Biological systems are known to be both robust and evolvable to internal and external perturbations, but what causes these apparently contradictory properties? We used Boolean network modeling and attractor landscape analysis to investigate the evolvability and robustness of the human signaling network. Our results show that the human signaling network can be divided into an evolvable core where perturbations change the attractor landscape in state space, and a robust neighbor where perturbations have no effect on the attractor landscape. Using chemical inhibition and overexpression of nodes, we validated that perturbations affect the evolvable core more strongly than the robust neighbor. We also found that the evolvable core has a distinct network structure, which is enriched in feedback loops, and features a higher degree of scale-freeness and longer path lengths connecting the nodes. In addition, the genes with high evolvability scores are associated with evolvability-related properties such as rapid evolvability, low species broadness, and immunity whereas the genes with high robustness scores are associated with robustness-related properties such as slow evolvability, high species broadness, and oncogenes. Intriguingly, US Food and Drug Administration-approved drug targets have high evolvability scores whereas experimental drug targets have high robustness scores.
Robustness and evolvability of the human signaling network.
人类信号网络的稳健性和可进化性
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作者:Kim Junil, Vandamme Drieke, Kim Jeong-Rae, Munoz Amaya Garcia, Kolch Walter, Cho Kwang-Hyun
| 期刊: | PLoS Computational Biology | 影响因子: | 3.600 |
| 时间: | 2014 | 起止号: | 2014 Jul 31; 10(7):e1003763 |
| doi: | 10.1371/journal.pcbi.1003763 | 种属: | Human |
| 研究方向: | 信号转导 | ||
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