Intracellular effectors regulating the activity of the Lactococcus lactis CodY pleiotropic transcription regulator (original) (raw)

Pleiotropic transcriptional repressor CodY senses the intracellular pool of branched-chain amino acids in Lactococcus lactis

Christine Delorme

Molecular Microbiology, 2001

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Gene regulation in Lactococcus lactis: the gap between predicted and characterized regulators

Eric Guedon

Antonie van Leeuwenhoek, 2002

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Overall control of nitrogen metabolism in Lactococcus lactis by CodY, and possible models for CodY regulation in Firmicutes

Eric Guedon

Microbiology, 2005

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Functional Characterization of the Lactolisterin BU Gene Cluster of Lactococcus lactis subsp. lactis BGBU1-4

Milan Kojic

Frontiers in Microbiology

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Genome-wide transcriptional responses to carbon starvation in non-growing Lactococcus lactis

Eddy J. Smid

Applied and Environmental Microbiology, 2015

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Characterization of transcription initiation and termination signals of the proteinase genes of Lactococcus lactis Wg2 and enhancement of proteolysis in L. lactis. Appl. Environ. Microbiol. 58, 3142-3149

Jos van der Vossen, Jan Kodde

Applied and Environmental Microbiology

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Medium-dependent regulation of proteinase gene expression in Lactococcus lactis: control of transcription initiation by specific dipeptides

Richard van Kranenburg

Journal of Bacteriology, 1995

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Characterization of transcription initiation and termination signals of the proteinase genes of Lactococcus lactis Wg2 and enhancement of proteolysis in L. lactis

Jos van der Vossen, Jan Kodde

1992

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Probing Direct Interactions between CodY and the oppD Promoter of Lactococcus lactis

Rasmus Larsen

Journal of Bacteriology, 2005

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Gene inactivation in Lactococcus lactis: Branched-chain amino acid biosynthesis

Jacek Bardowski

Journal of Bacteriology

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PepR1, a CcpA-like transcription regulator of Lactobacillus delbrueckii subsp. lactis

Pepa Pepi

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Transcriptional Pattern of Genes Coding for the Proteolytic System of Lactococcus lactis and Evidence for Coordinated Regulation of Key Enzymes by Peptide Supply

Eric Guedon

Journal of Bacteriology, 2001

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Molecular and metabolic adaptations of Lactococcus lactis at near-zero growth rates

Eddy J. Smid

Applied and environmental microbiology, 2015

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Cloning, nucleotide sequence, and regulatory analysis of the Lactococcus lactis dnaJ gene

Guus Simons

Journal of Bacteriology, 1993

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Use of lac regulatory elements for gene expression in Lactobacillus casei

luis rosaldo

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Implementation of the agmatine-controlled expression system for inducible gene expression in Lactococcus lactis

Felipe González

Microbial cell factories, 2015

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Regulatory Phenotyping Reveals Important Diversity within the Species Lactococcus lactis

Jan L W Rademaker

Applied and Environmental Microbiology, 2009

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Six putative two-component regulatory systems isolated from Lactococcus lactis subsp. cremoris MG1363

Douwe Van Sinderen

2000

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ctsR of Lactococcus lactis encodes a negative regulator of clp gene expression

Pekka Varmanen

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A simple expression system for Lactococcus lactis and Enterococcus faecalis

Christian Magni

World Journal of Microbiology and Biotechnology, 2010

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Regulation of the acid induciblercfB promoter inLactococcus lactis subsp.lactis

Ismail Akyol

Annals of Microbiology, 2008

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Regulation of lantibiotic lacticin 481 production at the transcriptional level by acid pH

Dominique Haras

FEMS Microbiology Letters, 2004

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Quantitative transcript analysis of the inducible expression system pSIP: comparison of the overexpression of Lactobacillus spp. β-galactosidases in Lactobacillus plantarum

Thu Ha Nguyen Thi

Microbial Cell Factories, 2011

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A xylose-inducible expression system for Lactococcus lactis

Philippe Langella

FEMS Microbiology Letters, 2004

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GlnR-Mediated Regulation of Nitrogen Metabolism in Lactococcus lactis

Sébastien Rigali

Journal of Bacteriology, 2006

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Catabolite responsive elements as a strategy for the control of heterologous gene expression in lactobacilli

Juan Arques

Applied Microbiology and Biotechnology, 2020

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BglR protein, which belongs to the BglG family of transcriptional antiterminators, is involved in beta-glucoside utilization in Lactococcus lactis

Jacek Bardowski

Journal of bacteriology, 1994

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