Difference between revisions of "Part:BBa J58102"

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Many signalling cellular processes occur using a phosphorylation mechanism. In order to assemble a transmembranal pathway, that frees a phosphore, with a genetic network within the cell, we use the promoter pOmpR (R0082). In E. coli, the osmosensing machinery using the EnvZ membrane protein follows this mechanism. That promoter is regulated positively (activated) by the transcription factor OmpR-P. We put a well known protein downstream: GFP (E0040) with a RBS (B0034) and a Terminator (B0015). This composite part will be very useful to characterize many cellular biosensors.  
 
Many signalling cellular processes occur using a phosphorylation mechanism. In order to assemble a transmembranal pathway, that frees a phosphore, with a genetic network within the cell, we use the promoter pOmpR (R0082). In E. coli, the osmosensing machinery using the EnvZ membrane protein follows this mechanism. That promoter is regulated positively (activated) by the transcription factor OmpR-P. We put a well known protein downstream: GFP (E0040) with a RBS (B0034) and a Terminator (B0015). This composite part will be very useful to characterize many cellular biosensors.  
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'''By Valencia iGEM 2006'''
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A. Aparici (2), MC. Aroca (2), J. Carrera (1), C. Edo (1,2), G. Fuertes (2), D. Jimenez (2), C. Mata (2), JV. Medrano (2), A. Montagud (2), C. Navarrete (2), E. Navarro (1), G. Rodrigo (1), M. Baguena (1), P. Tortosa (3), P. Fernandez-de-Cordoba (1), A. Ferrando (2), J. Salgado (2), J. Urchueguia (1), A. Jaramillo (3).
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1 Universidad Politecnica de Valencia, Spain
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2 Universitat de Valencia, Spain
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3 Ecole Polytechnique, France
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<!-- Add more about the biology of this part here
 
<!-- Add more about the biology of this part here

Revision as of 14:43, 26 October 2006

Promoter activated by OmpR-P with the reporter GFP

Many signalling cellular processes occur using a phosphorylation mechanism. In order to assemble a transmembranal pathway, that frees a phosphore, with a genetic network within the cell, we use the promoter pOmpR (R0082). In E. coli, the osmosensing machinery using the EnvZ membrane protein follows this mechanism. That promoter is regulated positively (activated) by the transcription factor OmpR-P. We put a well known protein downstream: GFP (E0040) with a RBS (B0034) and a Terminator (B0015). This composite part will be very useful to characterize many cellular biosensors.

By Valencia iGEM 2006

A. Aparici (2), MC. Aroca (2), J. Carrera (1), C. Edo (1,2), G. Fuertes (2), D. Jimenez (2), C. Mata (2), JV. Medrano (2), A. Montagud (2), C. Navarrete (2), E. Navarro (1), G. Rodrigo (1), M. Baguena (1), P. Tortosa (3), P. Fernandez-de-Cordoba (1), A. Ferrando (2), J. Salgado (2), J. Urchueguia (1), A. Jaramillo (3).

1 Universidad Politecnica de Valencia, Spain

2 Universitat de Valencia, Spain

3 Ecole Polytechnique, France


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
    INCOMPATIBLE WITH RFC[1000]
    Illegal BsaI.rc site found at 778