DOCSLIB.ORG
  • Sign Up
  • Log In
  • Upload
  • Sign Up
  • Log In
  • Upload
  • Home
  • »  Tags
  • »  Dyad symmetry

Dyad symmetry

  • A Region of Phage Lambda Required for Antitermination of Transcription

    A Region of Phage Lambda Required for Antitermination of Transcription

  • A Framework for Automated Enrichment of Functionally Significant Inverted Repeats in Whole Genomes

    A Framework for Automated Enrichment of Functionally Significant Inverted Repeats in Whole Genomes

  • DNA Sequence; Operator; Repressor; Regulatory Region; Dyad Symmetry; Plasmid Pbr322; Sl Nuclease Mapping)

    DNA Sequence; Operator; Repressor; Regulatory Region; Dyad Symmetry; Plasmid Pbr322; Sl Nuclease Mapping)

  • The Regulatory Region of the Divergent Argecbh Operon in Escherichia Coli K-12

    The Regulatory Region of the Divergent Argecbh Operon in Escherichia Coli K-12

  • A History of CRISPR-CAS

    A History of CRISPR-CAS

  • FARE, a New Family of Foldback Transposons in Arabidopsis

    FARE, a New Family of Foldback Transposons in Arabidopsis

  • PG 4Th Semester

    PG 4Th Semester

  • DNA.Bending by Negative Regulatory Proteins: Gal and Lac Repressors

    DNA.Bending by Negative Regulatory Proteins: Gal and Lac Repressors

  • A Protein Involved in Minichromosome Maintenance in Yeast Binds a Transcriptional Enhancer Conserved in Eukaryotes

    A Protein Involved in Minichromosome Maintenance in Yeast Binds a Transcriptional Enhancer Conserved in Eukaryotes

  • Analysis of the DNA-Binding and Activation Properties of the Human Transcription Factor AP-2

    Analysis of the DNA-Binding and Activation Properties of the Human Transcription Factor AP-2

  • Escherichia Coli Σ38 Promoters Use Two up Elements Instead of a −35 Element: Resolution of a Paradox and Discovery That Σ38 Transcribes Ribosomal Promoters

    Escherichia Coli Σ38 Promoters Use Two up Elements Instead of a −35 Element: Resolution of a Paradox and Discovery That Σ38 Transcribes Ribosomal Promoters

  • III = Chpt. 17. Transcriptional Regulation in Bacteriophage Lambda

    III = Chpt. 17. Transcriptional Regulation in Bacteriophage Lambda

  • Identification of Repressor Binding Sites Controlling Expression of Tetracycline Resistance Encoded by Tnjo LEWIS V

    Identification of Repressor Binding Sites Controlling Expression of Tetracycline Resistance Encoded by Tnjo LEWIS V

  • The Function and Optimal Sequence of the Phage \Boxa Transcription Antitermination Signal

    The Function and Optimal Sequence of the Phage \Boxa Transcription Antitermination Signal

  • The Bacteriophage Lambda CII Phenotypes For

    The Bacteriophage Lambda CII Phenotypes For

  • Mechanism of Transcription Termination

    Mechanism of Transcription Termination

  • Of Escherichia Coli (DNA Sequence/Transcription/P Factor/Multiple Terminators) ANNA M

    Of Escherichia Coli (DNA Sequence/Transcription/P Factor/Multiple Terminators) ANNA M

  • On the Origin of CRISPR-Cas Technology: from Prokaryotes To

    On the Origin of CRISPR-Cas Technology: from Prokaryotes To

Top View
  • Translation Initiation of Bacteriophage Lambda Gene Cli Requires Integration Host Factor JAMAL MAHAJNA,1 AMOS B
  • Control of Gene Expression in Bacteriophage P22 by a Small Antisense RNA
  • Primary Sequence of the Escherichia Coli Fadl Gene Encoding an Outer Membrane Protein Required for Long-Chain Fatty Acid Transport PAUL N
  • Plant Genome Editing Targeted by RNA-Guided DNA Endonuclease CRISPR/Cas9


© 2024 Docslib.org    Feedback