In this paper, we employ a directed hypergraph model to investigate the extent to which environmental variability influences the set of available biochemical reactions within a living cell. Such an approach avoids the limitations of the usual complex network formalism by allowing for the multilateral relationships (i.e. connections involving more than two nodes) that naturally occur within many biological processes. More specifically, we extend the concept of network reciprocity to complex hyper-networks, thus enabling us to characterise a network in terms of the existence of mutual hyper-connections, which may be considered a proxy for metabolic network complexity. To demonstrate these ideas, we study 115 metabolic hyper-networks of bacter...
Metabolism is characterised by chemical reactions linked to each other, creating a complex network s...
BackgroundEvolution of metabolism occurs through the acquisition and loss of genes whose products ac...
23International audienceThere has been a renewed interest for metabolism in the computational biolog...
In this paper, we employ a directed hypergraph model to investigate the extent to which environmenta...
Network science provides an invaluable set of tools and techniques for improving our understanding o...
Metabolic networks are probably among the most challenging and important biological networks. Their ...
Metabolic reaction data is commonly modelled using a complex network approach, whereby nodes represe...
At the systems level many organisms of interest may be described by their patterns of interaction, a...
Copyright: © 2005 Pfeiffer et al. This is an open-access article distributed under the terms of the ...
Many of the chemical reactions that take place within a living cell are irreversible. Due to evoluti...
Processes in living cells are the result of interactions between biochemical compounds in highly com...
Progress in the reconstruction of genome-wide metabolic maps has led to the development of network-...
Abstract. Many of the chemical reactions that take place within a living cell are irreversible. Due ...
Microbial organisms are responsible for most of the metabolic innovations on Earth. Understanding m...
Metabolic networks are naturally represented as directed hypergraphs in such a way that metabolites ...
Metabolism is characterised by chemical reactions linked to each other, creating a complex network s...
BackgroundEvolution of metabolism occurs through the acquisition and loss of genes whose products ac...
23International audienceThere has been a renewed interest for metabolism in the computational biolog...
In this paper, we employ a directed hypergraph model to investigate the extent to which environmenta...
Network science provides an invaluable set of tools and techniques for improving our understanding o...
Metabolic networks are probably among the most challenging and important biological networks. Their ...
Metabolic reaction data is commonly modelled using a complex network approach, whereby nodes represe...
At the systems level many organisms of interest may be described by their patterns of interaction, a...
Copyright: © 2005 Pfeiffer et al. This is an open-access article distributed under the terms of the ...
Many of the chemical reactions that take place within a living cell are irreversible. Due to evoluti...
Processes in living cells are the result of interactions between biochemical compounds in highly com...
Progress in the reconstruction of genome-wide metabolic maps has led to the development of network-...
Abstract. Many of the chemical reactions that take place within a living cell are irreversible. Due ...
Microbial organisms are responsible for most of the metabolic innovations on Earth. Understanding m...
Metabolic networks are naturally represented as directed hypergraphs in such a way that metabolites ...
Metabolism is characterised by chemical reactions linked to each other, creating a complex network s...
BackgroundEvolution of metabolism occurs through the acquisition and loss of genes whose products ac...
23International audienceThere has been a renewed interest for metabolism in the computational biolog...