Difference between revisions of "Part:BBa K4165171"

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                  Figure 2. this figure shows the results from the transcription and translation code showing the  
+
              Figure 2. this figure shows the results from the transcription and translation code showing the  
                    variation of mRNA and protein concentrations with time compared with the wet lab results.
+
                variation of mRNA and protein concentrations with time compared with the wet lab results.
 
===WetLab Results===
 
===WetLab Results===
 
<p style=" font-weight: bold; font-size:14px;"> Comparison between the mathematical model of dry lab and the wet lab results of GST COH using chemical lysis </p>
 
<p style=" font-weight: bold; font-size:14px;"> Comparison between the mathematical model of dry lab and the wet lab results of GST COH using chemical lysis </p>
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<p><img src="https://static.igem.wiki/teams/4165/wiki/data-analysis/tir-wet-expression/gst-coh-chem.jpg" style="margin-left:200px;" alt="" width="500" /></p>
 
<p><img src="https://static.igem.wiki/teams/4165/wiki/data-analysis/tir-wet-expression/gst-coh-chem.jpg" style="margin-left:200px;" alt="" width="500" /></p>
 
</html>
 
</html>
              Figure 3. This graph shows the correlation between the mathematical model of the dry lab and the wet lab  
+
            Figure 3. This graph shows the correlation between the mathematical model of the dry lab and the wet lab  
                                                  results of GST COH using chemical lysis  
+
                                              results of GST COH using chemical lysis  
 
<p style=" font-weight: bold; font-size:14px;">Comparison between the mathematical model of dry lab and the wet lab results of GST COH using sonicator  </p>
 
<p style=" font-weight: bold; font-size:14px;">Comparison between the mathematical model of dry lab and the wet lab results of GST COH using sonicator  </p>
 
<html>
 
<html>
 
<p><img src="https://static.igem.wiki/teams/4165/wiki/data-analysis/tir-wet-expression/gst-coh2-son.jpg" style="margin-left:200px;" alt="" width="500" /></p>
 
<p><img src="https://static.igem.wiki/teams/4165/wiki/data-analysis/tir-wet-expression/gst-coh2-son.jpg" style="margin-left:200px;" alt="" width="500" /></p>
 
</html>
 
</html>
              Figure 5. This graph shows that the mathematical model of the dry lab and the wet lab results of GST COH using  
+
          Figure 4. This graph shows that the mathematical model of the dry lab and the wet lab results of GST COH using  
 
                         sonicator don't correlate with each as there is a difference between the results
 
                         sonicator don't correlate with each as there is a difference between the results
  

Revision as of 10:46, 12 October 2022


Biobrick GST - CoH2

This composite part consists of T7 promoter (BBa_K3633015), lac operator (BBa_K4165062), RBS 4 (BBa_K4165264), GST tag (BBa_K4165070), CoH2 (BBa_K4165003), and T7 terminator (BBa_K731721).

Usage and Biology

COH protein is a part of the Snitch system, which binds to the GST tag for the purification of the COH.

Sequence and Features


Assembly Compatibility:
  • 10
    COMPATIBLE WITH RFC[10]
  • 12
    INCOMPATIBLE WITH RFC[12]
    Illegal NheI site found at 1172
  • 21
    COMPATIBLE WITH RFC[21]
  • 23
    COMPATIBLE WITH RFC[23]
  • 25
    COMPATIBLE WITH RFC[25]
  • 1000
    INCOMPATIBLE WITH RFC[1000]
    Illegal BsaI.rc site found at 45
    Illegal SapI.rc site found at 189

Modeling

Model “peptide (GST_Coh2) modeled by Alphafold GST_Coh2_f66fb_unrelaxed_rank_3_model_2” Ranked first model from our 4 ones with score 5 out of 6 and values of

cbeta_deviations clashscore molprobity ramachandran_favored ramachandran_outliers Qmean_4 Qmean_6
0 13.59 1.64 98.31 0.56 0.643 0.914



                             Figure 1. The 3D structure of GST-COH model Displayed on Pymol.

Mathematical modeling

Transcription rate and translation rate under T7 promotor

the mathematical modeling was based on our code for the calculation of transcription and translation (you can find it in the code section) beside with the estimated results from the wet lab.


              Figure 2. this figure shows the results from the transcription and translation code showing the 
               variation of mRNA and protein concentrations with time compared with the wet lab results.

WetLab Results

Comparison between the mathematical model of dry lab and the wet lab results of GST COH using chemical lysis

           Figure 3. This graph shows the correlation between the mathematical model of the dry lab and the wet lab 
                                             results of GST COH using chemical lysis 

Comparison between the mathematical model of dry lab and the wet lab results of GST COH using sonicator

          Figure 4. This graph shows that the mathematical model of the dry lab and the wet lab results of GST COH using 
                        sonicator don't correlate with each as there is a difference between the results