Control of the Escherichia coli Sialoregulon by Transcriptional Repressor NanRKalivoda, K. A.American Society for Microbiology2013DOI 10.1128/jb.00692-13
Mechanism of NanR Gene Repression and Allosteric Induction of Bacterial Sialic Acid MetabolismHorne, Christopher R.Springer Science and Business Media LLC2021DOI 10.1038/s41467-021-22253-6
NanR Regulates nanI Sialidase Expression by Clostridium perfringens F4969, a Human Enteropathogenic StrainLi, JihongAmerican Society for Microbiology2017DOI 10.1128/iai.00241-17
A Theoretical Interpretation of the Transient Sialic Acid Toxicity of a nanR Mutant of Escherichia coliDominique ChuJournal of Molecular Biology2008DOI 10.1016/j.jmb.2007.10.073
Development of N‐acetylneuraminic acid responsive biosensors based on the transcriptional regulator NanRPeters, GertJohn Wiley and Sons2018DOI 10.1002/bit.26586
NanR Regulates Sporulation and Enterotoxin Production by Clostridium perfringens Type F Strain F4969Mi, EricAmerican Society for Microbiology2018DOI 10.1128/iai.00416-18
Regulation of Sialic Acid Catabolism by the DNA Binding Protein NanR in Escherichia coliKalivoda, K. A.American Society for Microbiology2003DOI 10.1128/jb.185.16.4806-4815.2003
Structural Insights into the Regulation of Sialic Acid Catabolism by the Vibrio Vulnificus Transcriptional Repressor NanRHwang, JungwonProceedings of the National Academy of Sciences2013DOI 10.1073/pnas.1302859110
Transcription of Sialic Acid Catabolism Genes in Corynebacterium glutamicum Is Subject to Catabolite Repression and Control by the Transcriptional Repressor NanRUhde, AndreasAmerican Society for Microbiology2016DOI 10.1128/jb.00820-15
Sialic Acid-Mediated Gene Expression in Streptococcus pneumoniae and Role of NanR as a Transcriptional Activator of the nan Gene ClusterAfzal, MuhammadAmerican Society for Microbiology2015DOI 10.1128/aem.00499-15
Cooperative Regulation of the Vibrio vulnificus nan Gene Cluster by NanR Protein, cAMP Receptor Protein, and N-Acetylmannosamine 6-PhosphateKim, B. S.The American Society for Biochemistry and Molecular Biology2011DOI 10.1074/jbc.m111.300988