TB Genome Annotation Portal

Rv1028A (kdpF)

Amino Acid Sequence

MTTVDNIVGLVIAVALMAFLFAALLFPEKF
(Nucleotide sequence available on KEGG)

Additional Information



ESSENTIALITY

MtbTnDB - interactive tool for exploring a database of published TnSeq datasets for Mtb

TnSeqCorr - genes with correlated TnSeq profiles across >100 conditions *new*

Classification Condition Strain Method Reference Notes
Too-Short Sodium Oleate H37RvMA Gumbel Subhalaxmi Nambi Probability of Essentiality: -1.000000;
1 non-insertions in a row out of 3 sites
Too-Short Lignoceric Acid H37RvMA Gumbel Subhalaxmi Nambi Probability of Essentiality: -1.000000;
0 non-insertions in a row out of 3 sites
Too-Short Phosphatidylcholine H37RvMA Gumbel Subhalaxmi Nambi Probability of Essentiality: -1.000000;
1 non-insertions in a row out of 3 sites
Too-Short minimal media + 0.1% glycerol H37RvMA Gumbel Griffin et al. (2011) Probability of Essentiality: -1.000000;
1 non-insertions in a row out of 3 sites
Too-Short minimal media + 0.01% cholesterol H37RvMA Gumbel Griffin et al. (2011) Probability of Essentiality: -1.000000;
1 non-insertions in a row out of 3 sites
No-Data 7H10-glycerol H37RvMA TraSH Sassetti et al. (2003a)
Too-Short C57BL/6J mice (8 weeks) H37RvMA TraSH Sassetti et al. (2003b) Hybridization Ratio: -1
Non-Essential 7H09/7H10 + rich media H37RvMA MotifHMM DeJesus et al. (2017) Fully saturated (14 reps).

TnSeq Data No data currently available.
  • No TnSeq data currently available for this Target.
RNASeq Data No data currently available.
  • No RNA-Seq data currently available for this Target.
Metabolomic Profiles No data currently available.
  • No Metabolomic data currently available for this Target.
Proteomic Data No data currently available.
  • No Proteomic data currently available for this Target.

Regulatory Relationships from Systems Biology
  • BioCyc

    Gene interactions based on ChIPSeq and Transcription Factor Over-Expression (TFOE) (Systems Biology)

    NOTE: Green edges represent the connected genes being classified as differentially essential as a result of the middle gene being knocked out. These interactions are inferred based on RNASeq.

    Interactions based on ChIPSeq data

  • Interactions based on ChIPSeq data (Minch et al. 2014)

    • Binds To:

      • No bindings to other targets were found.
    • Bound By:

      • No bindings to other targets were found.

    Interactions based on TFOE data (Rustad et al. 2014)



    TBCAP

    Tubculosis Community Annotation Project (
    Slayden et al., 2013)

    Rv1028A (kdpF)

    PropertyValueCreatorEvidencePMIDComment
    InteractionPhysicalInteraction Rv1029sourish10ISO
    authors,A. Ballal,B. Basu,SK. Apte The Kdp-ATPase system and its regulation. J. Biosci. 2007
    InteractionPhysicalInteraction Rv1029ahal4789ISO
    authors,A. Ballal,B. Basu,SK. Apte The Kdp-ATPase system and its regulation. J. Biosci. 2007
    InteractionPhysicalInteraction Rv1031akankshajain.21ISODeletion analysis
    authors,M. Gassel,T. Mllenkamp,W. Puppe,K. Altendorf The KdpF subunit is part of the K(+)-translocating Kdp complex of Escherichia coli and is responsible for stabilization of the complex in vitro. J. Biol. Chem. 1999
    CitationThe Kdp-ATPase system and its regulation. authors,A. Ballal,B. Basu,SK. Apte J. Biosci. 2007akankshajain.21ISO17536175Deletion analysis
    InteractionPhysicalInteraction Rv1029akankshajain.21ISODeletion analysis
    authors,A. Ballal,B. Basu,SK. Apte The Kdp-ATPase system and its regulation. J. Biosci. 2007
    InteractionPhysicalInteraction Rv1030akankshajain.21ISODeletion analysis
    authors,A. Ballal,B. Basu,SK. Apte The Kdp-ATPase system and its regulation. J. Biosci. 2007
    InteractionPhysicalInteraction Rv1031akankshajain.21ISODeletion analysis
    authors,A. Ballal,B. Basu,SK. Apte The Kdp-ATPase system and its regulation. J. Biosci. 2007
    CitationThe KdpF subunit is part of the K(+)-translocating Kdp complex of Escherichia coli and is responsible for stabilization of the complex in vitro. authors,M. Gassel,T. Mllenkamp,W. Puppe,K. Altendorf J. Biol. Chem. 1999akankshajain.21ISO10608856Deletion analysis
    InteractionPhysicalInteraction Rv1029akankshajain.21ISODeletion analysis
    authors,M. Gassel,T. Mllenkamp,W. Puppe,K. Altendorf The KdpF subunit is part of the K(+)-translocating Kdp complex of Escherichia coli and is responsible for stabilization of the complex in vitro. J. Biol. Chem. 1999
    InteractionPhysicalInteraction Rv1030akankshajain.21ISODeletion analysis
    authors,M. Gassel,T. Mllenkamp,W. Puppe,K. Altendorf The KdpF subunit is part of the K(+)-translocating Kdp complex of Escherichia coli and is responsible for stabilization of the complex in vitro. J. Biol. Chem. 1999
    InteractionSignaling Rv1027cahal4789ISO
    authors,A. Ballal,B. Basu,SK. Apte The Kdp-ATPase system and its regulation. J. Biosci. 2007
    InteractionSignaling Rv1027csourish10ISO
    authors,A. Ballal,B. Basu,SK. Apte The Kdp-ATPase system and its regulation. J. Biosci. 2007

    Comments