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缺乏小白蛋白和/或钙结合蛋白D-28k的小鼠中的单频和双频快速小脑振荡

Mono- and dual-frequency fast cerebellar oscillation in mice lacking parvalbumin and/or calbindin D-28k.

作者信息

Servais L, Bearzatto B, Schwaller B, Dumont M, De Saedeleer C, Dan B, Barski J J, Schiffmann S N, Cheron G

机构信息

Laboratoire d'électrophysiologie, Université de Mons Hainaut, 24 Avenue du Champ de Mars, 7000 Mons, Belgium.

出版信息

Eur J Neurosci. 2005 Aug;22(4):861-70. doi: 10.1111/j.1460-9568.2005.04275.x.

Abstract

Calbindin is a fast Ca2+-binding protein expressed by Purkinje cells and involved in their firing regulation. Its deletion produced approximately 160-Hz oscillation sustained by synchronous, rhythmic Purkinje cells in the cerebellar cortex of mice. Parvalbumin is a slow-onset Ca2+-binding protein expressed in Purkinje cells and interneurons. In order to assess its function in Purkinje cell firing regulation, we studied the firing behavior of Purkinje cells in alert mice lacking parvalbumin (PV-/-), calbindin (CB-/-) or both (PV-/- CB-/-) and in wild-type controls. The absence of either protein resulted in Purkinje cell firing alterations (decreased complex spike duration and pause, increased simple spike firing rate) that were more pronounced in CB-/- than in PV-/- mice. Cumulative effects were found in complex spike alterations in PV-/- CB-/- mice. PV-/- and CB-/- mice manifested approximately 160-Hz oscillation that was sustained by Purkinje cells firing rhythmically and synchronously along the parallel fiber axis. This oscillation was dependent on GABA(A), N-methyl-D-aspartate and gap junction transmission. PV-/- CB-/- mice exhibited a dual-frequency (110 and 240 Hz) oscillation. The instantaneous spectral densities of both components were inversely correlated. Simple and complex spikes of Purkinje cells were phase-locked to one of the two oscillation frequencies. Mono- and dual-frequency oscillations presented similar pharmacological properties. These results demonstrate that the absence of the Ca2+ buffers parvalbumin and calbindin disrupts the regulation of Purkinje cell firing rate and rhythmicity in vivo and suggest that precise Ca2+ transient control is required to maintain the normal spontaneous arrhythmic and asynchronous firing pattern of the Purkinje cells.

摘要

钙结合蛋白是一种由浦肯野细胞表达的快速钙离子结合蛋白,参与其放电调节。其缺失在小鼠小脑皮质中产生了由同步、节律性浦肯野细胞维持的约160赫兹振荡。小白蛋白是一种在浦肯野细胞和中间神经元中表达的慢启动钙离子结合蛋白。为了评估其在浦肯野细胞放电调节中的功能,我们研究了缺乏小白蛋白(PV-/-)、钙结合蛋白(CB-/-)或两者都缺乏(PV-/- CB-/-)的清醒小鼠以及野生型对照小鼠中浦肯野细胞的放电行为。任何一种蛋白的缺失都会导致浦肯野细胞放电改变(复合峰持续时间和停顿减少,简单峰放电频率增加),在CB-/-小鼠中比在PV-/-小鼠中更明显。在PV-/- CB-/-小鼠的复合峰改变中发现了累积效应。PV-/-和CB-/-小鼠表现出约160赫兹的振荡,该振荡由浦肯野细胞沿平行纤维轴有节律地同步放电维持。这种振荡依赖于GABA(A)、N-甲基-D-天冬氨酸和缝隙连接传递。PV-/- CB-/-小鼠表现出双频(110和240赫兹)振荡。两个成分的瞬时谱密度呈负相关。浦肯野细胞的简单峰和复合峰与两个振荡频率之一锁相。单频和双频振荡呈现出相似的药理学特性。这些结果表明,钙离子缓冲蛋白小白蛋白和钙结合蛋白的缺失破坏了体内浦肯野细胞放电率和节律性的调节,并表明需要精确的钙离子瞬变控制来维持浦肯野细胞正常的自发无节律和不同步放电模式。

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