Difference between revisions of "Team:ATOMS-Turkiye/Project/Modeling"
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<div class="img-text"><img src="img-center" class="https://static.igem.org/mediawiki/2015/7/7d/ATOMS-Turkiye_model_1.png"><p><b>Table 1: </b>Parameters for Lac Operon System Modelling (Simulating Genetic Systems with SimBiology)</p></div> | <div class="img-text"><img src="img-center" class="https://static.igem.org/mediawiki/2015/7/7d/ATOMS-Turkiye_model_1.png"><p><b>Table 1: </b>Parameters for Lac Operon System Modelling (Simulating Genetic Systems with SimBiology)</p></div> | ||
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Revision as of 00:13, 5 October 2015
MODELING
Table 1: Parameters for Lac Operon System Modelling (Simulating Genetic Systems with SimBiology)
Table 2: Parameters for Lsr Operon System (Dr. William E. Bentley. A MATHEMATICAL MODEL TO STUDY THE ROLE OF THE LSR INTERGENIC REGION IN MEDIATION OF AUTOINDUCER-2 QUORUM SENSING IN ESCHERICHIA COLI)
Table 1: Table 3: TEV Protease enzyme kinetics
References
[1]. Nallamsetty, S., Kapust, R., Tözsér, J., Cherry, S., Tropea, J., Copeland, T., & Waugh, D. (n.d.). Efficient site-specific processing of fusion proteins by tobacco vein mottling virus protease in vivo and in vitro. Protein Expression and Purification, 108-115
[2]. Simulating Genetic Systems with SimBiology
[3]. Dr. William E. Bentley. A MATHEMATICAL MODEL TO STUDY THE ROLE OF THE LSR INTERGENIC REGION IN MEDIATION OF AUTOINDUCER-2 QUORUM SENSING IN ESCHERICHIA COLI
[4]. Production of ammonium by Helicobacter pylori mediates occludin processing and disruption of tight junctions in Caco-2 cells
[5]. Anderson, J., Huang, J., Wreden, C., Sweeney, E., Goers, J., Remington, S., & Guillemin, K. (2015). Chemorepulsion from the Quorum Signal Autoinducer-2 Promotes Helicobacter pylori Biofilm Dispersal. MBio.