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NCBI: 03-AUG-2016
⊟Summary[edit | edit source]
- organism: Staphylococcus aureus NCTC8325
- locus tag: SAOUHSC_02604
- pan locus tag?: SAUPAN005813000
- symbol: SAOUHSC_02604
- pan gene symbol?: —
- synonym:
- product: hypothetical protein
⊟Genome View[edit | edit source]
⊟Gene[edit | edit source]
⊟General[edit | edit source]
- type: CDS
- locus tag: SAOUHSC_02604
- symbol: SAOUHSC_02604
- product: hypothetical protein
- replicon: chromosome
- strand: -
- coordinates: 2392776..2393657
- length: 882
- essential: no DEG other strains
⊟Accession numbers[edit | edit source]
- Gene ID: 3921382 NCBI
- RefSeq: YP_501065 NCBI
- BioCyc: G1I0R-2456 BioCyc
- MicrobesOnline: 1291036 MicrobesOnline
⊟Phenotype[edit | edit source]
Share your knowledge and add information here. [edit]
⊟DNA sequence[edit | edit source]
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841ATGGCAGCTCAAGATCCTAGAACAAAATTTAAAACAACGGATTATGAAAAACAAGAACAA
GAGGTACCGGGTTTACAATCTGAAATGACGCCAGCACCCGATTGTGGCGAAACGTCTTAC
CAAGGTCATCAACGCTTACAAGGCTATAAAATATTAGTCACAGGTGGTGACTCAGCAATA
GGGCGTGCAGCAGCAATTGCGTATGCTAAAGAAGGTGCAGATGTAGCGATTAACTATCTT
CCGAGTGAAGAACAAGATGCACAAGAAGTACGCCAAGTGATTGAAGAAAGTGGTCAAAAG
GCAGTGTTAATTCCTGGTGATATAAGAGATGAACAGTTCAACTATGACCTTGTTGAACAA
GCATATCAACAATTAGGTGGCTTAGATAATGTTACTTTAGTTGCTGGACATCAACAGTAT
CATGATGATATTCATGGATTTACAACTGAGGCATTTACAGAAACATTTGAAACGAATGTC
TATCCGCTATTTTGGACAGTTCAAAAAGCATTGGAATATTTAAAACCGGGTGCGTCAATT
ACAACGACATCATCTGTACAAGGTTATAATCCTAGTCCTATTCTTCATGATTATGCCGCT
TCAAAAGCAGCAATTATTTCATTAACTAAAAGTTTTTCAGAAGAATTAGGACCAAAAGGA
ATTAGAGTGAACTGTGTAGCGCCTGGTCCATTCTGGTCACCATTACAAATTTCTGGTGGA
CAACCTCAAAGTAAAATCCCAACATTTGGTCAAAAAACACCTTTAGGTCGTGCAGGTCAA
CCTGTTGAGTTATGTGGAACTTATGTGCTATTAGCGTCAGAAGAATCAAGTTATACAACC
GGACAAGTGTTCGGTGTTAGCGGTGGAGTGCAAATAGATTAG60
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⊟Protein[edit | edit source]
⊟General[edit | edit source]
- locus tag: SAOUHSC_02604
- symbol: SAOUHSC_02604
- description: hypothetical protein
- length: 293
- theoretical pI: 4.3889
- theoretical MW: 31734
- GRAVY: -0.395563
⊟Function[edit | edit source]
- TIGRFAM: Fatty acid and phospholipid metabolism Biosynthesis 3-oxoacyl-[acyl-carrier-protein] reductase (TIGR01830; EC 1.1.1.100; HMM-score: 139.7)Unknown function Enzymes of unknown specificity SDR family mycofactocin-dependent oxidoreductase (TIGR03971; EC 1.1.99.-; HMM-score: 127.1)Energy metabolism Fermentation acetoin reductases (TIGR02415; EC 1.1.1.-; HMM-score: 117.9)and 10 moreEnergy metabolism Biosynthesis and degradation of polysaccharides 2-deoxy-D-gluconate 3-dehydrogenase (TIGR01832; EC 1.1.1.125; HMM-score: 104.6)2-hydroxycyclohexanecarboxyl-CoA dehydrogenase (TIGR03206; EC 1.1.1.-; HMM-score: 94.5)3-hydroxybutyrate dehydrogenase (TIGR01963; HMM-score: 92.4)acetoacetyl-CoA reductase (TIGR01829; EC 1.1.1.36; HMM-score: 90.5)Fatty acid and phospholipid metabolism Biosynthesis putative 3-oxoacyl-(acyl-carrier-protein) reductase (TIGR01831; HMM-score: 90.1)cis-2,3-dihydrobiphenyl-2,3-diol dehydrogenase (TIGR03325; EC 1.3.1.56; HMM-score: 82.5)2,3-dihydro-2,3-dihydroxybenzoate dehydrogenase (TIGR04316; EC 1.3.1.28; HMM-score: 77.8)rhamnulose-1-phosphate aldolase/alcohol dehydrogenase (TIGR02632; EC 1.1.1.1,4.1.2.19; HMM-score: 72.6)Unknown function Enzymes of unknown specificity SDR family mycofactocin-dependent oxidoreductase (TIGR04504; EC 1.1.99.-; HMM-score: 62.5)pteridine reductase (TIGR02685; EC 1.5.1.33; HMM-score: 56.6)
- TheSEED :
- Putative oxidoreductase
