Team:HokkaidoU Japan/Projects/asB0034
From 2014.igem.org
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<h1>Overview</h1> | <h1>Overview</h1> | ||
- | <p>Anti-sense RNA is studied actively over the world. However, reliable method for gene silencing has not been clear. It is hard to find efficient sequence of anti-sense RNA and to synthesize new anti-sense fragment | + | <p>Anti-sense RNA is studied actively over the world. However, reliable method for gene silencing has not been clear. It is hard to find efficient sequence of anti-sense RNA and to synthesize new anti-sense fragment that matches your target gene. |
</p> | </p> | ||
<div class="fig fig800"> | <div class="fig fig800"> | ||
<img src="https://static.igem.org/mediawiki/2014/8/88/HokkaidoU_project_antisenseB0034_overview01_800.png"> | <img src="https://static.igem.org/mediawiki/2014/8/88/HokkaidoU_project_antisenseB0034_overview01_800.png"> | ||
- | <div> | + | <div>Fig. 1 You have to change anti-sense RNA conforming with each target gene.</div> |
</div> | </div> | ||
<p></p><p></p> | <p></p><p></p> | ||
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<div class="fig fig800"> | <div class="fig fig800"> | ||
<img src="https://static.igem.org/mediawiki/2014/3/38/HokkaidoU_project_antisenseB0034_overview02_800.png"> | <img src="https://static.igem.org/mediawiki/2014/3/38/HokkaidoU_project_antisenseB0034_overview02_800.png"> | ||
- | <div> | + | <div>Fig. 2 Image of common anti-sense RNA effects.</div> |
</div> | </div> | ||
<p></p><p></p> | <p></p><p></p> | ||
- | <p>Here we found that anti-sense | + | <p>Here we found that anti-sense RBS (B0034) fragment, which is used by many iGEMers commonly, works to silence several proteins. We synthesized anti-sense B0034 fragment. Regardless of target gene, only one anti-sense fragment, anti-sense B0034, works on B0034 and repress the expressions of various proteins if they are regulated by B0034. |
</p> | </p> | ||
<p></p> | <p></p> | ||
<p> | <p> | ||
- | We also synthesized anti-sense | + | We also synthesized anti-sense B0032 fragment in order to achieve specific gene silencing. You can change the target protein by changing the combination of anti-sense fragment and RBS locating upstream of target gene. |
</p> | </p> | ||
<p> | <p> | ||
- | Specific anti-sense | + | Specific anti-sense RBS fragment helps you save labor to make new anti-sense RNA for each target genes. Fortunately, iGEM HokkaidoU team select tractable RBS for designing anti-sense RBS fragment. You can use our anti-sense fragments without resynthesizing your constructs. All you have to do is to add our anti-sense fragment to the construct with the target gene!! |
</p> | </p> | ||
<div class="fig fig800"> | <div class="fig fig800"> | ||
<img src="https://static.igem.org/mediawiki/2014/2/28/HokkaidoU_project_antisenseB0034_overview03_800.png"> | <img src="https://static.igem.org/mediawiki/2014/2/28/HokkaidoU_project_antisenseB0034_overview03_800.png"> | ||
- | <div> | + | <div>Fig. 3 Anti-sense B0034 has specific effects to B0034, RBS</div> |
</div> | </div> | ||
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<div class="fig fig400 para"><p> | <div class="fig fig400 para"><p> | ||
<img src="https://static.igem.org/mediawiki/2014/b/b9/HokkaidoU_project_antisenseB0034_method03_400.png"> | <img src="https://static.igem.org/mediawiki/2014/b/b9/HokkaidoU_project_antisenseB0034_method03_400.png"> | ||
- | <div>Fig. 2 Using restriction enzyme, XhoI | + | <div>Fig. 2 Using restriction enzyme, XhoI and NcoI, we made stem_anti-sense conplex. </div> |
</div> | </div> | ||
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<ol> | <ol> | ||
<li>To cultivate the colony in 4 mL LB culture for about 20 hours</li> | <li>To cultivate the colony in 4 mL LB culture for about 20 hours</li> | ||
- | <li>To control turbidity up to 0.1 at | + | <li>To control turbidity up to 0.1 at OD<sub>600</sub></li> |
- | <li>To cultivate the colony in 2 mL M9ZB culture for 9 hours (IPTG induces antisense RNA, | + | <li>To cultivate the colony in 2 mL M9ZB culture for 9 hours (IPTG induces antisense RNA, add 20 uL)</li> |
<li>To measure fluorescence after 9 hour</li> | <li>To measure fluorescence after 9 hour</li> | ||
</ol> | </ol> |
Revision as of 15:36, 16 October 2014
Overview
Anti-sense RNA is studied actively over the world. However, reliable method for gene silencing has not been clear. It is hard to find efficient sequence of anti-sense RNA and to synthesize new anti-sense fragment that matches your target gene.
We have a good idea! It is useful to use common anti-sense for different target gene.
Here we found that anti-sense RBS (B0034) fragment, which is used by many iGEMers commonly, works to silence several proteins. We synthesized anti-sense B0034 fragment. Regardless of target gene, only one anti-sense fragment, anti-sense B0034, works on B0034 and repress the expressions of various proteins if they are regulated by B0034.
We also synthesized anti-sense B0032 fragment in order to achieve specific gene silencing. You can change the target protein by changing the combination of anti-sense fragment and RBS locating upstream of target gene.
Specific anti-sense RBS fragment helps you save labor to make new anti-sense RNA for each target genes. Fortunately, iGEM HokkaidoU team select tractable RBS for designing anti-sense RBS fragment. You can use our anti-sense fragments without resynthesizing your constructs. All you have to do is to add our anti-sense fragment to the construct with the target gene!!
How to synthesize anti-sense constructs
Anti-sense RBS fragment was synthesized by primer annealing. Based on BioBrick standard, anti-senes RBS was flanked with scar sequences. Moreover, the ends of anti-sense fragment have restriction enzymes recognition sites, NcoI and XhoI. After finishing synthesizing anti-sense RNA, we ligated anti-sense RNA with H-stem construction by NcoI and XhoI.
How to assay
We selected mRFP for target gene. We used fluorophotometer to measure how anti-sense worked. The colonies transformed by anti-sense RNA and target gene was used for assay.
- To cultivate the colony in 4 mL LB culture for about 20 hours
- To control turbidity up to 0.1 at OD600
- To cultivate the colony in 2 mL M9ZB culture for 9 hours (IPTG induces antisense RNA, add 20 uL)
- To measure fluorescence after 9 hour