Gitel'zon I I, Sid'ko S F, Khripach N B, Buraeva I B
Tsitologiia. 1977 Jun;19(6):632-8.
The ciliary activity of Ctenophore bolinopsis is inhibited by decreasing concentration of Mg2+ and increasing concentration of Ca2+ in the medium. The same changes in Mg2+ and Ca2+ concentration trigger muscle contractions and bioluminescence. Co2+ arrests the cilia beating in the rectangular position. An increase in Mg2+ concentration or decrease in Ca2+ concentration switch off the nervous inhibitory mechanisms of ciliary activity, suppress muscle contractions and bioluminescence. Ni2+ produces a similar effect, but the ciliary heating is only slightly accelerated, by the contrast to the effect of increased Mg2+ concentration. A Cl-free medium Mn2+ and tetrodotoxin in commonly used concentrations are of no effect on the systems studied. Experiments involving changes in K+ concentrations and administration of tetraethylammonium suggest that the resting potential in the examined cells may be due to K+ as the most permeant ion, and that K+-channels in the cell membrane may be voltage--controlled. The proposal about "biionic" (Ca2+/Mg2+) bioelectric control of a number of intracellular reactions is discussed.
在栉水母 Bolinopsis 中,当培养基中 Mg2+ 浓度降低和 Ca2+ 浓度升高时,其纤毛活动会受到抑制。Mg2+ 和 Ca2+ 浓度的相同变化会引发肌肉收缩和生物发光。Co2+ 会使纤毛在矩形位置停止摆动。Mg2+ 浓度升高或 Ca2+ 浓度降低会关闭纤毛活动的神经抑制机制,抑制肌肉收缩和生物发光。Ni2+ 产生类似的效果,但与 Mg2+ 浓度升高的效果相比,纤毛摆动只是略有加速。无 Cl 培养基、常用浓度的 Mn2+ 和河豚毒素对所研究的系统没有影响。涉及 K+ 浓度变化和给予四乙铵的实验表明,所检测细胞的静息电位可能归因于 K+ 作为最易透过的离子,并且细胞膜中的 K+ 通道可能受电压控制。文中讨论了关于多种细胞内反应的“双离子”(Ca2+/Mg2+)生物电控制的提议。