Rv3111 - molybdenum cofactor biosynthesis protein C moaC1


Protein Domains

Gene Information
LocusRv3111
SymbolmoaC
Gene Namemolybdenum cofactor biosynthesis protein C moaC1
Location3479171 - 3479683 (+)
SpeciesMycobacterium tuberculosis H37Rv complete genome.
LengthGene:513 bp
Protein:171 aa
External LinksTuberculist
Target Gene Information
String Protein-Protein Interactions
STITCH Chemical-Protein Interactions
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Orthologs
Orthogroup Number29536
Related GenesAcel_0472 MT3194 MT3201 Rv3119 SAV3059
Transcriptional Regulation
Operons View gene in operon browser
Regulatory Network
Search for regulators of Rv3111
Expression Correlation Genes with Correlated Expression
Scatterplot of Gene Expression

Sequence
Proteins
Genomic Sequence
Community Annotations Pending Curatorial Review
FieldValueStatusCreatorDate
InteractionPhysicalInteraction Rv3324Aactivepriti.priety2012-10-05
Co-occurrence(Functional-linkage)
authors,MS. Cortese,AB. Caplan,RL. Crawford Structural, functional, and evolutionary analysis of moeZ, a gene encoding an enzyme required for the synthesis of the Pseudomonas metabolite, pyridine-2,6-bis(thiocarboxylic acid). BMC Evol. Biol. 2002
InteractionPhysicalInteraction Rv3324Aactivepriti.priety2012-10-05
Co-occurrence(Functional-linkage)
authors,PR. Marri,JP. Bannantine,GB. Golding Comparative genomics of metabolic pathways in Mycobacterium species: gene duplication, gene decay and lateral gene transfer. FEMS Microbiol. Rev. 2006
SymbolmoaC1activemwilliams2012-03-16
Acquired by horizontal gene transfer
authors,TP. Stinear,T. Seemann,PF. Harrison,GA. Jenkin,JK. Davies,PD. Johnson,Z. Abdellah,C. Arrowsmith,T. Chillingworth,C. Churcher,K. Clarke,A. Cronin,P. Davis,I. Goodhead,N. Holroyd,K. Jagels,A. Lord,S. Moule,K. Mungall,H. Norbertczak,MA. Quail,E. Rabbinowitsch,D. Walker,B. White,S. Whitehead,PL. Small,R. Brosch,L. Ramakrishnan,MA. Fischbach,J. Parkhill,ST. Cole Insights from the complete genome sequence of Mycobacterium marinum on the evolution of Mycobacterium tuberculosis. Genome Res. 2008
OtherEC:activejjmcfadden2012-03-05
Inferred from direct assay
authors,B. Teusink,FH. van Enckevort,C. Francke,A. Wiersma,A. Wegkamp,EJ. Smid,RJ. Siezen In silico reconstruction of the metabolic pathways of Lactobacillus plantarum: comparing predictions of nutrient requirements with those from growth experiments. Appl. Environ. Microbiol. 2005