author_facet Elrobh, Mohamed S.
Webster, Christine L.
Samarasinghe, Shivanthi
Durose, Danielle
Busby, Stephen J.W.
Elrobh, Mohamed S.
Webster, Christine L.
Samarasinghe, Shivanthi
Durose, Danielle
Busby, Stephen J.W.
author Elrobh, Mohamed S.
Webster, Christine L.
Samarasinghe, Shivanthi
Durose, Danielle
Busby, Stephen J.W.
spellingShingle Elrobh, Mohamed S.
Webster, Christine L.
Samarasinghe, Shivanthi
Durose, Danielle
Busby, Stephen J.W.
FEMS Microbiology Letters
Two DNA sites for MelR in the same orientation are sufficient for optimal MelR-dependent repression at theEscherichia colimelRpromoter
Genetics
Molecular Biology
Microbiology
author_sort elrobh, mohamed s.
spelling Elrobh, Mohamed S. Webster, Christine L. Samarasinghe, Shivanthi Durose, Danielle Busby, Stephen J.W. 0378-1097 Oxford University Press (OUP) Genetics Molecular Biology Microbiology http://dx.doi.org/10.1111/1574-6968.12027 Two DNA sites for MelR in the same orientation are sufficient for optimal MelR-dependent repression at the<i>Escherichia coli</i><i>melR</i>promoter FEMS Microbiology Letters
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title Two DNA sites for MelR in the same orientation are sufficient for optimal MelR-dependent repression at theEscherichia colimelRpromoter
title_unstemmed Two DNA sites for MelR in the same orientation are sufficient for optimal MelR-dependent repression at theEscherichia colimelRpromoter
title_full Two DNA sites for MelR in the same orientation are sufficient for optimal MelR-dependent repression at theEscherichia colimelRpromoter
title_fullStr Two DNA sites for MelR in the same orientation are sufficient for optimal MelR-dependent repression at theEscherichia colimelRpromoter
title_full_unstemmed Two DNA sites for MelR in the same orientation are sufficient for optimal MelR-dependent repression at theEscherichia colimelRpromoter
title_short Two DNA sites for MelR in the same orientation are sufficient for optimal MelR-dependent repression at theEscherichia colimelRpromoter
title_sort two dna sites for melr in the same orientation are sufficient for optimal melr-dependent repression at the<i>escherichia coli</i><i>melr</i>promoter
topic Genetics
Molecular Biology
Microbiology
url http://dx.doi.org/10.1111/1574-6968.12027
publishDate 2013
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author Elrobh, Mohamed S., Webster, Christine L., Samarasinghe, Shivanthi, Durose, Danielle, Busby, Stephen J.W.
author_facet Elrobh, Mohamed S., Webster, Christine L., Samarasinghe, Shivanthi, Durose, Danielle, Busby, Stephen J.W., Elrobh, Mohamed S., Webster, Christine L., Samarasinghe, Shivanthi, Durose, Danielle, Busby, Stephen J.W.
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spelling Elrobh, Mohamed S. Webster, Christine L. Samarasinghe, Shivanthi Durose, Danielle Busby, Stephen J.W. 0378-1097 Oxford University Press (OUP) Genetics Molecular Biology Microbiology http://dx.doi.org/10.1111/1574-6968.12027 Two DNA sites for MelR in the same orientation are sufficient for optimal MelR-dependent repression at the<i>Escherichia coli</i><i>melR</i>promoter FEMS Microbiology Letters
spellingShingle Elrobh, Mohamed S., Webster, Christine L., Samarasinghe, Shivanthi, Durose, Danielle, Busby, Stephen J.W., FEMS Microbiology Letters, Two DNA sites for MelR in the same orientation are sufficient for optimal MelR-dependent repression at theEscherichia colimelRpromoter, Genetics, Molecular Biology, Microbiology
title Two DNA sites for MelR in the same orientation are sufficient for optimal MelR-dependent repression at theEscherichia colimelRpromoter
title_full Two DNA sites for MelR in the same orientation are sufficient for optimal MelR-dependent repression at theEscherichia colimelRpromoter
title_fullStr Two DNA sites for MelR in the same orientation are sufficient for optimal MelR-dependent repression at theEscherichia colimelRpromoter
title_full_unstemmed Two DNA sites for MelR in the same orientation are sufficient for optimal MelR-dependent repression at theEscherichia colimelRpromoter
title_short Two DNA sites for MelR in the same orientation are sufficient for optimal MelR-dependent repression at theEscherichia colimelRpromoter
title_sort two dna sites for melr in the same orientation are sufficient for optimal melr-dependent repression at the<i>escherichia coli</i><i>melr</i>promoter
title_unstemmed Two DNA sites for MelR in the same orientation are sufficient for optimal MelR-dependent repression at theEscherichia colimelRpromoter
topic Genetics, Molecular Biology, Microbiology
url http://dx.doi.org/10.1111/1574-6968.12027