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衣藻分离鞭毛轴丝中波形的钙调控

Calcium control of waveform in isolated flagellar axonemes of Chlamydomonas.

作者信息

Bessen M, Fay R B, Witman G B

出版信息

J Cell Biol. 1980 Aug;86(2):446-55. doi: 10.1083/jcb.86.2.446.

Abstract

The effect of Ca(++) on the waveform of reactivated, isolated axonemes of chlamydomonas flagella was investigated. Flagella were detached and isolated by the dibucaine procedure and demembranated by treatment with the detergent Nonidet; the resulting axomenes lack the flagellar membrane and basal bodies. In Ca(++)-buffered reactivation solutions containing 10(-6) M or less free Ca(++), the axonemes beat with a highly asymmetrical, predominantly planar waveform that closely resembled that of in situ flagella of forward swimming cells. In solutions containing 10(-4) M Ca(++), the axonemes beat with a symmetrical waveform that was very similar to that of in situ flagella during backward swimming. In 10(-5) M Ca(++), the axonemes were predominantly quiescent, a state that appears to be closely associated with changes in axomenal waveform or direction of beat in many organisms. Experiments in which the concentrations of free Ca(++), not CaATP(--) complex were independently varied suggested that free Ca(++), not CaATP(--), was responsible for the observed changes. Analysis of the flagellar ATPases associated with the isolated axonemes and the nonidet- soluble membrane-matrix fraction obtained during preparation of the axonemes showed that the axonemes lacked the 3.0S Ca(++)-activated ATPase, almost all of which was recovered in the membrane-matrix fraction. These results indicate that free Ca(++) binds directly to an axonemal component to alter flagellar waveform, and that neither the 3.0S CaATPase nor the basal bodies are directly involved in this change.

摘要

研究了钙离子(Ca(++))对莱茵衣藻鞭毛再激活的、分离的轴丝波形的影响。通过丁卡因程序分离并分离鞭毛,并用去污剂诺乃洗涤剂处理使其去膜;得到的轴丝缺乏鞭毛膜和基体。在含有10^(-6) M或更低游离钙离子(Ca(++))的Ca(++)缓冲再激活溶液中,轴丝以高度不对称、主要为平面的波形摆动,这与向前游动细胞的原位鞭毛波形非常相似。在含有10^(-4) M Ca(++)的溶液中,轴丝以对称波形摆动,这与向后游动期间的原位鞭毛波形非常相似。在10^(-5) M Ca(++)中,轴丝主要处于静止状态,这种状态似乎与许多生物体中轴丝波形或摆动方向的变化密切相关。独立改变游离钙离子(Ca(++))而非CaATP(- -)复合物浓度的实验表明,是游离钙离子(Ca(++))而非CaATP(- -)导致了观察到的变化。对与分离的轴丝相关的鞭毛ATP酶以及轴丝制备过程中获得的诺乃洗涤剂不溶性膜-基质部分的分析表明,轴丝缺乏3.0S Ca(++)激活的ATP酶,几乎所有该酶都在膜-基质部分中回收。这些结果表明,游离钙离子(Ca(++))直接与轴丝成分结合以改变鞭毛波形,并且3.0S CaATP酶和基体都不直接参与这种变化。

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