Team:Goettingen/Project/OurProject
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<img src="https://static.igem.org/mediawiki/2013/5/56/Goe-greenColi-reporter.png" class="fl" style="display:inline;width:130px" /> | <img src="https://static.igem.org/mediawiki/2013/5/56/Goe-greenColi-reporter.png" class="fl" style="display:inline;width:130px" /> | ||
<p>We used a few existing Biobricks and also created new ones to build up our system. At first, we attempted to construct a reporter system which is controlled by DarR, a transcriptional inhibitor identified in Mycobacterium smegmatis. This reporter system consists of three parts, namely a constitutively active promoter, the operator sequence DarR binds and a reporter gene cassette. c-di-AMP is able to stimulate the binding of DarR and its operator, acting as a co-inhibitor. Therefore the level of c-di-AMP can be visualized by the fluorescence of GFP: the higher the c-di-AMP level is, the lower the GFP fluorescence becomes. The reporter system is transformed into E.coli, which produces no endogens c-di-AMP, but is able to take up c-di-AMP from the environment. Therefore we are able to test the system by feeding the E.coli c-di-AMP.</p> | <p>We used a few existing Biobricks and also created new ones to build up our system. At first, we attempted to construct a reporter system which is controlled by DarR, a transcriptional inhibitor identified in Mycobacterium smegmatis. This reporter system consists of three parts, namely a constitutively active promoter, the operator sequence DarR binds and a reporter gene cassette. c-di-AMP is able to stimulate the binding of DarR and its operator, acting as a co-inhibitor. Therefore the level of c-di-AMP can be visualized by the fluorescence of GFP: the higher the c-di-AMP level is, the lower the GFP fluorescence becomes. The reporter system is transformed into E.coli, which produces no endogens c-di-AMP, but is able to take up c-di-AMP from the environment. Therefore we are able to test the system by feeding the E.coli c-di-AMP.</p> | ||
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<p>The second reporter system is based on the result of our Array Team. They found out the gene ydaO, whose expression level is effected by the level of c-di-AMP. When the cdi-AMP level is low, the ydaO expression is up-regulated. We are able to identify a Riboswitch upstream the ydaO open reading frame and used it in our second reporter system. The ydaO Riboswitch has two states: "ON" and "OFF". The switch between the two states depends on the presence of c-di-AMP: basically, when c-di-AMP is there, the Riboswitch is "OFF" and when there is no c-di-AMP, the Riboswitch is "ON". We cloned a reporter gene cassette CFP downstream the native promoter + ydaO Riboswitch. This reporter system should act similarly to our first reporter system: when there is c-di-AMP, no signal, but when there is no c-di-AMP, there will be a fluorescence signal.</p><span style="color:red">(Green Coli with a SWITCH in his hand)</span></p> | <p>The second reporter system is based on the result of our Array Team. They found out the gene ydaO, whose expression level is effected by the level of c-di-AMP. When the cdi-AMP level is low, the ydaO expression is up-regulated. We are able to identify a Riboswitch upstream the ydaO open reading frame and used it in our second reporter system. The ydaO Riboswitch has two states: "ON" and "OFF". The switch between the two states depends on the presence of c-di-AMP: basically, when c-di-AMP is there, the Riboswitch is "OFF" and when there is no c-di-AMP, the Riboswitch is "ON". We cloned a reporter gene cassette CFP downstream the native promoter + ydaO Riboswitch. This reporter system should act similarly to our first reporter system: when there is c-di-AMP, no signal, but when there is no c-di-AMP, there will be a fluorescence signal.</p><span style="color:red">(Green Coli with a SWITCH in his hand)</span></p> | ||
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==Diadeylate cyclase== | ==Diadeylate cyclase== | ||
<p>Originating from the same organism, B. subtilis, we want to take thediadenylatecyclase (DacA)to be able to produce endogenous c-di-AMP. This might be necessary, depending on the uptake of exogenous c-di-AMP into <i>E.coli</i>. <span style="color:red">(model of DacA)</span></p> | <p>Originating from the same organism, B. subtilis, we want to take thediadenylatecyclase (DacA)to be able to produce endogenous c-di-AMP. This might be necessary, depending on the uptake of exogenous c-di-AMP into <i>E.coli</i>. <span style="color:red">(model of DacA)</span></p> |
Revision as of 23:37, 27 September 2013