Shingyoji C, Takahashi K
Zoological Institute, Graduate School of Science, University of Tokyo, Japan.
Cell Motil Cytoskeleton. 1995;31(1):59-65. doi: 10.1002/cm.970310107.
To investigate the mechanism of the flagellar quiescence in sperm, we examined the effect of electric stimulation of individual spermatozoa of the sea urchin, Hemicentrotus pulcherrimus. Stimulation with a suction electrode attached to the sperm head elicited a flagellar quiescence response, in which the sperm showed a typical cane-shaped bend in the proximal region of the flagellum when the electrode was used as anode. Cathodic stimulation also induced quiescence, but was much less effective than anodic stimulation. During the quiescence response, which lasted for 1-3 s, no new bend was initiated, and subsequently the flagellum resumed normal beating. The quiescence response required the presence of Ca2+ (> 2 mM) in sea water, and was inhibited by Co2+ and La3+. At low Ca2+ concentrations (2-5 mM), the angle of the cane-shaped bend was smaller than that at 10 mM Ca2+; thus the angle of the cane-shaped bend, characteristic of the quiescence response is dependent on Ca2+ concentration. These results suggest that the quiescence response is triggered by a depolarization of the flagellar membrane, followed by an influx of Ca2+ into the flagellum through Ca2+ channels. The increase in Ca2+ concentration within the flagellum affects the amount of sliding and thus produces a cane-shaped proximal bend of various angles, while inhibiting both the propagation of the proximal bend (principal bend) and the formation of a new reverse bend.
为了研究精子鞭毛静止的机制,我们检测了对海胆(光棘球海胆)单个精子进行电刺激的效果。用连接在精子头部的吸电极进行刺激会引发鞭毛静止反应,当电极用作阳极时,精子在鞭毛近端区域呈现典型的手杖状弯曲。阴极刺激也会诱导静止,但效果远不如阳极刺激。在持续1 - 3秒的静止反应期间,没有新的弯曲产生,随后鞭毛恢复正常摆动。静止反应需要海水中存在Ca2 +(> 2 mM),并受到Co2 +和La3 +的抑制。在低Ca2 +浓度(2 - 5 mM)下,手杖状弯曲的角度小于10 mM Ca2 +时的角度;因此,静止反应特有的手杖状弯曲角度取决于Ca2 +浓度。这些结果表明,静止反应是由鞭毛膜的去极化引发的,随后Ca2 +通过Ca2 +通道流入鞭毛。鞭毛内Ca2 +浓度的增加会影响滑动量,从而产生不同角度的手杖状近端弯曲,同时抑制近端弯曲(主弯曲)的传播和新的反向弯曲的形成。