This paper examines the influence of the Raf Kinase Inhibitor Protein (RKIP) on the Extracellular signal Regulated Kinase (ERK) signalling pathway [5] through modelling in a Markovian process algebra, PEPA [11]. Two models of the system are presented, a reagent-centric view and a pathway-centric view. The models capture functionality at the level of subpathway, rather than at a molecular level. Each model affords a different perspective of the pathway and analysis. We demonstrate the two models to be formally equivalent using the timing-aware bisimulation defined over PEPA models and discuss the biological significance
AbstractThis paper investigates Bio-PEPA, the stochastic process algebra for biological modelling de...
There are currently two working hypotheses as to how ERK is stimulated by EGF signalling. The first ...
Oncogenesis results from changes in kinetics or in abundance of proteins in signal transduction netw...
This paper examines the influence of the Raf Kinase Inhibitor Protein (RKIP) on the Extracellular si...
Modelling the influence of RKIP on the ERK signalling pathway using the stochastic process algebra P...
We describe a quantitative modelling and analysis approach for signal transduction networks. We illu...
The MAPK (mitogen-activated protein kinase) or its synonymous ERK (extracellular signal regulated ki...
The MAPK (mitogen-activated protein kinase) or its synonymous ERK (extracellular sig-nal regulated k...
The MAPK (mitogen-activated protein kinase) or its synonymous ERK (extracellular signal regulated ki...
In this work we present a Bio-PEPA model describing the Nuclear Factor $kappa$B (NF-$kappa$B) signal...
We describe a new modelling and analysis approach for signal transduction networks in the presence ...
Cell growth critically depends on signalling pathways whose regulation is the focus of intense resea...
The vast majority of biochemical systems involve the exchange of information between different compa...
The MAPK/ERK pathway is a major signal transduction system which regulates many fundamental cellular...
Abstract. In this work we present a Bio-PEPA model describing the Nuclear Factor κB (NF-κB) signalli...
AbstractThis paper investigates Bio-PEPA, the stochastic process algebra for biological modelling de...
There are currently two working hypotheses as to how ERK is stimulated by EGF signalling. The first ...
Oncogenesis results from changes in kinetics or in abundance of proteins in signal transduction netw...
This paper examines the influence of the Raf Kinase Inhibitor Protein (RKIP) on the Extracellular si...
Modelling the influence of RKIP on the ERK signalling pathway using the stochastic process algebra P...
We describe a quantitative modelling and analysis approach for signal transduction networks. We illu...
The MAPK (mitogen-activated protein kinase) or its synonymous ERK (extracellular signal regulated ki...
The MAPK (mitogen-activated protein kinase) or its synonymous ERK (extracellular sig-nal regulated k...
The MAPK (mitogen-activated protein kinase) or its synonymous ERK (extracellular signal regulated ki...
In this work we present a Bio-PEPA model describing the Nuclear Factor $kappa$B (NF-$kappa$B) signal...
We describe a new modelling and analysis approach for signal transduction networks in the presence ...
Cell growth critically depends on signalling pathways whose regulation is the focus of intense resea...
The vast majority of biochemical systems involve the exchange of information between different compa...
The MAPK/ERK pathway is a major signal transduction system which regulates many fundamental cellular...
Abstract. In this work we present a Bio-PEPA model describing the Nuclear Factor κB (NF-κB) signalli...
AbstractThis paper investigates Bio-PEPA, the stochastic process algebra for biological modelling de...
There are currently two working hypotheses as to how ERK is stimulated by EGF signalling. The first ...
Oncogenesis results from changes in kinetics or in abundance of proteins in signal transduction netw...