m |
m |
||
Line 10: | Line 10: | ||
<div class="bs-docs-sidebar hidden-print hidden-xs hidden-sm"> | <div class="bs-docs-sidebar hidden-print hidden-xs hidden-sm"> | ||
<ul id="sidebar" class="nav bs-docs-sidenav "> | <ul id="sidebar" class="nav bs-docs-sidenav "> | ||
+ | <li > | ||
+ | <a href="#Connection">Connection</a> | ||
+ | </li> | ||
<li > | <li > | ||
<a href="#motivation">Motivation</a> | <a href="#motivation">Motivation</a> | ||
Line 44: | Line 47: | ||
<body> | <body> | ||
</div></div></div></div></div> | </div></div></div></div></div> | ||
+ | |||
+ | <div id="Connection" class="content"> | ||
+ | <div class="row"> | ||
+ | <div class="col-lg-12"> | ||
+ | <h1 align="center">Connection to the project</h1> | ||
+ | |||
+ | </div></div></div> | ||
+ | |||
+ | |||
<div id="motivation" class="content"> | <div id="motivation" class="content"> | ||
<div class="row"> | <div class="row"> | ||
Line 131: | Line 143: | ||
The Acembl system in our project involves four plasmids, pACE, pDC, pDS, and pDk, and each contains one of the four gene sequences we would like to fuse (Figure 3A-D).<p></p> | The Acembl system in our project involves four plasmids, pACE, pDC, pDS, and pDk, and each contains one of the four gene sequences we would like to fuse (Figure 3A-D).<p></p> | ||
<img src="https://static.igem.org/mediawiki/2016/6/65/Pict2.png" style="width:100%;"> | <img src="https://static.igem.org/mediawiki/2016/6/65/Pict2.png" style="width:100%;"> | ||
− | <p style="text-align:center"><b>Figure | + | <p style="text-align:center"><b>Figure 3A</b> Integration of four basic plasmid backbones into one.</p> |
<img class="pic4x pic4" src="https://static.igem.org/mediawiki/2016/4/4b/T--ShanghaitechChina--clone--hydA.jpg"> | <img class="pic4x pic4" src="https://static.igem.org/mediawiki/2016/4/4b/T--ShanghaitechChina--clone--hydA.jpg"> | ||
<img class="pic4x pic4" src="https://static.igem.org/mediawiki/2016/7/7f/T--ShanghaitechChina--clone--hydE.jpg"> | <img class="pic4x pic4" src="https://static.igem.org/mediawiki/2016/7/7f/T--ShanghaitechChina--clone--hydE.jpg"> | ||
<img class="pic4x pic4" src="https://static.igem.org/mediawiki/2016/4/4e/T--ShanghaitechChina--clone--hydF.jpg"> | <img class="pic4x pic4" src="https://static.igem.org/mediawiki/2016/4/4e/T--ShanghaitechChina--clone--hydF.jpg"> | ||
<img class="pic4x pic4" src="https://static.igem.org/mediawiki/2016/8/8d/T--ShanghaitechChina--clone--hydG.jpg"> | <img class="pic4x pic4" src="https://static.igem.org/mediawiki/2016/8/8d/T--ShanghaitechChina--clone--hydG.jpg"> | ||
− | <span style="display:inline-block;width:24%;font-size:12px;"><b>Figure | + | <span style="display:inline-block;width:24%;font-size:12px;"><b>Figure 3B</b> 1.Histag-TEV-HydA-Spytag in pACE(pACE-HydA-Tag in abbreviaFon/pladmid 1)</span> |
− | <span style="display:inline-block;width:24%;font-size:12px;"><b>Figure | + | <span style="display:inline-block;width:24%;font-size:12px;"><b>Figure 3C</b> 3.HydE in pDC(pDC-HydE in abbreviaFon/plasmid3)</span> |
− | <span style="display:inline-block;width:24%;font-size:12px;"><b>Figure | + | <span style="display:inline-block;width:24%;font-size:12px;"><b>Figure 3D</b> 4. HydF in pDK (pDK-HydF in abbreviaFon/plasmid4)</span> |
− | <span style="display:inline-block;width:24%;font-size:12px;"><b>Figure | + | <span style="display:inline-block;width:24%;font-size:12px;"><b>Figure 3E</b> 5. HydG in pDS(pDS-HydG in abbreviaFon/plasmid5)</span> |
− | <p style="text-align:center"><b>Figure | + | <p style="text-align:center"><b>Figure 3B-E. The single plasmids to fuse by Acembl system. We obtained five sequence-confirmed single plasmids including the RBS, promoter region and loxP site. More detailed information about the sequence files could be seen on our wiki_parts.)</b></p> |
In particular, pACE is the “acceptor” plasmid with hydA sequence, while others are the “donor” plasmids with the auxiliary protein sequences. With one-step Cre recombination and subsequent transformation into BL21 or DH5a, we would obtain strictly fused plasmid with either all gene circuits integrated in one big plasmid or non-fused single plasmids. The screening of successful assembly involves different resistance (Ampicillin / Chloramphenicol / spectinomycin) and different kinds of origin. In pACE1, it has a replication origin that can be recognized by common DH5a or BL21. In pDC,pDS,pDk, it has a special origin (R6K gamma ori) can be recognized only by a mutation strain of <em>E. coli</em>. (PirHC or PirLC, which can express pir gene product for its replication.) Only a successful fusion into the acceptor plasmid can it propagate, using the accepters ori. Therefore, we efficiently put all four hyd sequences on one single plasmid, avoiding the potential problems imposed by the two-plasmid system.<p></p> | In particular, pACE is the “acceptor” plasmid with hydA sequence, while others are the “donor” plasmids with the auxiliary protein sequences. With one-step Cre recombination and subsequent transformation into BL21 or DH5a, we would obtain strictly fused plasmid with either all gene circuits integrated in one big plasmid or non-fused single plasmids. The screening of successful assembly involves different resistance (Ampicillin / Chloramphenicol / spectinomycin) and different kinds of origin. In pACE1, it has a replication origin that can be recognized by common DH5a or BL21. In pDC,pDS,pDk, it has a special origin (R6K gamma ori) can be recognized only by a mutation strain of <em>E. coli</em>. (PirHC or PirLC, which can express pir gene product for its replication.) Only a successful fusion into the acceptor plasmid can it propagate, using the accepters ori. Therefore, we efficiently put all four hyd sequences on one single plasmid, avoiding the potential problems imposed by the two-plasmid system.<p></p> | ||
The basis of our constructs, the four sequences, are not directly obtained from bacteriaBut they are all codon-optimized to ensure high-level expression. (The original sequences of hydrogenase are found on <a href="http://www.genome.jp">www.genome.jp.</a>)<p></p> | The basis of our constructs, the four sequences, are not directly obtained from bacteriaBut they are all codon-optimized to ensure high-level expression. (The original sequences of hydrogenase are found on <a href="http://www.genome.jp">www.genome.jp.</a>)<p></p> |
Revision as of 13:02, 18 October 2016