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Published on: August 17, 2017
Artificial life simulation of self-assembly in bacteriophage by movable finite automata
Masatoshi Shirayama1, Makoto Koshino, Toyomasa Hatakeyama
1Department of Electronics and Information Engineering, Ishikawa National College of Technology, Ishikawa, Japan.
Abstract:
This paper presents a model which is based on biological research using the movable finite automata (MFA) on a self-assembly of T4 phage, and exhibits the results of artificial life simulation. In the previous work, Thompson and Goel [Artificial Life, Addison Weley, 1989, pp. 317-340; Biosystems 18 (1985) 23; J. Theor. Biol. 131 (1988) 351] presented the movable finite automata (MFA) which has a capability of moving on finite automata, and simulated on a computer. They were represented individual rectangular boxes, however, the results of simulation was different from real T4 phage. We propose the sphere model as a protein structure, and simulate the self-assembly of the entire structure of the T4 phage on a computer.
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