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钒酸盐对鳃纤毛的影响:纤毛摆动中的转换机制。

Effect of vanadate on gill cilia: switching mechanism in ciliary beat.

作者信息

Wais-Steider J, Satir P

出版信息

J Supramol Struct. 1979;11(3):339-47. doi: 10.1002/jss.400110309.

Abstract

Lateral (L) cilia of freshwater mussel (Margaritana margaritifera and Elliptio complanatus) gills can be arrested in one of two unique positions. When treated with 12.5 mM CaCl2 and 10(-5) M A23187 they arrest in a "hands up" position, ie, pointing frontally. When treated with approximately 10 mM vanadate (V) they arrest in a "hands down" position, ie, pointing abfrontally. L-cilia treated with 12.5 mM CaCl2 and 1 mM NaN3 also arrest in a "hands down" position; substitution of 20 mM KCl and 1 mM NaN3 causes cilia to move rapidly and simultaneously to a "hands up" position. The observations suggest that there are two switching mechanisms for activation of active sliding in ciliary beat one at the end of the recovery stroke and the other at the end of the effective stroke; the first is inhibited by calcium and the second by vanadate or azide. This is consistent with a model of ciliary beating where microtubule doublet numbers 1, 2, 3, and 4 are active during the effective stroke while microtubule doublets numbers 6, 7, 8, and 9 are passive, and the converse occurs during the recovery stroke.

摘要

淡水贻贝(珠蚌和椭圆蚌)鳃的外侧(L)纤毛可停滞在两种独特位置之一。用12.5 mM氯化钙和10⁻⁵ M A23187处理时,它们停滞在“举手”位置,即朝前指向。用约10 mM钒酸盐(V)处理时,它们停滞在“垂手”位置,即朝后指向。用12.5 mM氯化钙和1 mM叠氮化钠处理的L纤毛也停滞在“垂手”位置;用20 mM氯化钾和1 mM叠氮化钠替代会使纤毛快速同时移动到“举手”位置。这些观察结果表明,纤毛摆动中主动滑动激活存在两种转换机制,一种在恢复冲程末端,另一种在有效冲程末端;第一种受钙抑制,第二种受钒酸盐或叠氮化钠抑制。这与纤毛摆动模型一致,即微管双联体1、2、3和4在有效冲程期间活跃,而微管双联体6、7、8和9被动,在恢复冲程期间则相反。

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