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嗜碱芽孢杆菌菌株YN-1的钠驱动鞭毛马达

Na+-driven flagellar motors of an alkalophilic Bacillus strain YN-1.

作者信息

Hirota N, Imae Y

出版信息

J Biol Chem. 1983 Sep 10;258(17):10577-81.

PMID:6885795
Abstract

Flagellar motors of some alkalophilic Bacillus strains have been suggested to be powered by the electrochemical potential gradient of Na+, namely the (formula: see text) (Hirota, N., Kitada, M., and Imae, Y. (1981) FEBS Lett. 132, 278-280). In the present study, we quantitatively measured the (formula: see text) and motility of one of the strains, YN-1. Swimming speed of YN-1 cells increased linearly with a logarithmic increase of Na+ concentration in the medium up to 100 mM. The intracellular Na+ concentration and the membrane potential of the cell were about 30 mM and -170 mV, respectively, and stayed constant irrespective of Na+ concentration in the medium. Thus, the swimming speed changed as a function of the chemical potential difference of Na+ across the cell membrane. When the membrane potential of YN-1 cells was decreased by a combination of valinomycin and various concentrations of K+ in the medium, the swimming speed of the cells decreased linearly and reached zero at around -90 mV. Under the condition, the intracellular Na+ concentration stayed constant. Thus, the membrane potential was also a determinant of the swimming speed. Furthermore, the chemical potential of Na+ and the membrane potential were found to be equivalent as the energy source for motility. Therefore, it is concluded that the (formula: see text) is the energy source for the flagellar motors of YN-1 cells. Threshold value of the (formula: see text) for motility was about -100 mV.

摘要

一些嗜碱芽孢杆菌菌株的鞭毛马达被认为是由Na+的电化学势梯度提供动力,即(公式:见原文)(广田直、北田正、今江洋(1981年)《欧洲生物化学学会联合会快报》132卷,278 - 280页)。在本研究中,我们定量测量了其中一个菌株YN - 1的(公式:见原文)和运动性。YN - 1细胞的游动速度随着培养基中Na+浓度对数增加呈线性增加,直至100 mM。细胞内Na+浓度和细胞膜电位分别约为30 mM和 - 170 mV,且与培养基中Na+浓度无关保持恒定。因此,游动速度随Na+跨细胞膜的化学势差而变化。当通过缬氨霉素和培养基中不同浓度的K+组合降低YN - 1细胞的膜电位时,细胞的游动速度线性下降,在约 - 90 mV时达到零。在该条件下,细胞内Na+浓度保持恒定。因此,膜电位也是游动速度的一个决定因素。此外,发现Na+的化学势和膜电位作为运动能量来源是等效的。因此,得出结论,(公式:见原文)是YN - 1细胞鞭毛马达的能量来源。运动性的(公式:见原文)阈值约为 - 100 mV。

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