2017
DOI: 10.1371/journal.pcbi.1005456
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Interrogating the topological robustness of gene regulatory circuits by randomization

Abstract: One of the most important roles of cells is performing their cellular tasks properly for survival. Cells usually achieve robust functionality, for example, cell-fate decision-making and signal transduction, through multiple layers of regulation involving many genes. Despite the combinatorial complexity of gene regulation, its quantitative behavior has been typically studied on the basis of experimentally verified core gene regulatory circuitry, composed of a small set of important elements. It is still unclear… Show more

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Cited by 183 publications
(293 citation statements)
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“…Here, the parametric variation (P) is defined as the spread of the parameter ranges relative to the parameter range used in the original RACIPE 20 while keeping the median constant. P is measured in percentages such that the ranges are same if P is set to 100, and a larger P implies a wider spread of parameter values.…”
Section: Differential Roles Of Noise Level and Parameter Variationmentioning
confidence: 99%
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“…Here, the parametric variation (P) is defined as the spread of the parameter ranges relative to the parameter range used in the original RACIPE 20 while keeping the median constant. P is measured in percentages such that the ranges are same if P is set to 100, and a larger P implies a wider spread of parameter values.…”
Section: Differential Roles Of Noise Level and Parameter Variationmentioning
confidence: 99%
“…Lastly, we applied sRACIPE to an EMT gene regulatory circuit, which we previously constructed from former studies and an extensive literature search 20 . Evidences [39][40][41][42] suggest that the EMT circuit controls the decision making of the cell transition from the epithelial to mesenchymal states during embryonic development, wound healing and cancer metastasis 40,41,43 .…”
Section: Application To a Grc Governing Emtmentioning
confidence: 99%
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