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pH对球形红杆菌WS8生长和运动性的影响以及鞭毛马达驱动力的性质。

The effect of pH on the growth and motility of Rhodobacter sphaeroides WS8 and the nature of the driving force of the flagellar motor.

作者信息

Packer H L, Harrison D M, Dixon R M, Armitage J P

机构信息

Department of Biochemistry, University of Oxford, UK.

出版信息

Biochim Biophys Acta. 1994 Nov 1;1188(1-2):101-7. doi: 10.1016/0005-2728(94)90027-2.

Abstract

Rhodobacter sphaeroides WS8 grew, and swam vigorously, over the pH range 6 to 9. Sustained motility was, however, observed in populations of cells resuspended at pH values between 4.9 and 10.4, although the mean run speed was reduced at the extremes of pH. The ability of R. sphaeroides to swim in strong alkaline conditions prompted the question of whether motility at alkaline pH was powered by a sodium motive force, as has been found in the facultative alkalophilic Bacillus and Vibrio species, particularly as motility was found to be sensitive to the sodium channel inhibitor amiloride. The nature of the driving force of the flagellar motor was therefore investigated. It was found that R. sphaeroides was motile over the same pH range in the absence and presence of sodium ions. The protonophore CCCP was found to inhibit motility under all conditions, whereas monensin, an inhibitor of sodium pumps, had no effect upon motility in the presence or absence of sodium. It was concluded that the delta p is the driving force for the flagellar motor in R. sphaeroides at all values of pH. Amiloride, a specific inhibitor of the sodium-driven flagellar motor in alkalophilic Bacillus and Vibrio was shown to act non-specifically on the proton driven motor of R. sphaeroides, reducing the swimming speed of this organism in media with and without sodium to the same extent and over the complete pH range. Measurement of the delta p by using the electrochromic absorbance change of the carotenoid pigments to measure delta psi and 31P-NMR to measure delta pH showed that the maximum delta p was about -215 mV. At pH 10 the cells swam more slowly and the delta p was about -90 mV. These data suggest that the flagellar motor of R. sphaeroides is proton-driven under all conditions with a threshold for motor rotation below -90 mV and saturation at above -90 mV and below -215 mV.

摘要

球形红杆菌WS8在pH值6至9的范围内生长并剧烈游动。然而,在pH值介于4.9和10.4之间重悬的细胞群体中观察到持续的运动性,尽管在pH值的极端情况下平均游动速度降低。球形红杆菌在强碱性条件下游泳的能力引发了一个问题,即碱性pH下的运动性是否由钠动力驱动,就像在兼性嗜碱芽孢杆菌和弧菌属物种中发现的那样,特别是因为发现运动性对钠通道抑制剂氨氯吡脒敏感。因此,对鞭毛马达驱动力的性质进行了研究。结果发现,无论有无钠离子,球形红杆菌在相同的pH范围内都具有运动性。发现质子载体CCCP在所有条件下均抑制运动性,而钠泵抑制剂莫能菌素在有无钠的情况下对运动性均无影响。得出的结论是,Δp是球形红杆菌在所有pH值下鞭毛马达的驱动力。氨氯吡脒是嗜碱芽孢杆菌和弧菌中钠驱动鞭毛马达的特异性抑制剂,已证明它对球形红杆菌的质子驱动马达具有非特异性作用,在有钠和无钠的培养基中,在整个pH范围内,均同等程度地降低该生物体的游动速度。通过使用类胡萝卜素色素的电致变色吸光度变化来测量Δψ以及使用31P-NMR来测量ΔpH对Δp进行测量,结果表明最大Δp约为-215 mV。在pH 10时,细胞游动较慢,Δp约为-90 mV。这些数据表明,球形红杆菌的鞭毛马达在所有条件下均由质子驱动,马达旋转的阈值低于-90 mV,在高于-90 mV且低于-215 mV时达到饱和。

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