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Cooperative assembly systems

Danos, V. and Koeppl, H. and Wilson-Kanamori, J. (2011):
Cooperative assembly systems.
In: DNA Computing and Molecular Programming, pp. 1-21, [Online-Edition: http://link.springer.com/chapter/10.1007/978-3-642-23638-9_1],
[Article]

Abstract

Several molecular systems form large-scale objects. One would like to understand their assembly and how this assembly is regulated. As a first step, we investigate the phase transition structure of a class of sim- ple cooperative assembly systems.We characterize which of these systems have a (probabilistic) equilibrium and find an explicit form for their lo- cal energy (§2).We obtain, under additional limitations on cooperativity, the average dynamics of some partial observables (§4). Combining both steps, we obtain conditions for the appearance of a large cluster (§5).

Item Type: Article
Erschienen: 2011
Creators: Danos, V. and Koeppl, H. and Wilson-Kanamori, J.
Title: Cooperative assembly systems
Language: English
Abstract:

Several molecular systems form large-scale objects. One would like to understand their assembly and how this assembly is regulated. As a first step, we investigate the phase transition structure of a class of sim- ple cooperative assembly systems.We characterize which of these systems have a (probabilistic) equilibrium and find an explicit form for their lo- cal energy (§2).We obtain, under additional limitations on cooperativity, the average dynamics of some partial observables (§4). Combining both steps, we obtain conditions for the appearance of a large cluster (§5).

Journal or Publication Title: DNA Computing and Molecular Programming
Divisions: 18 Department of Electrical Engineering and Information Technology > Institute for Telecommunications > Bioinspired Communication Systems
18 Department of Electrical Engineering and Information Technology
18 Department of Electrical Engineering and Information Technology > Institute for Telecommunications
Date Deposited: 04 Apr 2014 14:15
Official URL: http://link.springer.com/chapter/10.1007/978-3-642-23638-9_1
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