Difference between revisions of "Part:BBa K079041"

 
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<partinfo>BBa_K079041 short</partinfo>
 
<partinfo>BBa_K079041 short</partinfo>
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This parts have been extracted from the [https://parts.igem.org/wiki/index.php?title=Part:BBa_K079047 Lambda Operator Library].
 
This parts have been extracted from the [https://parts.igem.org/wiki/index.php?title=Part:BBa_K079047 Lambda Operator Library].
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[[Image:cIswitch.jpg |left|200px|thumbnail|Right Regulatory Elements position in natural cI genetic switch]]
 
[[Image:cIswitch.jpg |left|200px|thumbnail|Right Regulatory Elements position in natural cI genetic switch]]
  
Lambda Fage Genetic switch is a complex and deeply characterized system. A Review on the natural systems behavior
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Lambda Genetic switch is a complex and deeply characterized system. A [https://parts.igem.org/Part:BBa_K079041:Design Review] on the natural phage behavior can be useful to delve into this operator set characteristics
 
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[[Image:cITest.jpg |right|200px|Test System used to assay Biological Activity]]
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[[Image:cITest.jpg |right|thumbnail|300px|Test System used to assay Biological Activity]]
[[Image:cIAffinity.jpg |right|300px|ΔG of cI Binding to it's different operator sites and resulting Biological repression strength expressed as reduction in LacZ Activity ]]
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[[Image:cIAffinity.jpg |right|thumbnail|300px|ΔG of cI Binding to it's different operator sites and resulting Biological repression strength expressed as reduction in LacZ Activity ]]
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[https://parts.igem.org/wiki/index.php?title=Part:BBa_K079041 K079041]: Lambda OR1 is the most affine wild type operator sequence in the Lambda system. In the natural switch overlaps with Cro Promoter PR.
 
[https://parts.igem.org/wiki/index.php?title=Part:BBa_K079041 K079041]: Lambda OR1 is the most affine wild type operator sequence in the Lambda system. In the natural switch overlaps with Cro Promoter PR.
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[https://parts.igem.org/wiki/index.php?title=Part:BBa_K079042 K079042]: Lambda OR2 is located upstream of OR1 partially overlapping the PR promoter. cI binding affinity for the operator sequence is '''significantly lower than OR1''' (Higher Free Energy)
 
[https://parts.igem.org/wiki/index.php?title=Part:BBa_K079042 K079042]: Lambda OR2 is located upstream of OR1 partially overlapping the PR promoter. cI binding affinity for the operator sequence is '''significantly lower than OR1''' (Higher Free Energy)
  
[https://parts.igem.org/wiki/index.php?title=Part:BBa_K079043 K079043]: Lambda OR3 recruits cI with interaction energy '''comparable to OR2'''. The different biological role in the switch systems is related to positional effects being farther from PR sequence and overlapping cI promoter P.
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[https://parts.igem.org/wiki/index.php?title=Part:BBa_K079043 K079043]: Lambda OR3 recruits cI with interaction energy '''comparable to OR2'''. The different biological role in the switch systems is related to positional effects being OR3 farther from PR sequence and overlapping cI promoter P.
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The resuming table clearly shows as, to determine the actual repression strength both binding affinity and positional effects are key elements. For Example OR3 has the strongest repression despite the lower binding affinity and a very different repression efficiency compared to the similarly binding OR2.
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[[Image:croaffinity.jpg |left|thumbnail|250px|Relative Cro Binding Strength defined as ORn/OR1]]
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OR2 and OR3 have been selected despite the similar cI binding properties because OR sites can be specifically recognized as well by Cro repressor protein.
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In '''Cro interaction''' the '''increasing affinity order become OR3, OR1 and OR2''', determining a very significant difference in OR2 and OR3 regulatory behavior.
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Cooperative effects between naturally spaced operator sequences has been well characterized costituting a solid guideline to individual or cooperative assembly with [https://parts.igem.org/wiki/index.php?title=Part:BBa_J23103 Constitutive Promoter Family]
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Differential specificity, wide characterization and extended cooperative interactions make this operator set especially well suited to design complex regulatory interactions.
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<!-- Add more about the biology of this part here
 
<!-- Add more about the biology of this part here
 
===Usage and Biology===
 
===Usage and Biology===

Latest revision as of 17:20, 29 October 2008

Lambda OR1 - operator library member


This parts have been extracted from the Lambda Operator Library.

Right Regulatory Elements position in natural cI genetic switch



Lambda Genetic switch is a complex and deeply characterized system. A Review on the natural phage behavior can be useful to delve into this operator set characteristics









Test System used to assay Biological Activity
ΔG of cI Binding to it's different operator sites and resulting Biological repression strength expressed as reduction in LacZ Activity


K079041: Lambda OR1 is the most affine wild type operator sequence in the Lambda system. In the natural switch overlaps with Cro Promoter PR.

K079042: Lambda OR2 is located upstream of OR1 partially overlapping the PR promoter. cI binding affinity for the operator sequence is significantly lower than OR1 (Higher Free Energy)

K079043: Lambda OR3 recruits cI with interaction energy comparable to OR2. The different biological role in the switch systems is related to positional effects being OR3 farther from PR sequence and overlapping cI promoter P.

The resuming table clearly shows as, to determine the actual repression strength both binding affinity and positional effects are key elements. For Example OR3 has the strongest repression despite the lower binding affinity and a very different repression efficiency compared to the similarly binding OR2.

Relative Cro Binding Strength defined as ORn/OR1

OR2 and OR3 have been selected despite the similar cI binding properties because OR sites can be specifically recognized as well by Cro repressor protein. In Cro interaction the increasing affinity order become OR3, OR1 and OR2, determining a very significant difference in OR2 and OR3 regulatory behavior.



Cooperative effects between naturally spaced operator sequences has been well characterized costituting a solid guideline to individual or cooperative assembly with Constitutive Promoter Family Differential specificity, wide characterization and extended cooperative interactions make this operator set especially well suited to design complex regulatory interactions.










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]