首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >SALT AND PH EFFECTS ON ELECTROCHEMISTRY OF MYOGLOBIN IN THICK FILMS OF A BILAYER-FORMING SURFACTANT
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SALT AND PH EFFECTS ON ELECTROCHEMISTRY OF MYOGLOBIN IN THICK FILMS OF A BILAYER-FORMING SURFACTANT

机译:盐和PH对成膜表面活性剂厚膜中肌红蛋白电化学的影响

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Salt concentration and pH of external solutions were shown to control the electrochemistry of the heme protein myoglobin (MbFe(III)-H2O) in stable, ordered films of didodecyldimethylammonium bromide (DDAB). Protonation of (a)quometmyoglobin (MbFe(III)-H2O) in these films precedes electron transfer from electrodes, causing formal potentials to shift negative as pH increases from 5 to 8. At pH > 8, MbFe(III)-H2O dissociates to MbFe(III)-OH, which is reduced directly at the electrode at higher rates than MbFe(III)-H2O. Correlations of voltammetric data with FT-IR spectra suggested that at pH < 4.6, an unfolded form of Mb resides in the films and is reduced directly. The concentration of salt in solution influences electrochemical properties of Mb-DDAB films by its influence on Mb conformation and by effects on interfacial Donnan potentials. NMR indicated strong binding of anions to Mb within DDAB films. Bound anions may neutralize positive charge on Mb's surface so that it can reside in a partly hydrophobic environment, as postulated on the basis of previous ESR and linear dichroism studies. (C) 1997 Elsevier Science B.V. [References: 58]
机译:结果表明,在稳定的有序十二烷基二甲基溴化铵(DDAB)膜中,盐浓度和外部溶液的pH值可控制血红素蛋白肌红蛋白(MbFe(III)-H2O)的电化学。这些膜中的(a)季肌红蛋白(MbFe(III)-H2O)的质子化作用是在电子从电极转移之前发生的,随着pH从5增至8,形式电位向负迁移。在pH大于8时,MbFe(III)-H2O分解为MbFe(III)-OH,在电极上以比MbFe(III)-H2O更高的速率直接还原。伏安数据与FT-IR光谱的相关性表明,在pH <4.​​6时,未折叠形式的Mb存在于膜中,并直接还原。溶液中盐的浓度通过其对Mb构象的影响以及对界面Donnan电势的影响,影响Mb-DDAB膜的电化学性能。 NMR表明在DDAB膜中阴离子与Mb的强结合。结合阴离子可能会中和Mb表面的正电荷,以便它可以存在于部分疏水的环境中,这是根据先前的ESR和线性二色性研究推测的。 (C)1997 Elsevier Science B.V. [参考:58]

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