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衣藻鞭毛的弯曲模式:II. 钙对再激活的衣藻鞭毛的影响。

Bending patterns of Chlamydomonas flagella: II. Calcium effects on reactivated Chlamydomonas flagella.

作者信息

Omoto C K, Brokaw C J

出版信息

Cell Motil. 1985;5(1):53-60. doi: 10.1002/cm.970050105.

Abstract

Ca2+ has profound effects on the movement of cilia and eukaryotic flagella, including those of Chlamydomonas. Two clear changes seen in Chlamydomonas flagella with changes in Ca2+ are beat frequency and symmetry. Photographic and computer assisted analysis of flagellar bending patterns on a uniflagellate mutant of Chlamydomonas have been used to examine details of the effects of Ca2+ on the movement of ATP-reactivated, demembranated flagella. In addition to the forward mode bending pattern seen at low Ca2+ concentrations (10(-9)M), which has a frequency of about 50 Hz and the reverse mode bending pattern seen at high Ca2+ concentrations (10(-4)M) with a frequency around 70 Hz, we carefully examined bending patterns in the intermediate Ca2+ concentration range of 1-6.5 X 10(-6)M. In this intermediate range, the bending patterns have significantly reduced asymmetry and slightly increased frequency, compared to the motility observed at low Ca2+ concentrations. These observations indicate that changes in these two parameters of motion do not occur in parallel and suggest that the effects of Ca2+ may be a multicomponent process. Physiologically, these changes in the beat pattern at intermediate Ca2+ may signal either 1) the beginning stages of transition to the symmetrical, high-frequency beating seen at high Ca2+, or 2) a more normal forward mode motility for the trans flagellum as suggested by Kamiya and Witman [1984]. No large amplitude bending patterns associated with transitions between forward and reverse mode beating in intact cells were seen at the intermediate Ca2+ concentrations.

摘要

钙离子对纤毛和真核生物鞭毛的运动有着深远影响,包括衣藻的纤毛和鞭毛。在衣藻鞭毛中,随着钙离子浓度的变化可观察到两个明显的变化,即摆动频率和对称性。通过摄影和计算机辅助分析衣藻单鞭毛突变体的鞭毛弯曲模式,已用于研究钙离子对ATP再激活的去膜鞭毛运动影响的细节。除了在低钙离子浓度(10⁻⁹M)下观察到的向前模式弯曲模式,其频率约为50Hz,以及在高钙离子浓度(10⁻⁴M)下观察到的向后模式弯曲模式,其频率约为70Hz外,我们还仔细研究了钙离子浓度在1 - 6.5×10⁻⁶M中间范围内的弯曲模式。在这个中间范围内,与低钙离子浓度下观察到的运动性相比,弯曲模式的不对称性显著降低,频率略有增加。这些观察结果表明,这两个运动参数的变化并非平行发生,提示钙离子的作用可能是一个多组分过程。从生理学角度来看,中间钙离子浓度下摆动模式的这些变化可能预示着:1)向高钙离子浓度下所见的对称、高频摆动转变的起始阶段;或者2)如神谷和威特曼[1984]所指出的,反式鞭毛更正常的向前模式运动性。在中间钙离子浓度下,未观察到完整细胞中与向前和向后模式摆动转变相关的大幅度弯曲模式。

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