Rv3839 - conserved hypothetical protein


Protein Domains

Gene Information
LocusRv3839
Symbol
Gene Nameconserved hypothetical protein
Location4312765 - 4313541 (+)
SpeciesMycobacterium tuberculosis H37Rv complete genome.
LengthGene:777 bp
Protein:259 aa
External LinksTuberculist
Target Gene Information
String Protein-Protein Interactions
STITCH Chemical-Protein Interactions
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Orthologs
Orthogroup Number3454
Related GenesMAP0192c MAV_0187 Mkms_5123 Mmcs_5035 MSMEG_6419 MT3947 MUL_5012 Mvan_5663 nfa1310 SAV7428
Transcriptional Regulation
Operons View gene in operon browser
Regulatory Network
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Expression Correlation Genes with Correlated Expression
Scatterplot of Gene Expression

Sequence
Proteins
Genomic Sequence
Community Annotations Pending Curatorial Review
FieldValueStatusCreatorDate
InteractionOperon Rv3840activeashwinigbhat2012-10-05
Co-expression (Functional linkage)
DM. Hunt, JW. Saldanha et al. Single nucleotide polymorphisms that cause structural changes in the cyclic AMP receptor protein transcriptional regulator of the tuberculosis vaccine strain Mycobacterium bovis BCG alter global gene expression without attenuating growth. Infect. Immun. 2008
InteractionOperon Rv3840activepriti.priety2012-10-05
Co-expression (Functional linkage)
DM. Hunt, JW. Saldanha et al. Single nucleotide polymorphisms that cause structural changes in the cyclic AMP receptor protein transcriptional regulator of the tuberculosis vaccine strain Mycobacterium bovis BCG alter global gene expression without attenuating growth. Infect. Immun. 2008
InteractionRegulatory Rv3676activesarfarazalam4082012-10-05

DM. Hunt, JW. Saldanha et al. Single nucleotide polymorphisms that cause structural changes in the cyclic AMP receptor protein transcriptional regulator of the tuberculosis vaccine strain Mycobacterium bovis BCG alter global gene expression without attenuating growth. Infect. Immun. 2008
InteractionRegulatedBy Rv2711activeyamir.moreno2012-10-05
Literature previously reported link (from Balazsi et al. 2008). Traceable author statement to experimental support.
G. Balázsi, AP. Heath et al. The temporal response of the Mycobacterium tuberculosis gene regulatory network during growth arrest. Mol. Syst. Biol. 2008