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臭氧对小球藻膜通透性的影响:I. 铷示踪法测定钾离子的通透性。

Ozone alteration of membrane permeability in chlorella: I. Permeability of potassium ion as measured by rubidium tracer.

机构信息

Department of Botany and Plant Sciences, University of California, Riverside, California 92521.

出版信息

Plant Physiol. 1979 Sep;64(3):455-9. doi: 10.1104/pp.64.3.455.

Abstract

The addition of ozone to a suspension of Chlorella sorokiniana causes a rapid loss of K(+), as measured by efflux of (86)Rb from prelabeled cells. The efflux of the tracer is stimulated some 15 to 20 times over that of the control. For about 100 microliters per liter ozone, about 25 minutes (6 x 10(-8) moles O(3) delivered per minute) of exposure are required for a 50% depletion of the intracellular K(+). The stimulation of K(+) efflux is nearly linearly dependent upon the amount of ozone delivered into the solution. Following short pulses of ozone (lasting 1 to 5 minutes), efflux rates return to the control level but only after about 15 minutes.While influx of K(+) is ultimately inhibited by ozone, at low concentrations or for short exposure times the tracer influex is stimulated 100 to 200%. Ozone stimulation of an active pump mechanism is unlikely in view of a concomitant decrease in respiration. Thus, this influx may represent movement of K(+) along its electrochemical gradient. Assuming that influx and efflux are in steady-state according to the Goldman equation, it was calculated that the membrane potential for K(+) of -80 to -90 millivolts in control cells drops to -40 millivolts with ozone exposure and is accompanied by a calculated increased permeability to K(+) of 2- to 3-fold.

摘要

向鱼腥藻悬浮液中添加臭氧会导致钾(K+)迅速流失,这可以通过从预先标记的细胞中流出(86)Rb 来测量。示踪剂的流出量比对照刺激约 15 到 20 倍。对于每升约 100 微升臭氧,大约需要 25 分钟(每分钟输送 6 x 10(-8) 摩尔 O(3))才能使细胞内 K+消耗 50%。钾(K+)流出的刺激几乎与输送到溶液中的臭氧量呈线性相关。在短时间(持续 1 到 5 分钟)的臭氧脉冲后,流出率会恢复到对照水平,但需要大约 15 分钟。尽管臭氧最终会抑制 K+的流入,但在低浓度或短暴露时间下,示踪剂的流入会受到 100%到 200%的刺激。考虑到呼吸作用的同时下降,臭氧对主动泵机制的刺激不太可能。因此,这种流入可能代表 K+沿着其电化学梯度的运动。根据 Goldman 方程假设流入和流出处于稳态,计算得出控制细胞中 K+的膜电位从-80 到-90 毫伏下降到臭氧暴露时的-40 毫伏,同时计算出 K+的通透性增加了 2-3 倍。

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Arch Biochem Biophys. 1973 Aug;157(2):388-94. doi: 10.1016/0003-9861(73)90654-1.
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