首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >The electrochemically induced conformational transition of disulfides in bovine serum albumin studied by thin layer circular dichroism spectroelectrochemistry.
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The electrochemically induced conformational transition of disulfides in bovine serum albumin studied by thin layer circular dichroism spectroelectrochemistry.

机译:薄层圆二色性光谱电化学研究了牛血清白蛋白中二硫化物的电化学诱导构象过渡。

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摘要

The conformational transition of disulfides in bovine serum albumin (BSA) induced by electrochemical redox reaction of disulfides were monitored by in-situ circular dichroism (CD) spectroelectrochemistry, with a long optical path thin layer cell and analyzed by a singular value decomposition least square (SVDLS) method. Electrochemical reduction of disulfides drives the left-handed conformation of disulfides changed into the right-handed. At open circuit, eight of the 17 disulfides were of left-handed conformation. Four of the 17 disulfides took part in the electrochemical reduction with an EC mechanism. Only one-fourth of the reduced disulfides returned to left-handed conformation in the re-oxidation process. Some parameters of the electrochemical reduction process, i.e. the number of electrons transferred and electron transfer coefficient, n = 8, alpha n = 0.15, apparent formal potential, E1(0') = -0.65(+/-0.01) V, standard heterogeneous electron transfer rate constant, k1(0) = (2.84 +/- 0.14) x 10(-5) cm s(-1) and chemical reaction equilibrium constant, Kc = (5.13 +/- 0.12) x 10(-2), were also obtained by double logarithmic analysis based on the near-UV absorption spectra with applied potentials.
机译:通过原位圆二色性(CD)光谱电化学监测具有二硫键的电化学氧化还原反应的二硫化物在牛血清白蛋白(BSA)中的构象转变,采用长光程薄层电池,并通过奇异值分解最小二乘( SVDLS)方法。二硫化物的电化学还原将二硫化物的左手构象转变为右手。在开路时,17种二硫化物中的8种为左旋构型。 17种二硫化物中的4种通过EC机理参与了电化学还原。在再氧化过程中,只有四分之一的还原二硫化物返回到左手构型。电化学还原过程的一些参数,即转移的电子数和电子转移系数,n = 8,αn = 0.15,表观形式电势,E1(0')= -0.65(+/- 0.01)V,标准非均质电子传递速率常数k1(0)=(2.84 +/- 0.14)x 10(-5)cm s(-1)和化学反应平衡常数Kc =(5.13 +/- 0.12)x 10(-2)也通过基于具有施加电势的近紫外吸收光谱的双对数分析获得。

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