Klumpp S, Cohen P, Schultz J E
Pharmazeutisches Institut, Universitat Tübingen, FRG.
EMBO J. 1990 Mar;9(3):685-9. doi: 10.1002/j.1460-2075.1990.tb08160.x.
Backward swimming is a stereotypic behavioural response of Paramecium. It is triggered by depolarizing stimuli, which open calcium channels in the excitable ciliary membrane. The influx of Ca2+ causes the reversal of ciliary beat and initiates backward swimming. Here, we demonstrate that the protein phosphatase inhibitor okadaic acid does not affect the normal forward swimming pattern of Paramecium, but greatly extends the duration of backward swimming as initiated by depolarization caused by a rise in extracellular K+. Chelation of external Ca2+ results in an immediate resumption of forward swimming. The results suggest that the voltage-operated calcium channel is inactivated by a dephosphorylation event, and that okadaic acid blocks this dephosphorylation without any effect on the motile apparatus of the cilia. In addition, Paramecium is unique among eukaryotic cells, in that okadaic acid inhibits just one protein phosphatase, namely a type 1 enzyme, 75% of which is tightly associated with the excitable ciliary membrane. The type 2A protein phosphatases in Paramecium are unaffected by okadaic acid. The results indicate that protein phosphatase 1 is the enzyme responsible for the dephosphorylation and closure of the calcium channel in Paramecium.
向后游动是草履虫的一种刻板行为反应。它由去极化刺激引发,这种刺激会打开可兴奋纤毛膜上的钙通道。Ca2+的内流导致纤毛摆动逆转并引发向后游动。在此,我们证明蛋白磷酸酶抑制剂冈田酸不影响草履虫正常的向前游动模式,但会极大地延长由细胞外K+升高引起的去极化所引发的向后游动的持续时间。螯合外部Ca2+会导致立即恢复向前游动。结果表明,电压门控钙通道通过去磷酸化事件失活,并且冈田酸阻断这种去磷酸化,而对纤毛的运动装置没有任何影响。此外,草履虫在真核细胞中是独特的,因为冈田酸仅抑制一种蛋白磷酸酶,即1型酶,其中75%与可兴奋纤毛膜紧密相关。草履虫中的2A型蛋白磷酸酶不受冈田酸影响。结果表明蛋白磷酸酶1是负责草履虫中钙通道去磷酸化和关闭的酶。