硼酸苯汞对大肠杆菌的作用方式研究。1 .结构定位和掺入动力学。

M Cortat
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摘要

硼酸苯汞(PHB)非常迅速地结合到大肠杆菌的细胞中,并直接结合到其固定位点上。PHB的快速结合可能是由于[苯汞]+阳离子的亲脂性。如果与蛋白质的分布相比,PHB在细胞中的分布是相当均匀的。这表明PHB对蛋白质的特异性较低,所有这些蛋白质似乎都是潜在的固定位点。但从结构上看,PHB的分布差异较大。大肠杆菌的细胞壁和可溶性细胞质部分不是固定的重要部位。相反,细胞质膜似乎是一个优先的固定位置。此外,PHB在体内的分布很可能更可能在细胞质膜上,因为细胞的均质化过程溶解了大部分与膜相关的蛋白质。在细胞膜上,PHB的一个重要部分似乎与核糖体,特别是核糖体蛋白有关。
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Studies on the mode of action of phenylmercuric borate on Escherichia coli. I. Structural localization and kinetics of incorporation.

Phenylmercuric borate (PHB) is very rapidly incorporated into the cells of Escherichia coli, and binds directly to its sites of fixation. The rapid incorporation of PHB probably results from the lipophilic character of the [phenylmercuric]+ cation. The distribution of PHB in the cell is fairly uniform if one compares with that of the proteins. This shows the low specificity of PHB with regard to proteins, all of which appear to be potential sites for fixation. However, from the structural point of view, PHB is more differentiated in its distribution. The cell wall of E. coli and the soluble cytoplasmic fraction do not constitute important sites of fixation. On the contrary, the cytoplasmic membrane appears to be a preferential site of fixation. Moreover, it is very probable that the distribution of PHB in vivo should be even more likely at the cytoplasmic membrane since the process of homogenization of the cells solubilizes a large part of the proteins associated to the membrane. On the membrane, an important part of PHB seems to be associated with the ribosomes and particularly to the ribosomal proteins.

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[Inactivation of viruses in water by anodic oxidation (author's transl)]. [Imported diseases, the epidemiological challenge of communicable diseases (author's transl)]. Studies on the mode of action of phenylmercuric borate on Escherichia coli. I. Structural localization and kinetics of incorporation. Studies on the mode of action of phenylmercuric borate on Escherichia coli. II. Biochemical localization and inhibition of some metabolic activities. [Analysis of the biological effect of city smog extract. II. Effect of a city smog extract on cell growth and DNA synthesis of hamster kidney cells in vitro (author's transl)].
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