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衣藻突变轴丝中的纳米级振动。

Nanometer scale vibration in mutant axonemes of Chlamydomonas.

作者信息

Yagi T, Kamimura S, Kamiya R

机构信息

Department of Molecular Biology, School of Science, Nagoya University, Japan.

出版信息

Cell Motil Cytoskeleton. 1994;29(2):177-85. doi: 10.1002/cm.970290209.

Abstract

Flagellar axonemes of sea urchin sperm display high frequency (200-400 Hz) vibration with nanometer scale amplitudes in the presence of ATP [Kamimura and Kamiya, 1992: J. Cell Biol. 116:1443-1454]. To investigate how various axonemal components affect the vibration, we examined vibration in wild-type and mutant axonemes of Chlamydomonas. At 1 mM ATP, wild-type axonemes underwent vibration at 100-650 Hz with amplitudes of 4-40 nm. This vibration was similar to, but less regular than, that in sea urchin sperm. Axonemes of the mutants ida1 and ida4 lacking part of the inner arm dynein underwent vibrations indistinguishable from that of wild-type. The mutant oda1 lacking the entire outer arm underwent vibration at about half the wild-type frequency. Unexpectedly, the paralyzed mutants pf18 lacking the central pair and pf14 lacking the radial spokes displayed vibration with significantly higher frequencies and smaller amplitudes than those in the wild-type vibration. These results indicate that the high-frequency vibration is common to many kinds of mutant axonemes that lack various axonemal substructures, but that its manner is sensitive to the presence of outer arm dynein and the central pair/radial spoke system. Simultaneous measurements of amplitude and frequency in wild-type and mutant axonemes suggest that the velocity of microtubule sliding in vibrating axonemes is lower than the velocity of sliding under load-free conditions. The velocity is particularly low in pf18.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在ATP存在的情况下,海胆精子的鞭毛轴丝会以纳米级振幅进行高频(200 - 400赫兹)振动[上村和神谷,1992:《细胞生物学杂志》116:1443 - 1454]。为了研究各种轴丝成分如何影响振动,我们检测了衣藻野生型和突变型轴丝的振动情况。在1毫摩尔ATP浓度下,野生型轴丝以100 - 650赫兹的频率振动,振幅为4 - 40纳米。这种振动与海胆精子的振动相似,但规律性较差。ida1和ida4突变体的轴丝缺失部分内臂动力蛋白,其振动与野生型无法区分。oda1突变体缺失整个外臂,其振动频率约为野生型的一半。出乎意料的是,瘫痪的pf18突变体缺失中央微管对,pf14突变体缺失辐条,它们的振动频率明显高于野生型,而振幅则更小。这些结果表明,高频振动在许多缺乏各种轴丝亚结构的突变型轴丝中很常见,但其方式对外臂动力蛋白以及中央微管对/辐条系统的存在很敏感。对野生型和突变型轴丝的振幅和频率进行同步测量表明,振动轴丝中微管滑动的速度低于无负载条件下的滑动速度。在pf18中,该速度特别低。(摘要截选至250词)

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