Mutational analysis of the highly conserved C-terminal residues of the XylS protein, a member of the AraC family of transcriptional regulators
Author:
Publisher
Wiley
Subject
Cell Biology,Genetics,Molecular Biology,Biochemistry,Structural Biology,Biophysics
Link
http://onlinelibrary.wiley.com/wol1/doi/10.1016/S0014-5793(00)01749-X/fullpdf
Reference39 articles.
1. TRANSCRIPTIONAL CONTROL OF THE PSEUDOMONAS TOL PLASMID CATABOLIC OPERONS IS ACHIEVED THROUGH AN INTERPLAY OF HOST FACTORS AND PLASMID-ENCODED REGULATORS
2. The XylS/AraC family of regulators
3. Arac/XylS family of transcriptional regulators.
4. Signal-regulator interactions, genetic analysis of the effector binding site of xyls, the benzoate-activated positive regulator of Pseudomonas TOL plasmid meta-cleavage pathway operon
5. The TACAN4TGCA motif upstream from the -35 region in the sigma70-sigmaS-dependent Pm promoter of the TOL plasmid is the minimum DNA segment required for transcription stimulation by XylS regulators
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1. Engineering of the Ligand Specificity of Transcriptional Regulator XylS by Deep Mutational Scanning;ACS Synthetic Biology;2021-12-29
2. Switching the Ligand Specificity of the Biosensor XylS from meta to para-Toluic Acid through Directed Evolution Exploiting a Dual Selection System;ACS Synthetic Biology;2019-11-05
3. The XylS/Pmregulator/promoter system and its use in fundamental studies of bacterial gene expression, recombinant protein production and metabolic engineering;Microbial Biotechnology;2017-03-09
4. The Enterococcus faecium Enterococcal Biofilm Regulator, EbrB, Regulates the esp Operon and Is Implicated in Biofilm Formation and Intestinal Colonization;PLoS ONE;2013-05-31
5. Directed evolution of the transcription factor XylS for development of improved expression systems;Microbial Biotechnology;2009-06-03
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