Sven klumpe (Talk | contribs) |
Sven klumpe (Talk | contribs) |
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place in the environment of a lysate with cell debris and released protein from the cell. In order to see whether this | place in the environment of a lysate with cell debris and released protein from the cell. In order to see whether this | ||
is achievable, we performed a colony-PCR like setting of RPA using a <i>E. Coli</i> culture in LB-medium with OD=1.0 | is achievable, we performed a colony-PCR like setting of RPA using a <i>E. Coli</i> culture in LB-medium with OD=1.0 | ||
− | and ran a normal RPA of purified plasmid as a control. We observed that the yield measured by on-gel concentration | + | and ran a normal RPA of purified plasmid as a control. The results are shown in Figure 3. |
− | determination was approximately the same. | + | A band at the expected length of the amplicon of 194 is visible. We observed that the yield measured by |
+ | on-gel concentration determination was approximately the same. | ||
</td> | </td> | ||
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<i>Figure 2: RPA reaction of lyophilised RPA mixture at 37 °C or 20 °C of His<sub>6</sub>-TEV using VF2 and VR primers. | <i>Figure 2: RPA reaction of lyophilised RPA mixture at 37 °C or 20 °C of His<sub>6</sub>-TEV using VF2 and VR primers. | ||
The control is a reaction mixture without the lyophilisation step.</i> | The control is a reaction mixture without the lyophilisation step.</i> | ||
+ | </p> | ||
+ | <div class="captionPicture"> | ||
+ | <img alt="LightbringerReal" src="https://static.igem.org/mediawiki/2017/f/f2/T--Munich--RPAPagePicture_gel4.png" width="200"> | ||
+ | <p> | ||
+ | <i>Figure 3: Colony-PCR of Cas13a Benchmark plasmid using RPA. Control is a standard RPA reaction of purified plasmid</i> | ||
</p> | </p> | ||
</td> | </td> | ||
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<img alt="LightbringerReal" src="https://static.igem.org/mediawiki/2017/c/cb/T--Munich--RPAPagePicture_gel3.png" width="300"> | <img alt="LightbringerReal" src="https://static.igem.org/mediawiki/2017/c/cb/T--Munich--RPAPagePicture_gel3.png" width="300"> | ||
<p> | <p> | ||
− | <i>Figure | + | <i>Figure 4: RPA reaction after freeze-dried storage on paper at different conditions. Conditions that were taken |
into consideration are temperature and air accessibility. Air determines the samples that were accessible to air. | into consideration are temperature and air accessibility. Air determines the samples that were accessible to air. | ||
The other samples were stored in a Petri dish sealed with parafilm.</i> | The other samples were stored in a Petri dish sealed with parafilm.</i> | ||
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− | <h3> | + | <h3> Benchmark construct for Cas13a</h3> |
<br> | <br> | ||
<p> | <p> | ||
The fact that Cas13a is a RNA-guided RNAse made it necessary to not only amplify a DNA signal but also transcribe | The fact that Cas13a is a RNA-guided RNAse made it necessary to not only amplify a DNA signal but also transcribe | ||
− | it into RNA. Thus, coupling the RPA reaction to <i>In-Vitro Transcription</i> was necessary. For this, we | + | it into RNA. Thus, coupling the RPA reaction to <i>In-Vitro Transcription</i> (RPA-Tx)was necessary. |
− | a reaction mix in bulk that would perform both steps at a time. This is achievable since both reaction | + | For this, we needed to developede |
− | + | a reaction mix in bulk that would perform both steps at a time. This is in theory achievable since both reaction take place | |
+ | at a temperature of 37 °C. <br><br> | ||
+ | We thus proceeded to try RPA-Tx on the His<sub>6</sub>-TEV construct but we never succeeded to get the expected bands in | ||
+ | the Urea-PAGE after Phenol/Chloroform extraction. After some revision we realised that, since the T7 RNA Polymerase | ||
+ | only binds double-stranded DNA, transcription would never work from the His<sub>6</sub>-TEV | ||
+ | construct we initially tested RPA on, because the amplicon was too long for RPA to form the full double stranded amplicon. | ||
+ | An option would have been to order a different | ||
+ | primer. It comes with the risk of losing RPA activity due to the strict dependency on the primer mentioned above and would | ||
+ | need additional time for optimization. Thus, we decided against that option and constructed a benchmark target RNA plasmid for | ||
+ | Cas13a. This construct consists of target sequences we took for 16s rRNA of <i>E. Coli </i>, 16s rRNA of <i> B. subtilis</i> | ||
+ | and the 5'-UTR of the norovirus. It is flanked by VF2 and VR. Upstream of the target sequences is a T7 promoter that allows | ||
+ | <i>In-Vitro Transcription</i>. After cloning this into a plasmid, we had a system with which we could test our coupled RPA-Tx | ||
+ | and check whether it works in general and on paper. | ||
</p> | </p> | ||
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<h3> Bringing RPA and In-Vitro Transcription on paper </h3> | <h3> Bringing RPA and In-Vitro Transcription on paper </h3> | ||
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Revision as of 00:19, 1 November 2017