Title of article
Simulating the evolution of signal transduction pathways
Author/Authors
Soyer، نويسنده , , Orkun S. and Pfeiffer، نويسنده , , Thomas and Bonhoeffer، نويسنده , , Sebastian، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2006
Pages
10
From page
223
To page
232
Abstract
We use a generic model of a network of proteins that can activate or deactivate each other to explore the emergence and evolution of signal transduction networks and to gain a basic understanding of their general properties. Starting with a set of non-interacting proteins, we evolve a signal transduction network by random mutation and selection to fulfill a complex biological task. In order to validate this approach we base selection on a fitness function that captures the essential features of chemotactic behavior as seen in bacteria. We find that a system of as few as three proteins can evolve into a network mediating chemotaxis-like behavior by acting as a “derivative sensor”. Furthermore, we find that the dynamics and topology of such networks show many similarities to the natural chemotaxis pathway, that the response magnitude can increase with increasing network size and that network behavior shows robustness towards variations in some of the internal parameters. We conclude that simulating the evolution of signal transduction networks to mediate a certain behavior may be a promising approach for understanding the general properties of the natural pathway for that behavior.
Keywords
Evolution , chemotaxis , Signal transduction networks , network modeling , computational simulation
Journal title
Journal of Theoretical Biology
Serial Year
2006
Journal title
Journal of Theoretical Biology
Record number
1537771
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