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| <section class="main tr"> | | <section class="main tr"> |
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− | <article class="col-xs-12 col-sm-12 col-md-8 col-md-offset-2" id="background"> | + | <article class="col-xs-12 col-sm-12 col-md-10 col-md-offset-1" id="background"> |
| <h1>Background</h1> | | <h1>Background</h1> |
| <p align="justify">In the past twenty years, the use of insect cells has grown enormously; the establishment of more than 500 insect cell lines from different organisms and tissues is proof of this (Smagghe et al, 2009). However, two cell lines are considered as | | <p align="justify">In the past twenty years, the use of insect cells has grown enormously; the establishment of more than 500 insect cell lines from different organisms and tissues is proof of this (Smagghe et al, 2009). However, two cell lines are considered as |
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| </article> | | </article> |
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− | <article class="col-xs-12 col-sm-12 col-md-8 col-md-offset-2"> | + | <article class="col-xs-12 col-sm-12 col-md-10 col-md-offset-1"> |
| <h1>Objectives</h1> | | <h1>Objectives</h1> |
| <p align="justify">The aim of our project is to expand the use of insect cells in synthetic biology. We believe that we have the opportunity to enrich the part registry with biobricks designed for an insect chassis. To accomplish our goal, our team is going to introduce various biobricks that contain basic functional parts necessary to build your own expression cassette for insect cells. In addition, we want to validate the use of the CRISPR/Cas9 System in the Sf9 cells for specific genome editing. </p> | | <p align="justify">The aim of our project is to expand the use of insect cells in synthetic biology. We believe that we have the opportunity to enrich the part registry with biobricks designed for an insect chassis. To accomplish our goal, our team is going to introduce various biobricks that contain basic functional parts necessary to build your own expression cassette for insect cells. In addition, we want to validate the use of the CRISPR/Cas9 System in the Sf9 cells for specific genome editing. </p> |
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| <article class="col-xs-6 col-cx-offset-3 col-sm-6 col-sm-offset-3 col-md-4 col-md-offset-4" id="Strategies"> | | <article class="col-xs-6 col-cx-offset-3 col-sm-6 col-sm-offset-3 col-md-4 col-md-offset-4" id="Strategies"> |
| <h1>Strategies</h1> | | <h1>Strategies</h1> |
| + | <div class="row"> |
| + | <div class="col-md-6"> |
| + | <h2>BEVS</h2> |
| + | <img src="tumama" class="img-responsive"> |
| + | </div> |
| + | <div class="col-md-6"> |
| + | <p align="justify">Characterization of the widely used polyhedrin promoter (<a href="http://parts.igem.org/Part:BBa_K173400">BBa_K1734000</a>) and the confirmation of two secretion signals (<a href="http://parts.igem.org/Part:BBa_K1734001">BBa_K1734001</a>, <a href="http://parts.igem.org/Part:BBa_K1734002">BBa_K1734002</a>). All the work was confirmed by using the reporter gene Nanoluc (<a href="http://parts.igem.org/Part:BBa_K1734004">BBa_K1734004</a>)</p> |
| + | </div> |
| + | </div> |
| + | <div class="row"> |
| + | <div class="col-md-6"> |
| + | <h2>STABLE</h2> |
| + | <img src="tumama" class="img-responsive"> |
| + | </div> |
| + | <div class="col-md-6"> |
| + | <p align="justify">Random genome integration to generate a stable cell line mediated by zeocin antibiotic resistance by selective pressure. The promoter OpIE2 (<a href="http://parts.igem.org/Part:BBa_K1734001">BBa_K1734001</a>) was used to test protein production.</p> |
| + | </div> |
| + | </div> |
| + | <div class="row"> |
| + | <div class="col-md-6"> |
| + | <h2>CRISP/Cas9</h2> |
| + | <img src="tumama" class="img-responsive"> |
| + | </div> |
| + | <div class="col-md-6"> |
| + | <p align="justify">To prove the function of the CRISPR/Cas9 in the Sf9, we developed two constructs of our gRNA (<a href="http://parts.igem.org/Part:BBa_K1734012">BBa_K1734012</a>, <a href="http://parts.igem.org/Part:BBa_K1734013">BBa_K1734013</a>) to attenuate the Nanoluc’s luminescence in the stable cell line. These gRNAs are in the same plasmid that produces the Cas9 protein and a GFP protein as a fluorescent marker, having two separate plasmids. We will work with both pathways of CRISPR: nonhomologous end joining and homology-directed repair.</p> |
| + | </div> |
| + | </div> |
| </article> | | </article> |
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| </article> | | </article> |
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− | <article class="col-xs-12 col-sm-12 col-md-8 col-md-offset-2"> | + | <article class="col-xs-12 col-sm-12 col-md-10 col-md-offset-1"> |
| <h1>Biobricks</h1> | | <h1>Biobricks</h1> |
| <strong><h3>Polyhedrin promoter (pPH) <a href="http://parts.igem.org/Part:BBa_K1734000">(BBa_K1734000)</a></h3></strong> | | <strong><h3>Polyhedrin promoter (pPH) <a href="http://parts.igem.org/Part:BBa_K1734000">(BBa_K1734000)</a></h3></strong> |
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| </article> | | </article> |
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− | <article class="col-xs-12 col-sm-12 col-md-8 col-md-offset-2"> | + | <article class="col-xs-12 col-sm-12 col-md-10 col-md-offset-1"> |
| <h2>Protocols</h2> | | <h2>Protocols</h2> |
| <br></br> | | <br></br> |
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| </article> | | </article> |
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− | <article class="col-xs-12 col-sm-12 col-md-8 col-md-offset-2"> | + | <article class="col-xs-12 col-sm-12 col-md-10 col-md-offset-1"> |
| <h1>Results</h1> | | <h1>Results</h1> |
| </article> | | </article> |
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| </article> | | </article> |
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− | <article class="col-xs-12 col-sm-12 col-md-8 col-md-offset-2"> | + | <article class="col-xs-12 col-sm-12 col-md-10 col-md-offset-1"> |
| <h1>Discussion</h1> | | <h1>Discussion</h1> |
| </article> | | </article> |
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| </article> | | </article> |
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− | <article class="col-xs-12 col-sm-12 col-md-8 col-md-offset-2"> | + | <article class="col-xs-12 col-sm-12 col-md-10 col-md-offset-1"> |
| <h1>Conclusions</h1> | | <h1>Conclusions</h1> |
| </article> | | </article> |
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| </article> | | </article> |
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− | <article class="col-xs-12 col-sm-12 col-md-8 col-md-offset-2"> | + | <article class="col-xs-12 col-sm-12 col-md-10 col-md-offset-1"> |
| <h1>References</h1> | | <h1>References</h1> |
| </article> | | </article> |