English

Homologous Control of Protein Signaling Networks

Molecular Networks 2011-04-18 v1 Biological Physics Data Analysis, Statistics and Probability Medical Physics

Abstract

In a previous paper we introduced a method called augmented sparse reconstruction (ASR) that identifies links among nodes of ordinary differential equation networks, given a small set of observed trajectories with various initial conditions. The main purpose of that technique was to reconstruct intracellular protein signaling networks. In this paper we show that a recursive augmented sparse reconstruction generates artificial networks that are homologous to a large, reference network, in the sense that kinase inhibition of several reactions in the network alters the trajectories of a sizable number of proteins in comparable ways for reference and reconstructed networks. We show this result using a large in-silico model of the epidermal growth factor receptor (EGF-R) driven signaling cascade to generate the data used in the reconstruction algorithm. The most significant consequence of this observed homology is that a nearly optimal combinatorial dosage of kinase inhibitors can be inferred, for many nodes, from the reconstructed network, a result potentially useful for a variety of applications in personalized medicine.

Keywords

Cite

@article{arxiv.1012.5547,
  title  = {Homologous Control of Protein Signaling Networks},
  author = {Domenico Napoletani and Michele Signore and Timothy Sauer and Lance Liotta and Emanuel Petricoin},
  journal= {arXiv preprint arXiv:1012.5547},
  year   = {2011}
}

Comments

33 pages, 6 figures