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蛋白质上的离散电荷载流子转移位点?超薄蛋白质膜的直流电导率研究。

Discrete charge carrier transfer sites on proteins? A D.C. conductivity study on ultrathin protein films.

作者信息

Karvaly B, Jankun J, Trivedi S, Mallik B, Kemeny G

出版信息

Biochem Biophys Res Commun. 1985 Dec 31;133(3):1152-9. doi: 10.1016/0006-291x(85)91257-4.

Abstract

D.C. electrical conduction in thin protein films (200 mg/cm2; approximately 2 mu in thickness) of bovine serum albumin and its dinitrophenylated derivatives with different stoichiometric composition was investigated at 17, 20 and 23% relative humidities and at room temperature. Statistically significant decrease in conductivity due to derivatization was observed even at protein-2,4-dinitrophenol stoichiometry as low as 1:2. A charge injection mechanism based upon discrete charge carrier transfer sites could account for the observations. Analogous events may operate in cellular signaling and coding.

摘要

研究了牛血清白蛋白及其具有不同化学计量组成的二硝基苯基化衍生物的薄蛋白膜(200 mg/cm²;厚度约为2μm)在17%、20%和23%相对湿度以及室温下的直流电传导。即使在蛋白质与2,4 -二硝基苯酚的化学计量低至1:2时,也观察到由于衍生化导致的电导率有统计学意义的下降。基于离散电荷载流子转移位点的电荷注入机制可以解释这些观察结果。类似的事件可能在细胞信号传导和编码中起作用。

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