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表达大肠杆菌素K抑制作用所需的热量和代谢能量。

Requirement of heat and metabolic energy for the expression of inhibitory action of colicin K.

作者信息

Okamoto K

出版信息

Biochim Biophys Acta. 1975 May 6;389(2):370-9. doi: 10.1016/0005-2736(75)90329-6.

Abstract

Escherichia coli B, induced for beta-galactoside permease, can accumulate thio-methyl-beta-galactoside in the cell even at 0 degrees D. At this temperature, cells adsorb colicin K but the adsorbed colicin does not inhibit thiomethyl-beta-galactoside uptake. Inhibition by colicin K is, however, seen at 0 degrees C after exposure of the colicin K-cell complex to a high temperature: a greater degree of inhibition occurs with increasing temperature or duration or exposure. There is a transition point at around 21 degrees C in Arrhenius plots of this colicin K activation reaction. If inhibitors of energy yielding reactions are present during the heat treatment, the inhibitory action of colicin K (as measured by thiomethyl-beta-galactoside uptake after returning the colicin K-cell complex to 0 degrees C and removal of the inhibitors) is prevented. These results indicate that adsorbed colicin K is converted into the active state only in the presence of metabolic energy and that cell surface fluidity appears to be concerned in this process.

摘要

经诱导产生β-半乳糖苷通透酶的大肠杆菌B,即使在0℃时也能在细胞内积累硫代甲基-β-半乳糖苷。在此温度下,细胞吸附大肠菌素K,但吸附的大肠菌素并不抑制硫代甲基-β-半乳糖苷的摄取。然而,在将大肠菌素K-细胞复合物暴露于高温后,在0℃时可观察到大肠菌素K的抑制作用:随着温度升高或暴露时间延长,抑制程度会增加。在该大肠菌素K激活反应的阿累尼乌斯图中,约21℃处存在一个转变点。如果在热处理过程中存在能量产生反应的抑制剂,则大肠菌素K的抑制作用(通过将大肠菌素K-细胞复合物恢复到0℃并去除抑制剂后硫代甲基-β-半乳糖苷的摄取来衡量)会被阻止。这些结果表明,吸附的大肠菌素K仅在存在代谢能量的情况下才会转化为活性状态,并且细胞表面流动性似乎与该过程有关。

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