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钝顶螺旋藻中的氯离子转运。

Chloride transport in Anacystis nidulans.

机构信息

Department of Botany, Imperial College, Prince Consort Road, SW 7 2 BB, London, UK.

出版信息

Planta. 1974 Jun;117(2):163-72. doi: 10.1007/BF00390798.

Abstract

Anacystis nidulans will take up and accumulate chloride ions. When the external concentration was 0.2 mM Cl(-) the level in the cells was 2.8 mM Cl(-) and under these conditions the flux across the cell surface was in the region of 10(-13)equiv Cl(-)·sec(-1)·cm(-2). It is suggested that this Cl(-) influx is active and operates against an electrochemical potential gradient estimated to be 117 mV or 2.68 kcal/mole. The uptake of (36)Cl was inhibited by low temperatures and there was a net loss of Cl(-) from the cells with the level decreasing towards the equilibrium value as estimated from K(+) distribution. Although the active influx of Cl(-) was often stimulated by light this was not always the case. Dark storage treatment and regulation of the chlorophyll a/phycocyanin ratios as well as total pigment content of the cells did not clarify the conditions which brought about light stimulation. Moreover, the metabolic inhibitors CCCP and CMU and also the use of anaerobic conditions did not clearly indicate the relationship between the influx mechanism and light-dark metabolism and no firm conclusions could be made about the nature of the energy source. The variation in the degree of light stimulation probably reflects the fact that in this procaryotic organism the photosynthetic and respiratory units are located on the same membrane systems and are in very close proximity to the probable site of the Cl(-) pump, the plasmalemma.

摘要

鱼腥藻能摄取和积累氯离子。当外界氯离子浓度为 0.2mM 时,细胞内氯离子浓度为 2.8mM,在此条件下,氯离子通过细胞膜的流量约为 10(-13)equiv Cl(-)·sec(-1)·cm(-2)。这表明这种氯离子内流是主动的,并且是在估计为 117mV 或 2.68kcal/mol 的电化学势梯度下运行的。(36)Cl 的摄取被低温抑制,氯离子从细胞中净流出,随着平衡值的接近,氯离子水平下降,如根据 K(+)分布估计的那样。尽管氯离子的主动内流通常受到光照的刺激,但并非总是如此。黑暗储存处理和调节细胞的叶绿素 a/藻蓝蛋白比以及总色素含量并没有阐明导致光照刺激的条件。此外,代谢抑制剂 CCCP 和 CMU 的使用以及厌氧条件也没有清楚地表明内流机制与光照-黑暗代谢之间的关系,也不能对能源的性质做出明确的结论。光照刺激程度的变化可能反映了这样一个事实,即在这个原核生物中,光合和呼吸单位位于同一膜系统上,并且与氯离子泵(质膜)的可能位置非常接近。

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