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  4. Evolutionary and Topological Properties of Genes and Community Structures in Human Gene Regulatory Networks
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Evolutionary and Topological Properties of Genes and Community Structures in Human Gene Regulatory Networks

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Description

The diverse, specialized genes present in today’s lifeforms evolved from a common core of ancient, elementary genes. However, these genes did not evolve individually: gene expression is controlled by a complex network of interactions, and alterations in one gene may drive reciprocal changes in its proteins’ binding partners. Like many complex networks, these gene regulatory networks (GRNs) are composed of communities, or clusters of genes with relatively high connectivity. A deep understanding of the relationship between the evolutionary history of single genes and the topological properties of the underlying GRN is integral to evolutionary genetics. Here, we show that the topological properties of an acute myeloid leukemia GRN and a general human GRN are strongly coupled with its genes’ evolutionary properties. Slowly evolving (“cold”), old genes tend to interact with each other, as do rapidly evolving (“hot”), young genes. This naturally causes genes to segregate into community structures with relatively homogeneous evolutionary histories. We argue that gene duplication placed old, cold genes and communities at the center of the networks, and young, hot genes and communities at the periphery. We demonstrate this with single-node centrality measures and two new measures of efficiency, the set efficiency and the interset efficiency. We conclude that these methods for studying the relationships between a GRN’s community structures and its genes’ evolutionary properties provide new perspectives for understanding evolutionary genetics.

Date Created
2016-06-30
Contributors
  • Szedlak, Anthony (Author)
  • Smith, Nicholas (Author)
  • Liu, Li (Author)
  • Paternostro, Giovanni (Author)
  • Piermarocchi, Carlo (Author)
  • College of Health Solutions (Contributor)
Resource Type
Text
Extent
16 pages
Language
eng
Copyright Statement
In Copyright
Reuse Permissions
Attribution
Primary Member of
ASU Scholarship Showcase
Identifier
Digital object identifier: 10.1371/journal.pcbi.1005009
Identifier Type
International standard serial number
Identifier Value
1553-734X
Identifier Type
International standard serial number
Identifier Value
1553-7358
Peer-reviewed
No
Open Access
No
Series
PLOS COMPUTATIONAL BIOLOGY
Handle
https://hdl.handle.net/2286/R.I.43689
Preferred Citation

Szedlak, A., Smith, N., Liu, L., Paternostro, G., & Piermarocchi, C. (2016). Evolutionary and Topological Properties of Genes and Community Structures in Human Gene Regulatory Networks. PLOS Computational Biology, 12(6). doi:10.1371/journal.pcbi.1005009

Level of coding
minimal
Cataloging Standards
asu1
Note
The article is published at http://journals.plos.org/ploscompbiol/article?id=10.1371/journal.pcbi.1005009, opens in a new window
System Created
  • 2017-05-19 11:48:57
System Modified
  • 2021-11-01 12:48:07
  •     
  • 1 year 4 months ago
Additional Formats
  • OAI Dublin Core
  • MODS XML

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