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NEMo: An Evolutionary Model With Modularity for PPI Networks

delete2017-03-01
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PRE
AI
M
Min Ye
X
Xiuwei Zhang
G
Gabriela Clara Racz
Q
Qijia Jiang
B
Bernard M. E. Moret *
DOI:10.1109/TNB.2017.2656058delete
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摘要

摘要

En 中文
Modeling the evolution of biological networks is a major challenge. Biological networks are usually represented as graphs; evolutionary events not only include addition and removal of vertices and edges but also duplication of vertices and their associated edges. Since duplication is viewed as a primary driver of genomic evolution, recent work has focused on duplication-based models. Missing from these models is any embodiment of modularity, a widely accepted attribute of biological networks. Some models spontaneously generate modular structures, but none is known to maintain and evolve them. We describe network evolution with modularity (NEMo), a new model that embodies modularity. NEMo allows modules to appear and disappear and to fission and to merge, all driven by the underlying edge-level events using a duplication-based process. We also introduce measures to compare biological networks in terms of their modular structure; we present comparisons between NEMo and existing duplication-based models and run our measuring tools on both generated and published networks. Index indicates
Keyword:
Evolutionary event
evolutionary model
generative model
modularity
network topology
protein-protein (PPI) network
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IEEE Transactions on Nanobioscience
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1.4K
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University of California Berkeley
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Ecole Polytechnique Federale de Lausanne
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S
swiss federal institutes of technology domain
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University of California System
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