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Informatics and Physics Models of Recognitions of DNA Replication and Their Biological Applications | Science Publications

机译:DNA复制识别的信息学和物理学模型及其生物学应用科学出版物

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> We initially propose concepts of Informative Intensity, Informative Response Intensity and Informative Flux, with different expressions. In a special expression of electrostatics, we describe Informative Intensity, Informative Response Intensity and Informative Flux in terms of electric field intensity, electric field force and electric field flux respectively. In a special expression of quantum mechanics, we originally propose a concept of Probability Flux. Then we present Informative Intensity in terms of a wave function of Schrödinger equation and Informative Response Intensity in terms of an interactive force between or among objects, Informative Flux in terms of a probability flux. Based on these concepts, we develop our Informatics and physics models of recognitions between a DNA polymerase and an initiation site and of pairing deoxyribonucleotides, for a natural DNA replication, beyond lengths of chemical bounds and half quantitatively explain a probability of the wrong paring. We originally hypothesize the information is, stored in structured charges or masses, transmitted with Informative Intensity in a media and recognized with an Informative Response Intensity by other structured charges or masses. We further generalize, Informative Intensity as multiple layers of fields, potentials or waves, Informative Response Intensity as multiple layers of forces and Informative Flux as an integration of Informative Intensity. We also initially define Transverse Information: Informative Intensity is perpendicular to the direction of information propagation, e.g. electromagnetic wave or magnetic field; and Longitudinal Information: Informative Intensity is parallel or antiparalell to the direction of information propagation, e.g. electric field or gravitational field.
机译: >我们最初提出了信息强度,信息响应强度和信息通量的概念,它们具有不同的表达方式。在静电的一种特殊表达中,我们分别用电场强度,电场力和电场通量来描述信息强度,信息响应强度和信息通量。在量子力学的一种特殊表达中,我们最初提出了概率通量的概念。然后,我们根据Schrödinger方程的波动函数表示信息强度,根据对象之间或物体之间的相互作用力表示信息响应强度,根据概率通量表示信息通量。基于这些概念,我们开发了信息学和物理学模型,用于识别DNA聚合酶与起始位点之间的识别以及成对的脱氧核糖核苷酸,以实现天然DNA复制,超出了化学界限的长度,一半定量地解释了错误配对的可能性。我们最初假设信息以结构化电荷或质量存储,以信息强度在媒体中传输,并被其他结构化电荷或质量以信息响应强度识别。我们进一步将信息强度概括为多层的场,势或波,将信息响应强度概括为多层的力,将信息通量作为信息强度的综合。我们最初还定义了横向信息:信息强度垂直于信息传播的方向,例如电磁波或磁场;和纵向信息:信息强度与信息传播的方向平行或反平行。电场或引力场。

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