Petrovszki Pál, Sebők-Nagy Krisztina, Páli Tibor
Institute of Biophysics, Biological Research Centre, Eötvös Loránd Research Network, Szeged, Hungary.
Front Mol Biosci. 2021 Nov 3;8:772167. doi: 10.3389/fmolb.2021.772167. eCollection 2021.
The effect of an oscillating electric field generated from music on yeast vacuolar proton-ATPase (V-ATPase) activity in its native environment is reported. An oscillating electric field is generated by electrodes that are immersed into a dispersion of yeast vacuolar membrane vesicles natively hosting a high concentration of active V-ATPase. The substantial difference in the ATP hydrolysing activity of V-ATPase under the most stimulating and inhibiting music is unprecedented. Since the topic, i.e., an effect of music on biomolecules, is very attractive for non-scientific, esoteric mystification, we provide a rational explanation for the observed new phenomenon. Good correlation is found between changes in the specific activity of the enzyme and the combined intensity of certain frequency bands of the Fourier spectra of the music clips. Most prominent identified frequencies are harmonically related to each other and to the estimated rotation rate of the enzyme. These results lead to the conclusion that the oscillating electric field interferes with periodic trans-membrane charge motions in the working enzyme.
报道了音乐产生的振荡电场对天然环境中酵母液泡质子 - ATP酶(V - ATP酶)活性的影响。振荡电场由浸入天然含有高浓度活性V - ATP酶的酵母液泡膜囊泡分散液中的电极产生。在最具刺激和抑制作用的音乐下,V - ATP酶的ATP水解活性存在显著差异,这是前所未有的。由于音乐对生物分子的影响这一主题对非科学的、深奥的神秘主义极具吸引力,我们对观察到的新现象提供了合理的解释。发现酶的比活性变化与音乐片段傅里叶光谱特定频段的组合强度之间具有良好的相关性。最突出的识别频率彼此之间以及与酶的估计旋转速率呈谐波关系。这些结果得出结论,振荡电场干扰了工作酶中周期性的跨膜电荷运动。