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School of Biological Sciences
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Establishment of lysogeny in bacteriophage 186. DNA binding and transcriptional activation by the CII protein.
The Journal of biological chemistry Sep, 2000 | Pubmed ID: 10871623
The helix-turn-helix motif of the coliphage 186 immunity repressor binds to two distinct recognition sequences.
The Journal of biological chemistry Feb, 2002 | Pubmed ID: 11700308
Road rules for traffic on DNA-systematic analysis of transcriptional roadblocking in vivo.
Nucleic acids research Aug, 2014 | Pubmed ID: 25034688
Promoter activation by CII, a potent transcriptional activator from bacteriophage 186.
The Journal of biological chemistry Nov, 2014 | Pubmed ID: 25294872
The role of repressor kinetics in relief of transcriptional interference between convergent promoters.
Nucleic acids research 08, 2016 | Pubmed ID: 27378773
Clonetegration Using OSIP Plasmids: One-Step DNA Assembly and Site-Specific Genomic Integration in Bacteria.
Methods in molecular biology (Clifton, N.J.) , 2017 | Pubmed ID: 27671938
Aspects of protein-DNA interactions: a review of quantitative thermodynamic theory for modelling synthetic circuits utilising LacI and CI repressors, IPTG and the reporter gene lacZ.
Biophysical reviews Dec, 2016 | Pubmed ID: 28510022
Hidden Secrets of Sigma54 Promoters Revealed.
Trends in biochemical sciences 12, 2017 | Pubmed ID: 29126750
Programmable DNA looping using engineered bivalent dCas9 complexes.
Nature communications 11, 2017 | Pubmed ID: 29158476
Characterizing Transcriptional Interference between Converging Genes in Bacteria.
ACS synthetic biology 03, 2019 | Pubmed ID: 30717589
Positive and Negative Control of Enhancer-Promoter Interactions by Other DNA Loops Generates Specificity and Tunability.
Cell reports 02, 2019 | Pubmed ID: 30811991
RNA polymerase pausing at a protein roadblock can enhance transcriptional interference by promoter occlusion.
FEBS letters 05, 2019 | Pubmed ID: 30892685
Combining random microseed matrix screening and the magic triangle for the efficient structure solution of a potential lysin from bacteriophage P68.
Acta crystallographica. Section D, Structural biology Jul, 2019 | Pubmed ID: 31282476
A quantitative binding model for the Apl protein, the dual purpose recombination-directionality factor and lysis-lysogeny regulator of bacteriophage 186.
Nucleic acids research 09, 2020 | Pubmed ID: 32789491
The University of Adelaide
Jia Quyen Truong*,1,
Stephanie Nguyen*,1,2,
John B. Bruning1,2,
Keith E. Shearwin1
1School of Biological Sciences, The University of Adelaide,
2Institute of Photonics and Advanced Sensing (IPAS), School of Biological Sciences, The University of Adelaide
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