Rv0211 - iron-regulated phosphoenolpyruvate carboxykinase pckA


Protein Domains

Gene Information
LocusRv0211
SymbolpckA
Gene Nameiron-regulated phosphoenolpyruvate carboxykinase pckA
Location251782 - 253602 (+)
SpeciesMycobacterium tuberculosis H37Rv complete genome.
LengthGene:1821 bp
Protein:607 aa
External LinksTuberculist
Target Gene Information
String Protein-Protein Interactions
STITCH Chemical-Protein Interactions
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Orthologs
Orthogroup Number19008
Related GenesCE2691 cg3169 DIP2180 jk0151 MAP3646 MAV_4963 Mkms_0185 ML2624 Mmcs_0176 MSMEG_0255 MT0221 MUL_1101 Mvan_0201 nfa54790 SAV3287
Transcriptional Regulation
Operons View gene in operon browser
Regulatory Network
Search for regulators of Rv0211
Expression Correlation Genes with Correlated Expression
Scatterplot of Gene Expression

Sequence
Proteins
Genomic Sequence
Community Annotations Pending Curatorial Review
FieldValueStatusCreatorDate
TermTBRXN:PPCKr phosphoenolpyruvate carboxykinase - ISSactivenjamshidi2012-10-05
Made rev due to suggestions in lit for mtb to carry out carbon fixation. PMID: 16501059, 12486050
authors,SW. Park,EH. Hwang,H. Park,JA. Kim,J. Heo,KH. Lee,T. Song,E. Kim,YT. Ro,SW. Kim,YM. Kim Growth of mycobacteria on carbon monoxide and methanol. J. Bacteriol. 2003
TermEC:4.1.1.49 Phosphoenolpyruvate carboxykinase (ATP). - ISSactivenjamshidi2012-10-05
Made rev due to suggestions in lit for mtb to carry out carbon fixation. PMID: 16501059, 12486050
authors,SW. Park,EH. Hwang,H. Park,JA. Kim,J. Heo,KH. Lee,T. Song,E. Kim,YT. Ro,SW. Kim,YM. Kim Growth of mycobacteria on carbon monoxide and methanol. J. Bacteriol. 2003
TermTBRXN:PPCKr phosphoenolpyruvate carboxykinase - ISSactivenjamshidi2012-10-05
Made rev due to suggestions in lit for mtb to carry out carbon fixation. PMID: 16501059, 12486050
authors,V. Srinivasan,HJ. Morowitz Ancient genes in contemporary persistent microbial pathogens. Biol. Bull. 2006
TermEC:4.1.1.49 Phosphoenolpyruvate carboxykinase (ATP). - ISSactivenjamshidi2012-10-05
Made rev due to suggestions in lit for mtb to carry out carbon fixation. PMID: 16501059, 12486050
authors,V. Srinivasan,HJ. Morowitz Ancient genes in contemporary persistent microbial pathogens. Biol. Bull. 2006
TermTBRXN:PEPCK_re phosphoenolpyruvate carboxykinase (GTP) - IPIactivenjamshidi2012-10-05
Made rev due to suggestions in lit for mtb to carry out carbon fixation. PMID: 16501059, 12486050
authors,SW. Park,EH. Hwang,H. Park,JA. Kim,J. Heo,KH. Lee,T. Song,E. Kim,YT. Ro,SW. Kim,YM. Kim Growth of mycobacteria on carbon monoxide and methanol. J. Bacteriol. 2003
TermEC:4.1.1.32 Phosphoenolpyruvate carboxykinase (GTP). - IPIactivenjamshidi2012-10-05
Made rev due to suggestions in lit for mtb to carry out carbon fixation. PMID: 16501059, 12486050
authors,SW. Park,EH. Hwang,H. Park,JA. Kim,J. Heo,KH. Lee,T. Song,E. Kim,YT. Ro,SW. Kim,YM. Kim Growth of mycobacteria on carbon monoxide and methanol. J. Bacteriol. 2003
TermTBRXN:PEPCK_re phosphoenolpyruvate carboxykinase (GTP) - IPIactivenjamshidi2012-10-05
Made rev due to suggestions in lit for mtb to carry out carbon fixation. PMID: 16501059, 12486050
authors,V. Srinivasan,HJ. Morowitz Ancient genes in contemporary persistent microbial pathogens. Biol. Bull. 2006
TermEC:4.1.1.32 Phosphoenolpyruvate carboxykinase (GTP). - IPIactivenjamshidi2012-10-05
Made rev due to suggestions in lit for mtb to carry out carbon fixation. PMID: 16501059, 12486050
