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High‐Betweenness Proteins in the Yeast Protein Interaction Network

BioMed Research International · 2005 · Vol. 2005(2) · pp. 96–103
M. P. JoyAmy BrockDonald E. IngberSui Huang

Abstract

Structural features found in biomolecular networks that are absent in random networks produced by simple algorithms can provide insight into the function and evolution of cell regulatory networks. Here we analyze "betweenness" of network nodes, a graph theoretical centrality measure, in the yeast protein interaction network. Proteins that have high betweenness, but low connectivity (degree), were found to be abundant in the yeast proteome. This finding is not explained by algorithms proposed to explain the scale-free property of protein interaction networks, where low-connectivity proteins also have low betweenness. These data suggest the existence of some modular organization of the network, and that the high-betweenness, low-connectivity proteins may act as important links between these modules. We found that proteins with high betweenness are more likely to be essential and that evolutionary age of proteins is positively correlated with betweenness. By comparing different models of genome evolution that generate scale-free networks, we show that rewiring of interactions via mutation is an important factor in the production of such proteins. The evolutionary and functional significance of these observations are discussed.

Bioinformatics and Genomic NetworksFungal and yeast genetics researchComplex Network Analysis TechniquesBetweenness centralityProteomeComputational biologyBiologyInteractomeInteraction networkComputer scienceScale-free networkComplex networkCentrality

Funding

  • National Institutes of Health
  • Air Force Office of Scientific Research
Citations
500
FWCI
4.92
field-weighted impact
References
47
Percentile
96%
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Citations per year
References
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Proceedings of the National Academy of Sciences · 2002 · 15,464 citations
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Collective dynamics of ‘small-world’ networks
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