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NCBI: 10-JUN-2013

Summary[edit | edit source]

  • organism: Staphylococcus aureus COL
  • locus tag: SACOL1091 [new locus tag: SACOL_RS05570 ]
  • pan locus tag?: SAUPAN003303000
  • symbol: ptsH
  • pan gene symbol?: ptsH
  • synonym:
  • product: phosphocarrier protein HPr

Genome View[edit | edit source]

Gene[edit | edit source]

General[edit | edit source]

  • type: CDS
  • locus tag: SACOL1091 [new locus tag: SACOL_RS05570 ]
  • symbol: ptsH
  • product: phosphocarrier protein HPr
  • replicon: chromosome
  • strand: +
  • coordinates: 1101785..1102051
  • length: 267
  • essential: unknown other strains

Accession numbers[edit | edit source]

Phenotype[edit | edit source]

Share your knowledge and add information here. [edit]

DNA sequence[edit | edit source]

  • 1
    61
    121
    181
    241
    ATGGAACAAAATTCATATGTAATCATCGACGAGACTGGTATTCACGCTAGACCAGCAACA
    ATGTTAGTACAAACAGCTTCAAAATTCGATTCTGATATTCAATTAGAATATAACGGTAAG
    AAAGTAAACTTAAAATCAATCATGGGTGTTATGAGCCTTGGTGTTGGTAAAGATGCTGAA
    ATTACAATTTATGCTGACGGTAGTGATGAATCTGACGCCATTCAAGCAATCAGTGATGTC
    TTATCAAAAGAAGGATTGACTAAATAA
    60
    120
    180
    240
    267

Protein[edit | edit source]

General[edit | edit source]

  • locus tag: SACOL1091 [new locus tag: SACOL_RS05570 ]
  • symbol: PtsH
  • description: phosphocarrier protein HPr
  • length: 88
  • theoretical pI: 4.26765
  • theoretical MW: 9495.67
  • GRAVY: -0.181818

Function[edit | edit source]

  • TIGRFAM:
    Signal transduction Signal transduction PTS phosphocarrier, HPr family (TIGR01003; HMM-score: 113.9)
  • TheSEED  :
    • Phosphocarrier protein of PTS system
    Carbohydrates Monosaccharides Fructose utilization  Phosphocarrier protein of PTS system
    and 2 more
    Carbohydrates Sugar alcohols Mannitol Utilization  Phosphocarrier protein of PTS system
    Regulation and Cell signaling Regulation and Cell signaling - no subcategory HPr catabolite repression system  Phosphocarrier protein of PTS system
  • PFAM:
    no clan defined PTS-HPr; PTS HPr component phosphorylation site (PF00381; HMM-score: 104)

Structure, modifications & cofactors[edit | edit source]

  • domains:
  • modifications:
  • cofactors:
  • effectors:

Localization[edit | edit source]

  • PSORTb: Cytoplasmic
    • Cytoplasmic Score: 10
    • Cytoplasmic Membrane Score: 0
    • Cellwall Score: 0
    • Extracellular Score: 0
    • Internal Helices: 0
  • LocateP: Intracellular
    • Prediction by SwissProt Classification: Cytoplasmic
    • Pathway Prediction: No pathway
    • Intracellular possibility: 1
    • Signal peptide possibility: -1
    • N-terminally Anchored Score: -1
    • Predicted Cleavage Site: No CleavageSite
  • SignalP: no predicted signal peptide
    • SP(Sec/SPI): 0.00474
    • TAT(Tat/SPI): 0.000465
    • LIPO(Sec/SPII): 0.001045
  • predicted transmembrane helices (TMHMM): 0

Accession numbers[edit | edit source]

Protein sequence[edit | edit source]

  • MEQNSYVIIDETGIHARPATMLVQTASKFDSDIQLEYNGKKVNLKSIMGVMSLGVGKDAEITIYADGSDESDAIQAISDVLSKEGLTK

Experimental data[edit | edit source]