authors,V. Srinivasan,HJ. Morowitz Ancient genes in contemporary persistent microbial pathogens. Biol. Bull. 2006
TermTBRXN:PEPCK_re phosphoenolpyruvate carboxykinase (GTP) - ISSactivenjamshidi2012-10-05
Made rev due to suggestions in lit for mtb to carry out carbon fixation. PMID: 16501059, 12486050
authors,SW. Park,EH. Hwang,H. Park,JA. Kim,J. Heo,KH. Lee,T. Song,E. Kim,YT. Ro,SW. Kim,YM. Kim Growth of mycobacteria on carbon monoxide and methanol. J. Bacteriol. 2003
TermEC:4.1.1.32 Phosphoenolpyruvate carboxykinase (GTP). - ISSactivenjamshidi2012-10-05
Made rev due to suggestions in lit for mtb to carry out carbon fixation. PMID: 16501059, 12486050
authors,SW. Park,EH. Hwang,H. Park,JA. Kim,J. Heo,KH. Lee,T. Song,E. Kim,YT. Ro,SW. Kim,YM. Kim Growth of mycobacteria on carbon monoxide and methanol. J. Bacteriol. 2003
TermTBRXN:PEPCK_re phosphoenolpyruvate carboxykinase (GTP) - ISSactivenjamshidi2012-10-05
Made rev due to suggestions in lit for mtb to carry out carbon fixation. PMID: 16501059, 12486050
authors,V. Srinivasan,HJ. Morowitz Ancient genes in contemporary persistent microbial pathogens. Biol. Bull. 2006
TermEC:4.1.1.32 Phosphoenolpyruvate carboxykinase (GTP). - ISSactivenjamshidi2012-10-05
Made rev due to suggestions in lit for mtb to carry out carbon fixation. PMID: 16501059, 12486050
authors,V. Srinivasan,HJ. Morowitz Ancient genes in contemporary persistent microbial pathogens. Biol. Bull. 2006
InteractionRegulatedBy Rv0348activeyamir.moreno2012-10-05
Microarrays. mRNA levels of regulated element measured and compared between wild-type and trans-element mutation (knockout, over expression etc.) performed by using microarray (or macroarray) experiments..
B. Abomoelak, EA. Hoye et al. mosR, a novel transcriptional regulator of hypoxia and virulence in Mycobacterium tuberculosis. J. Bacteriol. 2009
InteractionRegulatedBy Rv0182cactiveyamir.moreno2012-10-05
Microarrays. mRNA levels of regulated element measured and compared between wild-type and trans-element mutation (knockout, over expression etc.) performed by using microarray (or macroarray) experiments..
JH. Lee, DE. Geiman et al. Role of stress response sigma factor SigG in Mycobacterium tuberculosis. J. Bacteriol. 2008
InteractionRegulatedBy Rv1221activeyamir.moreno2012-10-05
Microarrays. mRNA levels of regulated element measured and compared between wild-type and trans-element mutation (knockout, over expression etc.) performed by using microarray (or macroarray) experiments..
R. Manganelli, MI. Voskuil et al. The Mycobacterium tuberculosis ECF sigma factor sigmaE: role in global gene expression and survival in macrophages. Mol. Microbiol. 2001
TermEC:4.1.1.32 Phosphoenolpyruvate carboxykinase (GTP). - NRactiveextern:JZUCKER2012-03-06
Inferred from mutant phenotype
J. Marrero,KY. Rhee,D. Schnappinger,K. Pethe,S. Ehrt Gluconeogenic carbon flow of tricarboxylic acid cycle intermediates is critical for Mycobacterium tuberculosis to establish and maintain infection. Proceedings of the National Academy of Sciences of the United States of America 2010
TermEC:4.1.1.32 Phosphoenolpyruvate carboxykinase (GTP). - NRactiveextern:JZUCKER2012-03-06
Traceable author statement to experimental support
authors,KY. Rhee,LP. de Carvalho,R. Bryk,S. Ehrt,J. Marrero,SW. Park,D. Schnappinger,A. Venugopal,C. Nathan Central carbon metabolism in Mycobacterium tuberculosis: an unexpected frontier. Trends Microbiol. 2011