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Macromolecular bioactivity: is it resonant interaction between macromolecules?-theory and applications

机译:大分子生物活性:大分子之间是共振相互作用吗?-理论与应用

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Biological processes in any living organism are based on selective interactions between particular biomolecules. In most cases, these interactions involve and are driven by proteins which are the main conductors of any living process within the organism. The physical nature of these interactions is still not well known. The authors represent a whole new view to biomolecular interactions, in particular protein-protein and protein-DNA interactions, based on the assumption that these interactions are electromagnetic in their nature. This new approach is incorporated in the Resonant Recognition Model (RRM), which was developed over the last 10 years. It has been shown initially that certain periodicities within the distribution of energies of delocalized electrons along a protein molecule are critical for protein biological function, i.e., interaction with its target. If protein conductivity was introduced, then a charge moving through protein backbone can produce electromagnetic irradiation or absorption with spectral characteristics corresponding to energy distribution along the protein. The RRM enables these spectral characteristics, which were found to be in the range of infrared and visible light, to be calculated. These theoretically calculated spectra were proved using experimentally obtained frequency characteristics of some light-induced biological processes. Furthermore, completely new peptides with desired spectral characteristics, and consequently corresponding biological activities, were designed.
机译:任何活生物体中的生物过程都基于特定生物分子之间的选择性相互作用。在大多数情况下,这些相互作用涉及蛋白质并由蛋白质驱动,蛋白质是生物体内任何生命过程的主要导体。这些相互作用的物理性质仍然未知。基于这些相互作用本质上是电磁的假设,作者代表了对生物分子相互作用的全新观点,特别是蛋白质-蛋白质和蛋白质-DNA相互作用。这种新方法已被纳入过去10年开发的共振识别模型(RRM)中。最初已经表明,沿着蛋白质分子的离域电子的能量分布内的某些周期性对于蛋白质生物学功能,即与其靶标的相互作用至关重要。如果引入了蛋白质电导率,则穿过蛋白质主链的电荷会产生电磁辐射或吸收,其光谱特征对应于沿着蛋白质的能量分布。 RRM可以计算发现在红外和可见光范围内的这些光谱特性。这些理论计算的光谱是使用实验获得的某些光诱导生物过程的频率特性证明的。此外,设计了具有所需光谱特征并因此具有相应生物学活性的全新肽。

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