  • experimentally validated: PeptideAtlas
  • protein localization: Cytoplasmic [1] [2] [3] [4]
  • quantitative data / protein copy number per cell: 2448 [5]
  • interaction partners:
    SACOL0452(ahpC)alkyl hydroperoxide reductase subunit C  [6] (data from MRSA252)
    SACOL1478(ald1)alanine dehydrogenase  [6] (data from MRSA252)
    SACOL2657(arcA)arginine deiminase  [6] (data from MRSA252)
    SACOL2656(arcB2)ornithine carbamoyltransferase  [6] (data from MRSA252)
    SACOL0557(cysK)cysteine synthase  [6] (data from MRSA252)
    SACOL0123(deoC1)deoxyribose-phosphate aldolase  [6] (data from MRSA252)
    SACOL1637(dnaK)molecular chaperone DnaK  [6] (data from MRSA252)
    SACOL0842(eno)phosphopyruvate hydratase  [6] (data from MRSA252)
    SACOL0634(eutD)phosphotransacetylase  [6] (data from MRSA252)
    SACOL1329(femC)glutamine synthetase  [6] (data from MRSA252)
    SACOL1782(fhs)formate--tetrahydrofolate ligase  [6] (data from MRSA252)
    SACOL1199(ftsZ)cell division protein FtsZ  [6] (data from MRSA252)
    SACOL0593(fusA)elongation factor G  [6] (data from MRSA252)
    SACOL0838(gapA1)glyceraldehyde 3-phosphate dehydrogenase  [6] (data from MRSA252)
    SACOL2145(glmS)glucosamine--fructose-6-phosphate aminotransferase  [6] (data from MRSA252)
    SACOL2016(groEL)chaperonin GroEL  [6] (data from MRSA252)
    SACOL0461(guaA)GMP synthase  [6] (data from MRSA252)
    SACOL0460(guaB)inosine-5'-monophosphate dehydrogenase  [6] (data from MRSA252)
    SACOL1741(icd)isocitrate dehydrogenase  [6] (data from MRSA252)
    SACOL1477(ilvA1)threonine dehydratase  [6] (data from MRSA252)
    SACOL0222(ldh1)L-lactate dehydrogenase  [6] (data from MRSA252)
    SACOL2618(ldh2)L-lactate dehydrogenase  [6] (data from MRSA252)
    SACOL2623(mqo2)malate:quinone oxidoreductase  [6] (data from MRSA252)
    SACOL0746(norR)MarR family transcriptional regulator  [6] (data from MRSA252)
    SACOL1102(pdhA)pyruvate dehydrogenase complex E1 component subunit alpha  [6] (data from MRSA252)
    SACOL2128(pdp)pyrimidine-nucleoside phosphorylase  [6] (data from MRSA252)
    SACOL0204(pflB)formate acetyltransferase  [6] (data from MRSA252)
    SACOL0966(pgi)glucose-6-phosphate isomerase  [6] (data from MRSA252)
    SACOL0839(pgk)phosphoglycerate kinase  [6] (data from MRSA252)
    SACOL0841(pgm)phosphoglyceromutase  [6] (data from MRSA252)
    SACOL1745(pyk)pyruvate kinase  [6] (data from MRSA252)
    SACOL0584(rplA)50S ribosomal protein L1  [6] (data from MRSA252)
    SACOL2238(rplD)50S ribosomal protein L4  [6] (data from MRSA252)
    SACOL2224(rplF)50S ribosomal protein L6  [6] (data from MRSA252)
    SACOL0585(rplJ)50S ribosomal protein L10  [6] (data from MRSA252)
    SACOL0586(rplL)50S ribosomal protein L7/L12  [6] (data from MRSA252)
    SACOL2212(rplQ)50S ribosomal protein L17  [6] (data from MRSA252)
    SACOL1257(rplS)50S ribosomal protein L19  [6] (data from MRSA252)
    SACOL1702(rplU)50S ribosomal protein L21  [6] (data from MRSA252)
    SACOL2237(rplW)50S ribosomal protein L23  [6] (data from MRSA252)
    SACOL0545(rplY)50S ribosomal protein L25/general stress protein Ctc  [6] (data from MRSA252)
    SACOL0589(rpoC)DNA-directed RNA polymerase subunit beta'  [6] (data from MRSA252)
    SACOL1274(rpsB)30S ribosomal protein S2  [6] (data from MRSA252)
    SACOL1769(rpsD)30S ribosomal protein S4  [6] (data from MRSA252)
    SACOL2222(rpsE)30S ribosomal protein S5  [6] (data from MRSA252)
    SACOL2225(rpsH)30S ribosomal protein S8  [6] (data from MRSA252)
    SACOL2206(rpsI)30S ribosomal protein S9  [6] (data from MRSA252)
    SACOL2240(rpsJ)30S ribosomal protein S10  [6] (data from MRSA252)
    SACOL2214(rpsK)30S ribosomal protein S11  [6] (data from MRSA252)
    SACOL1292(rpsO)30S ribosomal protein S15  [6] (data from MRSA252)
    SACOL2230(rpsQ)30S ribosomal protein S17  [6] (data from MRSA252)
    SACOL1610(sodA2)superoxide dismutase  [6] (data from MRSA252)
    SACOL0095(spa)immunoglobulin G binding protein A precursor  [6] (data from MRSA252)
    SACOL1262(sucC)succinyl-CoA synthetase subunit beta  [6] (data from MRSA252)
    SACOL1263(sucD)succinyl-CoA synthetase subunit alpha  [6] (data from MRSA252)
    SACOL1729(thrS)threonyl-tRNA synthetase  [6] (data from MRSA252)
    SACOL1722(tig)trigger factor  [6] (data from MRSA252)
    SACOL1276(tsf)elongation factor Ts  [6] (data from MRSA252)
    SACOL0594(tuf)elongation factor Tu  [6] (data from MRSA252)
    SACOL2104(upp)uracil phosphoribosyltransferase  [6] (data from MRSA252)
    SACOL0521hypothetical protein  [6] (data from MRSA252)
    SACOL0564pyridoxal biosynthesis lyase PdxS  [6] (data from MRSA252)
    SACOL0731LysR family transcriptional regulator  [6] (data from MRSA252)
    SACOL0742hypothetical protein  [6] (data from MRSA252)
    SACOL0944NADH dehydrogenase  [6] (data from MRSA252)
    SACOL1759universal stress protein  [6] (data from MRSA252)
    SACOL1801dipeptidase PepV  [6] (data from MRSA252)
    SACOL1952ferritins family protein  [6] (data from MRSA252)
    SACOL1992hypothetical protein  [6] (data from MRSA252)
    SACOL2173alkaline shock protein 23  [6] (data from MRSA252)
    SACOL2561hydroxymethylglutaryl-CoA synthase  [6] (data from MRSA252)
    SACOL25691-pyrroline-5-carboxylate dehydrogenase  [6] (data from MRSA252)

