Team:UC Chile2/Cyanolux/Project

From 2012.igem.org

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<h1>Motivational drive</h1>
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<h1>Goal</h1>
<p>Natural cycles have always fascinated mankind, probably due to the mysterious mechanisms involved in them and the power they exert in our everyday life. Since the dawn of synthetic biology, engineering oscillatory systems has been a recurrent topic, being Ellowitz's represillator a classical example. Nevertheless, to date no iGEM team has accomplished the implementation of a robust oscillatory system. That will be our challenge for this year's iGEM project.</p>
<p>Natural cycles have always fascinated mankind, probably due to the mysterious mechanisms involved in them and the power they exert in our everyday life. Since the dawn of synthetic biology, engineering oscillatory systems has been a recurrent topic, being Ellowitz's represillator a classical example. Nevertheless, to date no iGEM team has accomplished the implementation of a robust oscillatory system. That will be our challenge for this year's iGEM project.</p>
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<p>To reach our goal we designed a synthethic circuit that links to the endogenous circadian rhythm of <i>Synechocystis PCC6803.</i> As a proof of concept we are going to engineer the first light-rechargeable biological lamp: <i>Synechocystis PCC 6803</i> cells that emit light only by night while recovering and producing the substrates in the day.<b> We strongly believe</b> this will serve as an enabling tool to any project requiring time control over a biological behaviour independently of the user's input.</p>
<p>To reach our goal we designed a synthethic circuit that links to the endogenous circadian rhythm of <i>Synechocystis PCC6803.</i> As a proof of concept we are going to engineer the first light-rechargeable biological lamp: <i>Synechocystis PCC 6803</i> cells that emit light only by night while recovering and producing the substrates in the day.<b> We strongly believe</b> this will serve as an enabling tool to any project requiring time control over a biological behaviour independently of the user's input.</p>
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<p>Furthermore, the characterization of this chassis is a fundamental step to explore new systems with minimal inputs to replace <i>E. coli</i>, for example, in the biotechnological industry in order to achieve greener processes.</p>
<p>Furthermore, the characterization of this chassis is a fundamental step to explore new systems with minimal inputs to replace <i>E. coli</i>, for example, in the biotechnological industry in order to achieve greener processes.</p>
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<h1>Background</h1>
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<h1>Fundamentation</h1>
<h2>Synechocystis PCC 6803</h2>
<h2>Synechocystis PCC 6803</h2>
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produced by this pathway is much more visually appealing than other systems from the registry (i.e XFPs),
produced by this pathway is much more visually appealing than other systems from the registry (i.e XFPs),
moreover, the light production doesn´t depend on a single peptide but on a whole pathway involving several genes, which makes it much more tunable, for instance, decoupling in time the substrate recovery from the luciferase reaction itself.</p>
moreover, the light production doesn´t depend on a single peptide but on a whole pathway involving several genes, which makes it much more tunable, for instance, decoupling in time the substrate recovery from the luciferase reaction itself.</p>
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<h1>Experimental Strategy</h1>
<h1>Experimental Strategy</h1>
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<h3>pSB1C3_IntK</h3> [http://partsregistry.org/Part:BBa_K743006 BBa_K743006]
<h3>pSB1C3_IntK</h3> [http://partsregistry.org/Part:BBa_K743006 BBa_K743006]
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<p>This constructs is an integrative plasmid which targets neutral recombination sites (slr0370 and sll0337). We selected this locus because it has been extensively used in the literature (CAPAZ EXAGERE?) and it shown to have no deleterious effects on Synechocystis viability. We selected Kanamycin resistance as our transformation marker. [PUT LINK TO CONSTRUCT HERE].</p>
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<p>This constructs is an integrative plasmid which targets neutral recombination sites (slr0370 and sll0337). We selected this locus because it has been extensively used in the literature (REFERENCE) and it shown to have no deleterious effects on Synechocystis viability. We selected Kanamycin resistance as our transformation marker. [PUT LINK TO CONSTRUCT HERE].</p>
<h3>pSB1C3_IntS</h3>
<h3>pSB1C3_IntS</h3>
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<p>We designed another construct that besides serving as a double recombination plasmid it makes Synechocystis susceptible to copper concentrations higher than X uM [[#10|10]]. We have designed this construct to interrupt the CopS gene as a biosafety measure to avoid the possibility of having a leakage of recombinant DNA to the environment.  This plasmid has Spectynomycin resistance as the transformation marker. [PUT LINK TO CONSTRUCT HERE]
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<p>We designed another construct that besides serving as a double recombination plasmid, it makes Synechocystis susceptible to copper concentrations higher than X uM [[#10|10]]. We have designed this construct to interrupt the CopS gene as a biosafety measure to avoid the possibility of having a leakage of recombinant DNA to the environment.  This plasmid has Spectynomycin resistance as the transformation marker. [PUT LINK TO CONSTRUCT HERE]
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Revision as of 02:27, 24 September 2012

Project: Luxilla - Pontificia Universidad Católica de Chile, iGEM 2012