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  • Rv1977 - conserved hypothetical protein


    Protein Domains

    Gene Information
    LocusRv1977
    Symbol
    Gene Nameconserved hypothetical protein
    Location2219754 - 2220800 (+)
    SpeciesMycobacterium tuberculosis H37Rv complete genome.
    LengthGene:1047 bp
    Protein:349 aa
    External LinksTuberculist
    Target Gene Information
    String Protein-Protein Interactions
    STITCH Chemical-Protein Interactions
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    Orthologs
    Orthogroup Number12246
    Related GenesAcel_1421 MSMEG_3476 MT2029 SAV5476
    Transcriptional Regulation
    Operons View gene in operon browser
    Regulatory Network
    Search for regulators of Rv1977
    Gene Expression Gene Profiles
    Samples and Conditions
    Expression Correlation Genes with Correlated Expression
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    Sequence
    Proteins
    Genomic Sequence
    Community Annotations Pending Curatorial Review
    FieldValueStatusCreatorDate
    InteractionTranscription Rv3676activejgalag2012-10-05
    Band shift
    M. Stapleton, I. Haq et al. Mycobacterium tuberculosis cAMP receptor protein (Rv3676) differs from the Escherichia coli paradigm in its cAMP binding and DNA binding properties and transcription activation properties. J. Biol. Chem. 2010
    InteractionTranscription Rv3676activejgalag2012-10-05
    Band shift
    G. Bai, LA. McCue et al. Characterization of Mycobacterium tuberculosis Rv3676 (CRPMt), a cyclic AMP receptor protein-like DNA binding protein. J. Bacteriol. 2005
    InteractionActivatedBy Rv1975activepriyadarshinipriyanka20012012-10-05
    Co-expression
    authors,MC. Garcia-Pelayo,KC. Caimi,JK. Inwald,J. Hinds,F. Bigi,MI. Romano,D. van Soolingen,RG. Hewinson,A. Cataldi,SV. Gordon Microarray analysis of Mycobacterium microti reveals deletion of genes encoding PE-PPE proteins and ESAT-6 family antigens. Tuberculosis (Edinb) 2004
    InteractionRegulatedBy Rv3676activeyamir.moreno2012-10-05
    Literature previously reported link (from Balazsi et al. 2008). Traceable author statement to experimental support.
    G. Bal√°zsi, AP. Heath et al. The temporal response of the Mycobacterium tuberculosis gene regulatory network during growth arrest. Mol. Syst. Biol. 2008