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Molecular recognition explored by a statistical-mechanics theory of liquids.

机译:通过液体的统计力学理论探索分子识别。

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"Molecular recognition" is one of the most important molecular processes for living systems in order to maintain their life, since most of the biological functions are initiated with the process. Understanding of the process is also important for designing a new drug. Firstly, it is important to find a target of a drug, which is in many cases a function of protein or DNA to be inhibited. Secondly, binding a drug molecule to the active site of a biomolecule itself is a molecular recognition process studies on the molecular recognition process, carried out by means of the 3D-RISM theory, a statistical mechanics theory of liquids. Studies on the conduction mechanisms in two types of molecular channels, aquaporin and the M2 channels, are reviewed.
机译:为了维持生命,“分子识别”是生命系统最重要的分子过程之一,因为大多数生物学功能都是通过该过程而引发的。对过程的理解对于设计新药也很重要。首先,重要的是找到一种药物的靶标,该靶标在许多情况下是要抑制的蛋白质或DNA的功能。其次,将药物分子结合到生物分子本身的活性位点上是通过3D-RISM理论(一种液体的统计力学理论)对分子识别过程进行的分子识别过程研究。审查了两种类型的分子通道,水通道蛋白和M2通道的传导机制的研究。

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