- PFAM: NADP_Rossmann (CL0063) adh_short_C2; Enoyl-(Acyl carrier protein) reductase (PF13561; HMM-score: 177.7)and 4 moreadh_short; short chain dehydrogenase (PF00106; HMM-score: 142)KR; KR domain (PF08659; HMM-score: 33.2)Epimerase; NAD dependent epimerase/dehydratase family (PF01370; HMM-score: 19.6)GDP_Man_Dehyd; GDP-mannose 4,6 dehydratase (PF16363; HMM-score: 11.5)
⊟Structure, modifications & cofactors[edit | edit source]
- domains:
- modifications:
- cofactors:
- effectors:
⊟Localization[edit | edit source]
- PSORTb: Cytoplasmic
- Cytoplasmic Score: 9.97
- Cytoplasmic Membrane Score: 0
- Cellwall Score: 0.01
- Extracellular Score: 0.02
- 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): 0.072169
- TAT(Tat/SPI): 0.003634
- LIPO(Sec/SPII): 0.002331
- predicted transmembrane helices (TMHMM): 0
⊟Accession numbers[edit | edit source]
⊟Protein sequence[edit | edit source]
- MAAQDPRTKFKTTDYEKQEQEVPGLQSEMTPAPDCGETSYQGHQRLQGYKILVTGGDSAIGRAAAIAYAKEGADVAINYLPSEEQDAQEVRQVIEESGQKAVLIPGDIRDEQFNYDLVEQAYQQLGGLDNVTLVAGHQQYHDDIHGFTTEAFTETFETNVYPLFWTVQKALEYLKPGASITTTSSVQGYNPSPILHDYAASKAAIISLTKSFSEELGPKGIRVNCVAPGPFWSPLQISGGQPQSKIPTFGQKTPLGRAGQPVELCGTYVLLASEESSYTTGQVFGVSGGVQID
⊟Experimental data[edit | edit source]
- experimentally validated: PeptideAtlas [1] [2]
- protein localization: data available for COL
- quantitative data / protein copy number per cell: data available for COL
- interaction partners:
⊟Expression & Regulation[edit | edit source]
⊟Operon[edit | edit source]
⊟Regulation[edit | edit source]
- regulator: SigB* (activation) regulon
⊟Transcription pattern[edit | edit source]
- S.aureus Expression Data Browser: [4] Multi-gene expression profiles
⊟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]
- ↑ Maren Depke, Stephan Michalik, Alexander Rabe, Kristin Surmann, Lars Brinkmann, Nico Jehmlich, Jörg Bernhardt, Michael Hecker, Bernd Wollscheid, Zhi Sun, Robert L Moritz, Uwe Völker, Frank Schmidt
A peptide resource for the analysis of Staphylococcus aureus in host-pathogen interaction studies.
Proteomics: 2015, 15(21);3648-61
[PubMed:26224020] [WorldCat.org] [DOI] (I p) - ↑ Stephan Michalik, Maren Depke, Annette Murr, Manuela Gesell Salazar, Ulrike Kusebauch, Zhi Sun, Tanja C Meyer, Kristin Surmann, Henrike Pförtner, Petra Hildebrandt, Stefan Weiss, Laura Marcela Palma Medina, Melanie Gutjahr, Elke Hammer, Dörte Becher, Thomas Pribyl, Sven Hammerschmidt, Eric W Deutsch, Samuel L Bader, Michael Hecker, Robert L Moritz, Ulrike Mäder, Uwe Völker, Frank Schmidt
A global Staphylococcus aureus proteome resource applied to the in vivo characterization of host-pathogen interactions.
Sci Rep: 2017, 7(1);9718
[PubMed:28887440] [WorldCat.org] [DOI] (I e) - ↑ Markus Bischoff, Paul Dunman, Jan Kormanec, Daphne Macapagal, Ellen Murphy, William Mounts, Brigitte Berger-Bächi, Steven Projan
Microarray-based analysis of the Staphylococcus aureus sigmaB regulon.
J Bacteriol: 2004, 186(13);4085-99
[PubMed:15205410] [WorldCat.org] [DOI] (P p) - ↑ 4.0 4.1 Ulrike Mäder, Pierre Nicolas, Maren Depke, Jan Pané-Farré, Michel Debarbouille, Magdalena M van der Kooi-Pol, Cyprien Guérin, Sandra Dérozier, Aurelia Hiron, Hanne Jarmer, Aurélie Leduc, Stephan Michalik, Ewoud Reilman, Marc Schaffer, Frank Schmidt, Philippe Bessières, Philippe Noirot, Michael Hecker, Tarek Msadek, Uwe Völker, Jan Maarten van Dijl
Staphylococcus aureus Transcriptome Architecture: From Laboratory to Infection-Mimicking Conditions.
PLoS Genet: 2016, 12(4);e1005962
[PubMed:27035918] [WorldCat.org] [DOI] (I e)