Team:Newcastle/modelling

From 2010.igem.org

(Difference between revisions)
(Subtilin system)
(Biochemical network in SBML)
 
(12 intermediate revisions not shown)
Line 4: Line 4:
In order to understand the behaviour of our parts, we computationally modelled them by encoding biochemical networks in [http://sbml.org SBML] and simulating them using [http://www.copasi.org COPASI].
In order to understand the behaviour of our parts, we computationally modelled them by encoding biochemical networks in [http://sbml.org SBML] and simulating them using [http://www.copasi.org COPASI].
-
 
-
 
-
 
-
[[Image:Newcastle model_0.JPG|150px| Diagram ver 0]]
 
-
[[Image:Newcastle model 1.JPG|150px| Diagram ver 1]]
 
-
[[Image:Newcastle CellDesigner Filamentous.png|150px|Model]]
 
==Calcium carbonate==
==Calcium carbonate==
-
For more details, please see the [[Team:Newcastle/Urease|Calcium carbonate precipitation via urease expression]].
+
For more details, please see [[Team:Newcastle/Urease|Calcium carbonate precipitation via urease expression]].
===Flux balance analysis===
===Flux balance analysis===
Line 35: Line 29:
We wrote a computational model of our [[Team:Newcastle/Urease|calcium carbonate system]] in SBML and simulated it in COPASI. The graph below shows that carbonate increases over time, as desired.  
We wrote a computational model of our [[Team:Newcastle/Urease|calcium carbonate system]] in SBML and simulated it in COPASI. The graph below shows that carbonate increases over time, as desired.  
-
[[Image:ModelrocFsr1.png|400px]]
+
[[Image:ModelrocFsr1.png|600px]]
Downloads:
Downloads:
*[[Media:Newcastle_urease.mod.txt|SBML-shorthand]]
*[[Media:Newcastle_urease.mod.txt|SBML-shorthand]]
*[[Media:Newcastle_urease.xml.txt|SBML]]
*[[Media:Newcastle_urease.xml.txt|SBML]]
-
 
==Filamentous cells==
==Filamentous cells==
 +
 +
For more details, please see [[Team:Newcastle/Filamentous_Cells|Filamentous cells]].
 +
 +
===Biochemical network in SBML===
 +
We wrote a computational model of our filamentous cell system in SBML and simulated it in COPASI. The graph below shows that FtsZ ring formation is low when ''yneA'' is overexpressed.
 +
 +
[[Image:Newcastle_ModelFilamentous.png|600px]]
 +
 +
Visualisation of the model's biochemical network in CellDesigner:
 +
 +
[[Image:Newcastle CellDesigner Filamentous.png|600px]]
 +
 +
Downloads:
 +
*[[Media:Newcastle_filamentous.mod.txt|SBML-shorthand]]
 +
*[[Media:Newcastle_filamentous.xml.txt|SBML]]
 +
{{Team:Newcastle/footer}}
{{Team:Newcastle/footer}}

Latest revision as of 16:16, 26 October 2010

iGEM Homepage Newcastle University BacillaFilla Homepage Image Map

Contents

Modelling

In order to understand the behaviour of our parts, we computationally modelled them by encoding biochemical networks in SBML and simulating them using COPASI.

Calcium carbonate

For more details, please see Calcium carbonate precipitation via urease expression.

Flux balance analysis

In order to inform our calcium carbonate part design, we performed flux balance analysis to identify pathways which indirectly lead to urea hydrolysis.

Newcastle Arginine and Ornithine Degradation.png

Taken from SEED


Downloads:


Biochemical network in SBML

We wrote a computational model of our calcium carbonate system in SBML and simulated it in COPASI. The graph below shows that carbonate increases over time, as desired.

ModelrocFsr1.png

Downloads:

Filamentous cells

For more details, please see Filamentous cells.

Biochemical network in SBML

We wrote a computational model of our filamentous cell system in SBML and simulated it in COPASI. The graph below shows that FtsZ ring formation is low when yneA is overexpressed.

Newcastle ModelFilamentous.png

Visualisation of the model's biochemical network in CellDesigner:

Newcastle CellDesigner Filamentous.png

Downloads:


Newcastle University logo.png    Newcastle cbcb logo.pngNewcastle Biomedicine logo.gif    Team Newcastle CEG logo.gif
Newcastle iww logo.jpg  UNIPV Pavia Logo.gif  Newcastle BBSRC.gif    Newcastle Genevision logo.png Newcastle WelcomeTrust.jpg
FaceBook Icon