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钙转运蛋白 PMCA2 的表达减少会减缓小鼠小脑浦肯野神经元中的 Ca(2+)动力学,并改变运动协调的精确性。

Reduced expression of the Ca(2+) transporter protein PMCA2 slows Ca(2+) dynamics in mouse cerebellar Purkinje neurones and alters the precision of motor coordination.

机构信息

University of Otago, Physiology, 270 Great King Street, Dunedin 9001, New Zealand.

出版信息

J Physiol. 2010 Mar 15;588(Pt 6):907-22. doi: 10.1113/jphysiol.2009.182196. Epub 2010 Jan 18.

Abstract

Cerebellar Purkinje neurones (PNs) express high levels of the plasma membrane calcium ATPase, PMCA2, a transporter protein critical for the clearance of calcium from excitable cells. Genetic deletion of one PMCA2 encoding gene in heterozygous PMCA2 knock-out (PMCA2(+/-) mice enabled us to determine how PMCA2 influences PN calcium regulation without the complication of the severe morphological changes associated with complete PMCA2 knock-out (PMCA2(-/-) in these cells. The PMCA2(+/-) cerebellum expressed half the normal levels of PMCA2 and this nearly doubled the time taken for PN dendritic calcium transients to recover (mean fast and slow recovery times increased from 70 ms to 110 ms and from 600 ms to 1100 ms). The slower calcium recovery had distinct consequences for PMCA2(+/-) PN physiology. The PNs exhibited weaker climbing fibre responses, prolonged outward Ca(2+)-dependent K(+) current (mean fast and slow recovery times increased from 136 ms to 192 ms and from 595 ms to 1423 ms) and a slower mean frequency of action potential firing (7.4 Hz compared with 15.8 Hz). Our findings were consistent with prolonged calcium accumulation in the cytosol of PMCA2(+/-) Purkinje neurones. Although PMCA2(+/-) mice exhibited outwardly normal behaviour and little change in their gait pattern, when challenged to run on a narrow beam they exhibited clear deficits in hindlimb coordination. Training improved the motor performance of both PMCA2(+/-) and wild-type mice, although PMCA2(+/-) mice were always impaired. We conclude that reduced calcium clearance perturbs calcium dynamics in PN dendrites and that this is sufficient to disrupt the accuracy of cerebellar processing and motor coordination.

摘要

小脑浦肯野神经元 (PNs) 表达高水平的质膜钙 ATP 酶,PMCA2,这是一种对于清除兴奋细胞中的钙至关重要的转运蛋白。杂合 PMCA2 敲除 (PMCA2(+/-) 小鼠中一个 PMCA2 编码基因的缺失使我们能够确定 PMCA2 如何影响 PN 钙调节,而不会出现与这些细胞中完全 PMCA2 敲除 (PMCA2(-/-) 相关的严重形态变化的复杂性。PMCA2(+/-) 小脑表达的 PMCA2 水平为正常水平的一半,这使得 PN 树突钙瞬变的恢复时间几乎延长了一倍(快速和慢速恢复时间从 70ms 增加到 110ms,从 600ms 增加到 1100ms)。较慢的钙恢复对 PMCA2(+/-) PN 生理学有明显的影响。PN 表现出较弱的 climbing 纤维反应,延长了外向 Ca(2+)-依赖性 K(+)电流(快速和慢速恢复时间分别从 136ms 增加到 192ms,从 595ms 增加到 1423ms)和较慢的动作电位发放频率(7.4Hz 与 15.8Hz 相比)。我们的发现与 PMCA2(+/-) Purkinje 神经元胞质中钙积累的延长相一致。尽管 PMCA2(+/-) 小鼠表现出正常的外向行为,步态模式变化不大,但在窄束上跑步时,它们明显表现出后肢协调障碍。训练改善了 PMCA2(+/-) 和野生型小鼠的运动表现,尽管 PMCA2(+/-) 小鼠总是受损。我们得出结论,钙清除减少扰乱了 PN 树突中的钙动力学,这足以破坏小脑处理和运动协调的准确性。

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