AbstractWe study the origin of robustness of yeast cell cycle cellular network through uncovering its underlying energy landscape. This is realized from the information of the steady-state probabilities by solving a discrete set of kinetic master equations for the network. We discovered that the potential landscape of yeast cell cycle network is funneled toward the global minimum, G1 state. The ratio of the energy gap between G1 and average versus roughness of the landscape termed as robustness ratio (RR) becomes a quantitative measure of the robustness and stability for the network. The funneled landscape is quite robust against random perturbations from the inherent wiring or connections of the network. There exists a global phase transit...
We uncovered the underlying energy landscape of the mitogen-activated protein kinases signal transdu...
Finding a multidimensional potential landscape is the key for addressing important global issues, su...
We develop a general method to explore how the function performed by a biological network can constr...
AbstractWe study the origin of robustness of yeast cell cycle cellular network through uncovering it...
We uncovered the underlying energy landscape for a cellular network. We discovered that the energy l...
Studying the cell cycle process is crucial for understanding cell growth, proliferation, development...
Using fission yeast cell cycle as an example, we uncovered that the non-equilibrium network dynamics...
We uncover the underlying potential energy landscape for a cellular network. We find that the potent...
In this dissertation, we study the control network that governs the cell division cycle of budding y...
<p>(A) When nutrient availability is poor, the system has a global stable state shown as G1, and res...
<p>(A) on the <i>x</i>-<i>y</i> plane with <i>z</i> = 0 and (B) on the <i>y</i>-<i>z</i> plane with ...
AbstractYeast cell cycle Boolean network was used as a case study of robustness to protein noise. Ro...
Biological functions in living cells are controlled by protein interaction and genetic networks. The...
Metabolic networks have gained broad attention in recent years as a result of their important roles ...
A common gene regulatory network model is the threshold Boolean network, used for example to model t...
We uncovered the underlying energy landscape of the mitogen-activated protein kinases signal transdu...
Finding a multidimensional potential landscape is the key for addressing important global issues, su...
We develop a general method to explore how the function performed by a biological network can constr...
AbstractWe study the origin of robustness of yeast cell cycle cellular network through uncovering it...
We uncovered the underlying energy landscape for a cellular network. We discovered that the energy l...
Studying the cell cycle process is crucial for understanding cell growth, proliferation, development...
Using fission yeast cell cycle as an example, we uncovered that the non-equilibrium network dynamics...
We uncover the underlying potential energy landscape for a cellular network. We find that the potent...
In this dissertation, we study the control network that governs the cell division cycle of budding y...
<p>(A) When nutrient availability is poor, the system has a global stable state shown as G1, and res...
<p>(A) on the <i>x</i>-<i>y</i> plane with <i>z</i> = 0 and (B) on the <i>y</i>-<i>z</i> plane with ...
AbstractYeast cell cycle Boolean network was used as a case study of robustness to protein noise. Ro...
Biological functions in living cells are controlled by protein interaction and genetic networks. The...
Metabolic networks have gained broad attention in recent years as a result of their important roles ...
A common gene regulatory network model is the threshold Boolean network, used for example to model t...
We uncovered the underlying energy landscape of the mitogen-activated protein kinases signal transdu...
Finding a multidimensional potential landscape is the key for addressing important global issues, su...
We develop a general method to explore how the function performed by a biological network can constr...