Difference between revisions of "Part:BBa K3015000"

 
 
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Riboswitch specific for Mycolactone. Consists of an Aptamer-sequence, a spacer region, a terminator and a U-Stretch.
 
Riboswitch specific for Mycolactone. Consists of an Aptamer-sequence, a spacer region, a terminator and a U-Stretch.
 
In the absence of Mycolactone the terminator-sequence will bind to the aptamer-sequence and form a hairpin, which will cause the RNA-Polymerase to dissociate from the DNA-strand.
 
In the absence of Mycolactone the terminator-sequence will bind to the aptamer-sequence and form a hairpin, which will cause the RNA-Polymerase to dissociate from the DNA-strand.
In the presence of Mycolactone it will bind to the Aptamer-sequence and loosen the hairpin structure and the RNA-Polymerase can transcribe.
+
In the presence of Mycolactone it will bind to the Aptamer-sequence and loosen the hairpin structure and the RNA-Polymerase can transcribe.<br>
 +
[[File:T--BOKU-Vienna--K3015001mycolactone.png|600px]]<br>
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Figure 1: This is the secondary structure of the Mycolactone aptamer with intrinsic termination<br>
  
 
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Latest revision as of 00:21, 22 October 2019


Mycolactone-Riboswitch

Riboswitch specific for Mycolactone. Consists of an Aptamer-sequence, a spacer region, a terminator and a U-Stretch. In the absence of Mycolactone the terminator-sequence will bind to the aptamer-sequence and form a hairpin, which will cause the RNA-Polymerase to dissociate from the DNA-strand. In the presence of Mycolactone it will bind to the Aptamer-sequence and loosen the hairpin structure and the RNA-Polymerase can transcribe.
T--BOKU-Vienna--K3015001mycolactone.png
Figure 1: This is the secondary structure of the Mycolactone aptamer with intrinsic termination

Sequence and Features


Assembly Compatibility:
  • 10
    COMPATIBLE WITH RFC[10]
  • 12
    COMPATIBLE WITH RFC[12]
  • 21
    COMPATIBLE WITH RFC[21]
  • 23
    COMPATIBLE WITH RFC[23]
  • 25
    COMPATIBLE WITH RFC[25]
  • 1000
    COMPATIBLE WITH RFC[1000]