AbstractYeast cell cycle Boolean network was used as a case study of robustness to protein noise. Robustness was interpreted as involving stability of G1 steady state and sequence of gene expression from cell cycle START to stationary G1. A robustness measure to evaluate robustness strength of a network was proposed. Robust putative networks corresponding to the same steady state and sequence of gene expression of wild-type network were sampled. Architecture of wild-type yeast cell cycle network can be revealed by average topology profile of sampled robust putative networks
Texto completo arXiv:0902.4147v2We investigate the dynamical properties of the transcriptional regu...
Gene regulatory networks can be successfully modeled as Boolean networks. A much discussed hypothesi...
We develop a general method to explore how the function performed by a biological network can constr...
AbstractYeast cell cycle Boolean network was used as a case study of robustness to protein noise. Ro...
AbstractWe study the origin of robustness of yeast cell cycle cellular network through uncovering it...
A common gene regulatory network model is the threshold Boolean network, used for example to model t...
It has been suggested that irreducible sets of states in Probabilistic Boolean Networks correspond t...
networks of switches) are extremely simple mathematical models of biochemical signaling networks. Un...
We uncovered the underlying energy landscape for a cellular network. We discovered that the energy l...
Motivation: The ability of cells to complete mitosis with high fidelity relies on elaborate checkpoi...
BackgroundInteractions between genes and their products give rise to complex circuits known as gene ...
<p>(A) The network diagram and the regulatory logic template for the yeast cell-cycle oscillator. Si...
In this dissertation, we study the control network that governs the cell division cycle of budding y...
Abstract Background The desire to understand genomic functions and the behavior of complex gene regu...
<div><p>The topology of cellular circuits (the who-interacts-with-whom) is key to understand their r...
Texto completo arXiv:0902.4147v2We investigate the dynamical properties of the transcriptional regu...
Gene regulatory networks can be successfully modeled as Boolean networks. A much discussed hypothesi...
We develop a general method to explore how the function performed by a biological network can constr...
AbstractYeast cell cycle Boolean network was used as a case study of robustness to protein noise. Ro...
AbstractWe study the origin of robustness of yeast cell cycle cellular network through uncovering it...
A common gene regulatory network model is the threshold Boolean network, used for example to model t...
It has been suggested that irreducible sets of states in Probabilistic Boolean Networks correspond t...
networks of switches) are extremely simple mathematical models of biochemical signaling networks. Un...
We uncovered the underlying energy landscape for a cellular network. We discovered that the energy l...
Motivation: The ability of cells to complete mitosis with high fidelity relies on elaborate checkpoi...
BackgroundInteractions between genes and their products give rise to complex circuits known as gene ...
<p>(A) The network diagram and the regulatory logic template for the yeast cell-cycle oscillator. Si...
In this dissertation, we study the control network that governs the cell division cycle of budding y...
Abstract Background The desire to understand genomic functions and the behavior of complex gene regu...
<div><p>The topology of cellular circuits (the who-interacts-with-whom) is key to understand their r...
Texto completo arXiv:0902.4147v2We investigate the dynamical properties of the transcriptional regu...
Gene regulatory networks can be successfully modeled as Boolean networks. A much discussed hypothesi...
We develop a general method to explore how the function performed by a biological network can constr...