Summary: We present a method for automatically discovering signaling pathways from time-resolved phosphoproteomic data. The Temporal Pathway Synthesizer (TPS) algorithm uses constraint-solving techniques first developed in the context of formal verification to explore paths in an interaction network. It systematically eliminates all candidate structures for a signaling pathway where a protein is activated or inactivated before its upstream regulators. The algorithm can model more than one hundred thousand dynamic phosphosites and can discover pathway members that are not differentially phosphorylated. By analyzing temporal data, TPS defines signaling cascades without needing to experimentally perturb individual proteins. It recovers known p...
Advances in mass spectrometry among other technologies have allowed for quantitative, reproducible, ...
In response to stimuli, biological processes are tightly controlled by dynamic cellular signaling me...
International audienceUnderstanding how cellular signalling is flowing from the molecular to the cel...
Abstract Background Phosphorylation is a ubiquitous and fundamental regulatory mechanism that contro...
Signal transduction systems coordinate complex cellular information to regulate biological events su...
My research has focused on network discovery from phosphoproteomics and kinetics data. My work conta...
Traditional canonical signaling pathways help to understand overall signaling processes inside the c...
Reversible protein phosphorylation is involved in the regulation of most, if not all, major cellular...
Protein phosphorylation modulates many biological processes. However, the characterization of the co...
Reversible phosphorylation is one of the major mechanisms of signal transduction, and signaling netw...
<div><p>Reversible phosphorylation is one of the major mechanisms of signal transduction, and signal...
Thesis (Ph.D.)--University of Washington, 2016-05Signal transduction is the process by which cells c...
Abstract Background Signal transduction is one of the most important biological processes by which c...
This thesis describes the application of proteomics technologies to get insight into several aspects...
In response to stimuli, biological processes are tightly controlled by dynamic cellular signaling me...
Advances in mass spectrometry among other technologies have allowed for quantitative, reproducible, ...
In response to stimuli, biological processes are tightly controlled by dynamic cellular signaling me...
International audienceUnderstanding how cellular signalling is flowing from the molecular to the cel...
Abstract Background Phosphorylation is a ubiquitous and fundamental regulatory mechanism that contro...
Signal transduction systems coordinate complex cellular information to regulate biological events su...
My research has focused on network discovery from phosphoproteomics and kinetics data. My work conta...
Traditional canonical signaling pathways help to understand overall signaling processes inside the c...
Reversible protein phosphorylation is involved in the regulation of most, if not all, major cellular...
Protein phosphorylation modulates many biological processes. However, the characterization of the co...
Reversible phosphorylation is one of the major mechanisms of signal transduction, and signaling netw...
<div><p>Reversible phosphorylation is one of the major mechanisms of signal transduction, and signal...
Thesis (Ph.D.)--University of Washington, 2016-05Signal transduction is the process by which cells c...
Abstract Background Signal transduction is one of the most important biological processes by which c...
This thesis describes the application of proteomics technologies to get insight into several aspects...
In response to stimuli, biological processes are tightly controlled by dynamic cellular signaling me...
Advances in mass spectrometry among other technologies have allowed for quantitative, reproducible, ...
In response to stimuli, biological processes are tightly controlled by dynamic cellular signaling me...
International audienceUnderstanding how cellular signalling is flowing from the molecular to the cel...