Shingyoji C, Takahashi K
Zoological Institute, Graduate School of Science, University of Tokyo, Japan.
J Cell Sci. 1995 Apr;108 ( Pt 4):1359-69. doi: 10.1242/jcs.108.4.1359.
To elucidate the mechanism of oscillatory bending in cilia and flagella, we studied the effect of protease digestion on the response of axonemes to localized application of ATP. When the axonemes were treated with elastase and then reactivated locally by ATP iontophoresis, a pair of local bends were formed due to localized unidirectional sliding in the vicinity of the ATP pipette. Upon repeated application of ATP, the direction of bending with respect to the sperm head axis changed cyclically from side to side over several cycles. The bends were planar and similar to those observed in axonemes that had not been treated with elastase. In trypsin-treated axonemes, in contrast, repetitive local reactivation did not induce such cyclical bending; instead, it induced a bend that grew only in one direction upon repeated application of ATP. Moreover, the bends were not planar. Electron microscopy of these protease-digested axonemes showed that both the interdoublet (nexin) links and the radial spokes were disrupted, but the effects of these proteases were different; trypsin disrupted 60-70% of these structures whereas elastase disrupted 20-30% of them. In both cases, spokes no. 3 and no. 8 (and no. 7) were more resistant to digestion than the others, although they tended to be more resistant to elastase than to trypsin. The importance of radial spokes and interdoublet links in the generation of cyclical bending and the determination of the bending plane is discussed.
为阐明纤毛和鞭毛摆动弯曲的机制,我们研究了蛋白酶消化对轴丝对局部施加ATP反应的影响。当轴丝用弹性蛋白酶处理,然后通过ATP离子电渗法进行局部再激活时,由于ATP移液管附近的局部单向滑动,形成了一对局部弯曲。重复施加ATP后,相对于精子头部轴的弯曲方向在几个周期内从一侧到另一侧周期性地变化。这些弯曲是平面的,与未用弹性蛋白酶处理的轴丝中观察到的弯曲相似。相比之下,在胰蛋白酶处理的轴丝中,重复局部再激活不会诱导这种周期性弯曲;相反,它会诱导一种在重复施加ATP时仅在一个方向上生长的弯曲。此外,这些弯曲不是平面的。对这些经蛋白酶消化的轴丝进行电子显微镜观察表明,双联体间(连接蛋白)连接和辐条均被破坏,但这些蛋白酶的作用不同;胰蛋白酶破坏了60-70%的这些结构,而弹性蛋白酶破坏了20-30%。在这两种情况下,3号和8号(以及7号)辐条比其他辐条更耐消化,尽管它们对弹性蛋白酶的耐受性往往比对胰蛋白酶更强。本文讨论了辐条和双联体间连接在周期性弯曲产生和弯曲平面确定中的重要性。