Difference between revisions of "Lip"

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* '''Swiss prot entry:'''
 
* '''Swiss prot entry:'''
  
* '''KEGG entry:''' [http://www.genome.jp/dbget-bin/www_bget?bsu+BSU02700]
+
* '''KEGG entry:''' [http://www.genome.jp/dbget-bin/www_bget?bsu:BSU02700]
  
 
* '''E.C. number:'''
 
* '''E.C. number:'''

Revision as of 02:58, 25 June 2009

  • Description: extracellular lipase

Gene name lip
Synonyms lipA
Essential no
Product extracellular lipase
Function lipid degradation
MW, pI 22 kDa, 10.059
Gene length, protein length 636 bp, 212 aa
Immediate neighbours ansZ, yczC
Get the DNA and protein sequences
(Barbe et al., 2009)
Genetic context
Lip context.gif
This image was kindly provided by SubtiList




The gene

Basic information

  • Locus tag: BSU02700

Phenotypes of a mutant

Database entries

  • DBTBS entry: [1]
  • SubtiList entry: [2]

Additional information

The protein

Basic information/ Evolution

  • Catalyzed reaction/ biological activity:
  • Protein family:
  • Paralogous protein(s): LipB

Extended information on the protein

  • Kinetic information:
  • Domains:
  • Modification:
  • Cofactor(s):
  • Effectors of protein activity:
  • Interactions:
  • Localization:

Database entries

  • Swiss prot entry:
  • KEGG entry: [3]
  • E.C. number:

Additional information

Expression and regulation

  • Operon:
  • Regulation:
  • Regulatory mechanism:
  • Additional information:

Biological materials

  • Mutant:
  • Expression vector:
  • lacZ fusion:
  • GFP fusion:
  • two-hybrid system:
  • Antibody:

Labs working on this gene/protein

Your additional remarks

References

Thijs R H M Kouwen, René van der Ploeg, Haike Antelmann, Michael Hecker, Georg Homuth, Ulrike Mäder, Jan Maarten van Dijl
Overflow of a hyper-produced secretory protein from the Bacillus Sec pathway into the Tat pathway for protein secretion as revealed by proteogenomics.
Proteomics: 2009, 9(4);1018-32
[PubMed:19180538] [WorldCat.org] [DOI] (I p)

Ykelien L Boersma, Tjaard Pijning, Margriet S Bosma, Almer M van der Sloot, Luís F Godinho, Melloney J Dröge, Remko T Winter, Gertie van Pouderoyen, Bauke W Dijkstra, Wim J Quax
Loop grafting of Bacillus subtilis lipase A: inversion of enantioselectivity.
Chem Biol: 2008, 15(8);782-9
[PubMed:18721749] [WorldCat.org] [DOI] (P p)

Ykelien L Boersma, Melloney J Dröge, Almer M van der Sloot, Tjaard Pijning, Robbert H Cool, Bauke W Dijkstra, Wim J Quax
A novel genetic selection system for improved enantioselectivity of Bacillus subtilis lipase A.
Chembiochem: 2008, 9(7);1110-5
[PubMed:18383241] [WorldCat.org] [DOI] (I p)

Melloney J Dröge, Ykelien L Boersma, Gertie van Pouderoyen, Titia E Vrenken, Carsten J Rüggeberg, Manfred T Reetz, Bauke W Dijkstra, Wim J Quax
Directed evolution of Bacillus subtilis lipase A by use of enantiomeric phosphonate inhibitors: crystal structures and phage display selection.
Chembiochem: 2006, 7(1);149-57
[PubMed:16342303] [WorldCat.org] [DOI] (P p)

Helga Westers, Peter G Braun, Lidia Westers, Haike Antelmann, Michael Hecker, Jan D H Jongbloed, Hirofumi Yoshikawa, Teruo Tanaka, Jan Maarten van Dijl, Wim J Quax
Genes involved in SkfA killing factor production protect a Bacillus subtilis lipase against proteolysis.
Appl Environ Microbiol: 2005, 71(4);1899-908
[PubMed:15812018] [WorldCat.org] [DOI] (P p)

Thorsten Eggert, Ulf Brockmeier, Melloney J Dröge, Wim J Quax, Karl-Erich Jaeger
Extracellular lipases from Bacillus subtilis: regulation of gene expression and enzyme activity by amino acid supply and external pH.
FEMS Microbiol Lett: 2003, 225(2);319-24
[PubMed:12951259] [WorldCat.org] [DOI] (P p)

Melloney J Dröge, Carsten J Rüggeberg, Almer M van der Sloot, Judith Schimmel, Dolf Swaving Dijkstra, Raymond M D Verhaert, Manfred T Reetz, Wim J Quax
Binding of phage displayed Bacillus subtilis lipase A to a phosphonate suicide inhibitor.
J Biotechnol: 2003, 101(1);19-28
[PubMed:12523966] [WorldCat.org] [DOI] (P p)

Jan D H Jongbloed, Haike Antelmann, Michael Hecker, Reindert Nijland, Sierd Bron, Ulla Airaksinen, Frens Pries, Wim J Quax, Jan Maarten van Dijl, Peter G Braun
Selective contribution of the twin-arginine translocation pathway to protein secretion in Bacillus subtilis.
J Biol Chem: 2002, 277(46);44068-78
[PubMed:12218047] [WorldCat.org] [DOI] (P p)