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局部再激活的仓鼠精子鞭毛弯曲形成的研究。

A study of bend formation in locally reactivated hamster sperm flagella.

作者信息

Yeung C H, Woolley D M

出版信息

J Muscle Res Cell Motil. 1983 Dec;4(6):625-45. doi: 10.1007/BF00712157.

Abstract

Mature golden hamster sperm were demembranated with Triton X-100, and the flagellum was reactivated locally by iontophoretic application of ATP at various distances from the base. The response was a brief local straightening of a short length of the flagellum followed by the formation of a pair of bends beyond the two ends of the straight region. The two possible proximo-distal sequences of bends, either PR (principal and reverse bends) or RP, could be distinguished and their incidence studied. The formation of PR and RP bend pairs is interpreted as the result of active sliding of the axonemal doublet subsets 1-4 and 6-9 respectively. The probability of obtaining a PR response increased (1) with the initial local curvature of the resting R bend and (2) with the distance of the stimulated site from the flagellar base; it decreased with the duration of incubation after demembranation. The patterns of response in the middle and the principal piece of the flagellum were basically similar although the former was weaker and more complicated. Quantitative analysis of the ATP-induced movements indicates little or no net microtubule displacement distal to the pair of induced bends, suggesting the cancelling of microtubule displacements in the two bends. However, the expected balance in the rate of growth of the two bends was upset by the decay of one bend simultaneously with decay of the original adjacent bend. Propagation of the interbend region started before the growth of the pair of bends reached its maximum, and seemed to be triggered by a critical bend curvature. Propagation was always in the direction base to tip. Experimental findings also suggest a role in the determination of the waveform for the fibrous structures on the periphery of the axoneme which are characteristic of the mammalian sperm flagellum. The present study strengthens the experimental evidence for the mathematical model which proposes that active sliding occurs mainly in the interbend region and causes bending of segments in opposite directions. In addition our findings indicate that the activation of alternate halves of the axoneme is curvature dependent, suggesting a basis for the flagellar oscillation.

摘要

用曲拉通X-100去除成熟金黄地鼠精子的细胞膜,通过离子电渗法在距基部不同距离处施加ATP使鞭毛局部重新激活。反应是鞭毛一小段短暂的局部伸直,随后在伸直区域两端之外形成一对弯曲。可以区分弯曲的两种可能的近端到远端顺序,即PR(主弯曲和反向弯曲)或RP,并研究它们的发生率。PR和RP弯曲对的形成分别被解释为轴丝双联体亚组1-4和6-9主动滑动的结果。获得PR反应的概率增加:(1)随着静息R弯曲的初始局部曲率增加;(2)随着刺激部位距鞭毛基部的距离增加;它随着去膜后孵育时间的延长而降低。鞭毛中部和主段的反应模式基本相似,尽管前者较弱且更复杂。对ATP诱导运动的定量分析表明,在诱导弯曲对远端几乎没有或没有净微管位移,这表明两个弯曲中的微管位移相互抵消。然而,由于一个弯曲与原始相邻弯曲同时衰减,两个弯曲生长速率的预期平衡被打破。弯曲间区域的传播在弯曲对生长达到最大值之前就开始了,并且似乎是由临界弯曲曲率触发的。传播总是从基部向顶端方向进行。实验结果还表明,哺乳动物精子鞭毛特有的轴丝外围纤维结构在波形确定中起作用。本研究加强了数学模型的实验证据,该模型提出主动滑动主要发生在弯曲间区域并导致节段向相反方向弯曲。此外,我们的研究结果表明,轴丝交替半部分的激活取决于曲率,这为鞭毛振荡提供了基础。

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