Transcription factor

Results: 626



#Item
51LNBIAn Interaction-Dependent Model for Transcription Factor Binding

LNBIAn Interaction-Dependent Model for Transcription Factor Binding

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Source URL: www-stat.wharton.upenn.edu

Language: English - Date: 2007-05-20 20:33:40
52lac of Time: Transcription Factor Kinetics in Living Cells

lac of Time: Transcription Factor Kinetics in Living Cells

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Source URL: www.diva-portal.org

Language: English - Date: 2013-05-20 08:31:12
    53Bacterial transcription: Transcription factor sliding in live bacteria

    Bacterial transcription: Transcription factor sliding in live bacteria

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    Source URL: elflab.icm.uu.se

    Language: English - Date: 2012-12-04 03:56:49
      54Stochastic evolution of transcription factor binding sites Johannes Berg and Michael L¨assig∗ Institut f¨ ur Theoretische Physik, Universit¨ at zu K¨ oln, Z¨

      Stochastic evolution of transcription factor binding sites Johannes Berg and Michael L¨assig∗ Institut f¨ ur Theoretische Physik, Universit¨ at zu K¨ oln, Z¨

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      Source URL: www.thp.uni-koeln.de

      Language: English - Date: 2010-07-27 11:48:45
        55ARTICLE Received 11 Oct 2012 | Accepted 15 Apr 2013 | Published 14 May 2013 DOI: ncomms2867  Transcription factor binding kinetics constrain

        ARTICLE Received 11 Oct 2012 | Accepted 15 Apr 2013 | Published 14 May 2013 DOI: ncomms2867 Transcription factor binding kinetics constrain

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        Source URL: elflab.icm.uu.se

        Language: English - Date: 2013-06-24 08:21:45
          56Energy-dependent fitness: A quantitative model for the evolution of yeast transcription factor binding sites Ville Mustonen*, Justin Kinney†, Curtis G. Callan, Jr.†‡§, and Michael La¨ssig*§ *Institut fu¨r Theor

          Energy-dependent fitness: A quantitative model for the evolution of yeast transcription factor binding sites Ville Mustonen*, Justin Kinney†, Curtis G. Callan, Jr.†‡§, and Michael La¨ssig*§ *Institut fu¨r Theor

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          Source URL: www.thp.uni-koeln.de

          Language: English - Date: 2010-07-27 11:48:46
            57letters  Direct measurement of transcription factor dissociation excludes a simple operator occupancy model for gene regulation © 2014 Nature America, Inc. All rights reserved.

            letters Direct measurement of transcription factor dissociation excludes a simple operator occupancy model for gene regulation © 2014 Nature America, Inc. All rights reserved.

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            Source URL: elflab.icm.uu.se

            Language: English - Date: 2014-03-06 08:49:37
              58Downloaded from genome.cshlp.org on April 3, Published by Cold Spring Harbor Laboratory Press  A transcription factor affinity-based code for mammalian transcription initiation Molly Megraw, Fernando Pereira, Shan

              Downloaded from genome.cshlp.org on April 3, Published by Cold Spring Harbor Laboratory Press A transcription factor affinity-based code for mammalian transcription initiation Molly Megraw, Fernando Pereira, Shan

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              Source URL: www-stat.wharton.upenn.edu

              Language: English - Date: 2009-04-04 13:58:07
              59Bayesian Clustering of Transcription Factor Binding Motifs Shane T. J ENSEN and Jun S. L IU Genes are often regulated in living cells by proteins called transcription factors that bind directly to short segments of DNA i

              Bayesian Clustering of Transcription Factor Binding Motifs Shane T. J ENSEN and Jun S. L IU Genes are often regulated in living cells by proteins called transcription factors that bind directly to short segments of DNA i

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              Source URL: www-stat.wharton.upenn.edu

              Language: English - Date: 2008-02-26 17:59:19
              60Blackwell Science, LtdOxford, UKMMIMolecular Microbiology1365-2958Blackwell Publishing Ltd, 200350516831701Original ArticleV. Molle et al.The Spo0A regulon  Molecular Microbiology), 1683–1701 doi:j.

              Blackwell Science, LtdOxford, UKMMIMolecular Microbiology1365-2958Blackwell Publishing Ltd, 200350516831701Original ArticleV. Molle et al.The Spo0A regulon Molecular Microbiology), 1683–1701 doi:j.

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              Source URL: www-stat.wharton.upenn.edu

              Language: English - Date: 2006-07-24 16:11:31