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首页> 外文期刊>Биофизика >Effect of weak combined static and low-frequency variable magnetic fields on intrinsic fluorescence of some proteins in water solutions
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Effect of weak combined static and low-frequency variable magnetic fields on intrinsic fluorescence of some proteins in water solutions

机译:静态和低频可变弱联合磁场对水溶液中某些蛋白质固有荧光的影响

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摘要

It was shown that weak combined static (42 #mu#T) and low-frequency variable (40 nT; 3-5 Hz) magnetic fields change the intensity of intrinsic fluorescence of some proteins (cytochrome c, bovine serum albumin, horseradish peroxidase, alkaline phosphatase). The effect can be interpreted as a change in the conformational state of the protein in water environment by the action of weak magnetic fields. The dynamics of the process, the concentration dependence, the binding of proteins to the fluorescence probe 1,8-ANS after treatment with magnetic fields, the frequency dependence of these reactions, and the dependence of the effect on the presence of the static constituent of the magnetic field were studied. It was shown that the changes in the intrinsic fluorescence of some enzymes (horseradish peroxidase, alkaline phosphatase) are related to changes in their functional activity. It was found that the effect is partially transferred via a solvent (water, 0.01 M NaCl) preliminarily treated with magnetic field. In the solvent, changes in its intrinsic fluorescence by the action of weak magnetic fields were also registered.
机译:结果表明,弱的组合静态磁场(42#mu#T)和低频变量(40 nT; 3-5 Hz)磁场会改变某些蛋白质(细胞色素c,牛血清白蛋白,辣根过氧化物酶,碱性磷酸酶)。该作用可以解释为通过弱磁场作用在水环境中蛋白质构象状态的变化。该过程的动力学,浓度依赖性,磁场处理后蛋白质与荧光探针1,8-ANS的结合,这些反应的频率依赖性以及对存在的静态成分的影响的依赖性研究了磁场。结果表明,某些酶(辣根过氧化物酶,碱性磷酸酶)固有荧光的变化与其功能活性的变化有关。已经发现,该效果通过经磁场初步处理的溶剂(水,0.01 M NaCl)部分转移。在溶剂中,由于弱磁场的作用,其固有荧光也发生了变化。

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