfunctions of potassium channels are increasingly implicated as causes of neurological disorders. However, the functional roles of the large-conductance voltage- and Ca2+-activated K+ channel (BK channel), a unique calcium, and voltage-activated potassium channel type have remained elusive. Here we report that mice lacking BK channels (BK-/-) show cerebellar dysfunction in the form of abnormal conditioned eye-blink reflex, abnormal locomotion and pronounced deficiency in motor coordination, which are likely consequences of cerebellar learning deficiency. At the cellular level, the BK-/- mice showed a dramatic reduction in spontaneous activity of the BK-/- cerebellar Purkinje neurons, which generate the sole output of the cerebellar cortex and, in addition, enhanced short-term depression at the only output synapses of the cerebellar cortex, in the deep cerebellar nuclei. The impairing cellular effects caused by the lack of postsynaptic BK channels were found to be due to depolarization-induced inactivation of the action potential mechanism. These results identify previously unknown roles of potassium channels in mammalian cerebellar function and motor control. In addition, they provide a previously undescribed animal model of cerebellar ataxia.
引用
收藏
页码:9474 / 9478
页数:5
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