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从DNA到蛋白质信息传递的量子力学模型。

Quantum mechanical model for information transfer from DNA to protein.

作者信息

Karafyllidis Ioannis G

机构信息

Department of Electrical and Computer Engineering, Democritus University of Thrace, 67100 Xanthi, Greece.

出版信息

Biosystems. 2008 Sep;93(3):191-8. doi: 10.1016/j.biosystems.2008.04.002. Epub 2008 Apr 20.

Abstract

A model for the information transfer from DNA to protein using quantum information and computation techniques is presented. DNA is modeled as the sender and proteins are modeled as the receiver of this information. On the DNA side, a 64-dimensional Hilbert space is used to describe the information stored in DNA triplets (codons). A Hamiltonian matrix is constructed for this space, using the 64 possible codons as base states. The eigenvalues of this matrix are not degenerate. The genetic code is degenerate and proteins comprise only 20 different amino acids. Since information is conserved, the information on the protein side is also described by a 64-dimensional Hilbert space, but the eigenvalues of the corresponding Hamiltonian matrix are degenerate. Each amino acid is described by a Hilbert subspace. This change in Hilbert space structure reflects the nature of the processes involved in information transfer from DNA to protein.

摘要

提出了一种利用量子信息和计算技术从DNA到蛋白质进行信息传递的模型。DNA被建模为信息发送者,蛋白质被建模为该信息的接收者。在DNA方面,使用一个64维的希尔伯特空间来描述存储在DNA三联体(密码子)中的信息。利用64种可能的密码子作为基态,为这个空间构建了一个哈密顿矩阵。该矩阵的本征值是非简并的。遗传密码是简并的,蛋白质仅由20种不同的氨基酸组成。由于信息是守恒的,蛋白质方面的信息也由一个64维的希尔伯特空间描述,但相应哈密顿矩阵的本征值是简并的。每个氨基酸由一个希尔伯特子空间描述。希尔伯特空间结构的这种变化反映了从DNA到蛋白质信息传递过程的本质。

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