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Transgenic Drosophila lines for LexA-dependent gene and growth regulation |  bioRxiv
Transgenic Drosophila lines for LexA-dependent gene and growth regulation | bioRxiv

Orientation of the LexA DNA-binding motif on operator DNA as inferred from  cysteine-mediated phenyl azide crosslinking.
Orientation of the LexA DNA-binding motif on operator DNA as inferred from cysteine-mediated phenyl azide crosslinking.

The Parameter-Fitness Landscape of lexA Autoregulation in Escherichia coli  | mSphere
The Parameter-Fitness Landscape of lexA Autoregulation in Escherichia coli | mSphere

Part:BBa K2923010 - parts.igem.org
Part:BBa K2923010 - parts.igem.org

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Untitled

The Kinetic and Molecular Basis for the Interaction of LexA and Activated  RecA Revealed by a Fluorescent Amino Acid Probe | ACS Chemical Biology
The Kinetic and Molecular Basis for the Interaction of LexA and Activated RecA Revealed by a Fluorescent Amino Acid Probe | ACS Chemical Biology

Non-equilibrium repressor binding kinetics link DNA damage dose to  transcriptional timing within the SOS gene network | PLOS Genetics
Non-equilibrium repressor binding kinetics link DNA damage dose to transcriptional timing within the SOS gene network | PLOS Genetics

The LexA regulated genes of the Clostridium difficile | BMC Microbiology |  Full Text
The LexA regulated genes of the Clostridium difficile | BMC Microbiology | Full Text

Part:BBa K2923013 - parts.igem.org
Part:BBa K2923013 - parts.igem.org

Sequence requirements for LexA binding. The preferred half site... |  Download Scientific Diagram
Sequence requirements for LexA binding. The preferred half site... | Download Scientific Diagram

Repressor lexA - an overview | ScienceDirect Topics
Repressor lexA - an overview | ScienceDirect Topics

Frontiers | The Verrucomicrobia LexA-Binding Motif: Insights into the  Evolutionary Dynamics of the SOS Response
Frontiers | The Verrucomicrobia LexA-Binding Motif: Insights into the Evolutionary Dynamics of the SOS Response

IJMS | Free Full-Text | Regulation of Heterogenous LexA Expression in  Staphylococcus aureus by an Antisense RNA Originating from Transcriptional  Read-Through upon Natural Mispairings in the sbrB Intrinsic Terminator
IJMS | Free Full-Text | Regulation of Heterogenous LexA Expression in Staphylococcus aureus by an Antisense RNA Originating from Transcriptional Read-Through upon Natural Mispairings in the sbrB Intrinsic Terminator

Binding of the Bacillus subtilis LexA protein to the SOS operator
Binding of the Bacillus subtilis LexA protein to the SOS operator

The Use and Abuse of LexA by Mobile Genetic Elements: Trends in Microbiology
The Use and Abuse of LexA by Mobile Genetic Elements: Trends in Microbiology

Thermodynamics of LexA binding to recA operator mutants | Download Table
Thermodynamics of LexA binding to recA operator mutants | Download Table

The amino-terminal domain of LexA repressor is a-helical but differs from  canonical helix-turn-helix proteins: A two-dimensional
The amino-terminal domain of LexA repressor is a-helical but differs from canonical helix-turn-helix proteins: A two-dimensional

Structure of the LexA–DNA complex and implications for SOS box measurement  | Nature
Structure of the LexA–DNA complex and implications for SOS box measurement | Nature

LexA-DNA Bond Strength by Single Molecule Force Spectroscopy: Biophysical  Journal
LexA-DNA Bond Strength by Single Molecule Force Spectroscopy: Biophysical Journal

Figure 4 from LexA protein is a repressor of the colicin E1 gene. |  Semantic Scholar
Figure 4 from LexA protein is a repressor of the colicin E1 gene. | Semantic Scholar

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G427.gif

PDF] Binding of the Bacillus subtilis LexA protein to the SOS operator |  Semantic Scholar
PDF] Binding of the Bacillus subtilis LexA protein to the SOS operator | Semantic Scholar

A combinatorial approach to Synthetic Transcription Factor-Promoter  combinations for yeast strain engineering
A combinatorial approach to Synthetic Transcription Factor-Promoter combinations for yeast strain engineering

Mifepristone-inducible LexPR system to drive and control gene expression in  transgenic zebrafish Developmental Biology
Mifepristone-inducible LexPR system to drive and control gene expression in transgenic zebrafish Developmental Biology

Non-equilibrium repressor binding kinetics link DNA damage dose to  transcriptional timing within the SOS gene network | PLOS Genetics
Non-equilibrium repressor binding kinetics link DNA damage dose to transcriptional timing within the SOS gene network | PLOS Genetics

A) Upstream operator sequences of MC-1 lexA and umuDC genes presenting... |  Download Scientific Diagram
A) Upstream operator sequences of MC-1 lexA and umuDC genes presenting... | Download Scientific Diagram

dinBox 1 is a conserved LexA operator. (A) A class of GIL01 cp mutants... |  Download Scientific Diagram
dinBox 1 is a conserved LexA operator. (A) A class of GIL01 cp mutants... | Download Scientific Diagram