Expression & Regulation[edit | edit source]

Regulation[edit | edit source]

  • regulator:

Transcription pattern[edit | edit source]

Protein synthesis (provided by Aureolib)[edit | edit source]

Protein stability[edit | edit source]

  • half-life: no data available

Biological Material[edit | edit source]

Mutants[edit | edit source]

Expression vector[edit | edit source]

lacZ fusion[edit | edit source]

GFP fusion[edit | edit source]

two-hybrid system[edit | edit source]

FLAG-tag construct[edit | edit source]

Antibody[edit | edit source]

Other Information[edit | edit source]

You are kindly invited to share additional interesting facts.

Literature[edit | edit source]

References[edit | edit source]

  1. Dörte Becher, Kristina Hempel, Susanne Sievers, Daniela Zühlke, Jan Pané-Farré, Andreas Otto, Stephan Fuchs, Dirk Albrecht, Jörg Bernhardt, Susanne Engelmann, Uwe Völker, Jan Maarten van Dijl, Michael Hecker
    A proteomic view of an important human pathogen--towards the quantification of the entire Staphylococcus aureus proteome.
    PLoS One: 2009, 4(12);e8176
    [PubMed:19997597] [WorldCat.org] [DOI] (I e)
  2. Kristina Hempel, Jan Pané-Farré, Andreas Otto, Susanne Sievers, Michael Hecker, Dörte Becher
    Quantitative cell surface proteome profiling for SigB-dependent protein expression in the human pathogen Staphylococcus aureus via biotinylation approach.
    J Proteome Res: 2010, 9(3);1579-90
    [PubMed:20108986] [WorldCat.org] [DOI] (I p)
  3. Kristina Hempel, Florian-Alexander Herbst, Martin Moche, Michael Hecker, Dörte Becher
    Quantitative proteomic view on secreted, cell surface-associated, and cytoplasmic proteins of the methicillin-resistant human pathogen Staphylococcus aureus under iron-limited conditions.
    J Proteome Res: 2011, 10(4);1657-66
    [PubMed:21323324] [WorldCat.org] [DOI] (I p)
  4. Andreas Otto, Jan Maarten van Dijl, Michael Hecker, Dörte Becher
    The Staphylococcus aureus proteome.
    Int J Med Microbiol: 2014, 304(2);110-20
    [PubMed:24439828] [WorldCat.org] [DOI] (I p)
  5. Daniela Zühlke, Kirsten Dörries, Jörg Bernhardt, Sandra Maaß, Jan Muntel, Volkmar Liebscher, Jan Pané-Farré, Katharina Riedel, Michael Lalk, Uwe Völker, Susanne Engelmann, Dörte Becher, Stephan Fuchs, Michael Hecker
    Costs of life - Dynamics of the protein inventory of Staphylococcus aureus during anaerobiosis.
    Sci Rep: 2016, 6;28172
    [PubMed:27344979] [WorldCat.org] [DOI] (I e)
  6. 6.00 6.01 6.02 6.03 6.04 6.05 6.06 6.07 6.08 6.09 6.10 6.11 6.12 6.13 6.14 6.15 6.16 6.17 6.18 6.19 6.20 6.21 6.22 6.23 6.24 6.25 6.26 6.27 6.28 6.29 6.30 6.31 6.32 6.33 6.34 6.35 6.36 6.37 6.38 6.39 6.40 6.41 6.42 6.43 6.44 6.45 6.46 6.47 6.48 6.49 6.50 6.51 6.52 6.53 6.54 6.55 6.56 6.57 6.58 6.59 6.60 6.61 6.62 6.63 6.64 6.65 6.66 6.67 6.68 6.69 6.70 6.71 Artem Cherkasov, Michael Hsing, Roya Zoraghi, Leonard J Foster, Raymond H See, Nikolay Stoynov, Jihong Jiang, Sukhbir Kaur, Tian Lian, Linda Jackson, Huansheng Gong, Rick Swayze, Emily Amandoron, Farhad Hormozdiari, Phuong Dao, Cenk Sahinalp, Osvaldo Santos-Filho, Peter Axerio-Cilies, Kendall Byler, William R McMaster, Robert C Brunham, B Brett Finlay, Neil E Reiner
    Mapping the protein interaction network in methicillin-resistant Staphylococcus aureus.
    J Proteome Res: 2011, 10(3);1139-50
    [PubMed:21166474] [WorldCat.org] [DOI] (I p)

Relevant publications[edit | edit source]