Difference between revisions of "Team:Bordeaux/Description"
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− | <p class="reference" align ="justify"> <b> Figure 5: Schematic representation of the | + | <p class="reference" align ="justify"> <b> Figure 5: Schematic representation of the β 1,3 glucan synthetic pathway [2] </b> </p> |
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− | <p align="justify" style="text-indent: 3vw;"> Before starting the project, we took a few weeks to decide <b>which host organism we would use</b> and how they could be useful. To begin with we looked at three different organisms: <i> Escherichia coli </i>, <i> Bacillus subtilis </i> and <i> Saccharomyces cerevisiae </i> and compared their glucan metabolic pathways. We rapidly eliminated <i> Bacillus subtilis </i> from our possible hosts due to it's lack of enzymes involved in the metabolic pathway of | + | <p align="justify" style="text-indent: 3vw;"> Before starting the project, we took a few weeks to decide <b>which host organism we would use</b> and how they could be useful. To begin with we looked at three different organisms: <i> Escherichia coli </i>, <i> Bacillus subtilis </i> and <i> Saccharomyces cerevisiae </i> and compared their β glucan metabolic pathways. We rapidly eliminated <i> Bacillus subtilis </i> from our possible hosts due to it's lack of enzymes involved in the metabolic pathway of β 1,3 glucans (Figure 5). However, we found that <b><i>Saccharomyces cerevisiae</i> naturally produces Curdlan</b> in it's cell wall, like <i>Agrobacterium</i>. Furthermore, <b><i> Escherichia coli </i> is only missing one enzyme</b> (the <b>β Glucan synthase</b>) to synthethize Curdlan. We therefore concluded that we could keep these two organisms: one where we would overexpress the β 1,3 glucan synthase using a constititive promoter and one where we would insert the ability to create curdlan by adding the enzyme that is needed throught the crdASC putative operon.</p> |
<p class="reference" align="left"> <b>Literature Cited: </b> </p> | <p class="reference" align="left"> <b>Literature Cited: </b> </p> | ||
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<p align="justify" style="text-indent: 3vw;"> Firstly, we decided to produce curdlan with <i> Escherichia coli </i>, because <i> Agrobacterium </i> and it are Gram negative bacteria and have a lot of membrane similarity. Moreover <i> Escherichia coli </i> is a simple bacteria that can be grown and cultured easily and inexpensively in a laboratory unlike <i> Agrobacterium </i>. </p> | <p align="justify" style="text-indent: 3vw;"> Firstly, we decided to produce curdlan with <i> Escherichia coli </i>, because <i> Agrobacterium </i> and it are Gram negative bacteria and have a lot of membrane similarity. Moreover <i> Escherichia coli </i> is a simple bacteria that can be grown and cultured easily and inexpensively in a laboratory unlike <i> Agrobacterium </i>. </p> | ||
− | <p align="justify" style="text-indent: 3vw;"> Since <i> E. coli </i> naturally produces UDP Glucose, adding the | + | <p align="justify" style="text-indent: 3vw;"> Since <i> E. coli </i> naturally produces UDP Glucose (metabolite number 3 on Figure 5), adding the β 1,3 glucan synthase would theoretically allow curdlan production. We therefore inserted the three genes which code for the β glucan synthase and metabolic transporters in <i> Agrobacterium </i> (crdASC) into <i> E. coli </i>. We decided to place the genes under an easier control than N-starvation by using a constitutive promoter which is activated in stationary phase. This should theoretically allow maximum production in simple conditions. </p> |
− | <p align="justify" style="text-indent: 3vw;"> In order to have control over the different culture perameters we also decided to use M63 culture medium. This | + | <p align="justify" style="text-indent: 3vw;"> In order to have control over the different culture perameters we also decided to use M63 culture medium. This is the medium which is used for curdlan production in <i> Agrobacterieum </i> and is also interesting since it is a minimal medium which allows us to easily vary parameters and optimize production. Furthermore, since Curdlan is a glucose derivative, being able to control the amount of sugar in the medium is interesting for production optimization. </p> |
<img style= "width:20vw; height:15vw;" src="https://static.igem.org/mediawiki/2015/1/18/Bordeaux_cell_fluo.jpg";> | <img style= "width:20vw; height:15vw;" src="https://static.igem.org/mediawiki/2015/1/18/Bordeaux_cell_fluo.jpg";> |
Revision as of 20:31, 4 September 2015