Gibbons B H, Baccetti B, Gibbons I R
Cell Motil. 1985;5(4):333-50. doi: 10.1002/cm.970050406.
The sperm flagella of the eel, Anguilla anguilla, are capable of vigorous motion in spite of having an axoneme with reduced structure that lacks the outer dynein arms, radial spokes and spoke heads, the two central tubules and the central tubule projections that are all part of the standard "9+2" axoneme. These sperm progress forward rapidly as a result of the propagation of helicoidal waves distally along the flagellum. Their flagellar beat frequencies are high, 93 Hz at 21 degrees C, and they roll at a frequency of about 19 Hz. Eel sperm could be demembranated with Nonidet P-40 and reactivated with MgATP2- in 0.22 M K acetate at pH 8.1. The reactivated motility closely resembles that of the live sperm, with a beat frequency of 69 Hz, but the demembranated flagella are unusually fragile, and commonly disintegrate by a combination of splitting, coiling, and sliding within a few minutes. Little reactivation is obtained if acetate is replaced by Cl- in the reactivating medium. The Michaelis constant for beat frequency (0.2 mM) is similar to that obtained for several "9+2" flagella. These sperm, however, appear to lack the mechanism by which Ca2+ regulates waveform. Our results indicate that eel sperm flagella, which at rest are straight, are induced to bend helicoidally by ATP, as the result of sliding between tubules that is blocked at both the base and tip of the organelle. The flagellar waveform consists of a series of planar bends separated by short regions of right-handed twist, which give it an overall left-handed helicoidal form.
欧洲鳗鲡(Anguilla anguilla)的精子鞭毛尽管其轴丝结构简化,缺少外动力蛋白臂、辐条和辐条头、两条中央微管以及中央微管突起(这些都是标准“9+2”轴丝的组成部分),但仍能进行剧烈运动。这些精子由于螺旋波沿鞭毛向远端传播而快速向前游动。它们的鞭毛 beat 频率很高,在21摄氏度时为93赫兹,并且以约19赫兹的频率滚动。欧洲鳗鲡精子可用诺乃洗涤剂P-40去膜,并在pH 8.1的0.22 M醋酸钾中用MgATP2-重新激活。重新激活后的运动与活精子的运动非常相似,beat频率为69赫兹,但去膜后的鞭毛异常脆弱,通常在几分钟内就会因分裂、盘绕和滑动的组合而解体。如果在重新激活介质中用Cl-代替醋酸盐,则几乎得不到重新激活。beat频率的米氏常数(0.2 mM)与几种“9+2”鞭毛得到的常数相似。然而,这些精子似乎缺乏Ca2+调节波形的机制。我们的结果表明,静止时呈直形的欧洲鳗鲡精子鞭毛,由于在细胞器基部和顶端均受阻的微管间滑动,被ATP诱导呈螺旋状弯曲。鞭毛波形由一系列平面弯曲组成,这些弯曲由右手扭转的短区域隔开,使其整体呈左手螺旋状。