Difference between revisions of "Sandbox"

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* '''Description:''' fatty acid degradation, similar to proline dehydrogenase <br/><br/>
+
* '''Description:''' 3-hydroxyacyl-CoA dehydrogenase (acetoacetyl-CoA) <br/><br/>
  
 
{| align="right" border="1" cellpadding="2"  
 
{| align="right" border="1" cellpadding="2"  
 
|-
 
|-
 
|style="background:#ABCDEF;" align="center"|'''Gene name'''
 
|style="background:#ABCDEF;" align="center"|'''Gene name'''
|''fadM''
+
|''fadN''
 
|-
 
|-
|style="background:#ABCDEF;" align="center"| '''Synonyms''' || ''yusM''
+
|style="background:#ABCDEF;" align="center"| '''Synonyms''' || ''yusL''
 
|-
 
|-
 
|style="background:#ABCDEF;" align="center"| '''Essential''' || no  
 
|style="background:#ABCDEF;" align="center"| '''Essential''' || no  
 
|-
 
|-
|style="background:#ABCDEF;" align="center"| '''Product''' || unknown 
+
|style="background:#ABCDEF;" align="center"| '''Product''' || 3-hydroxyacyl-CoA dehydrogenase (acetoacetyl-CoA)
 
|-
 
|-
 
|style="background:#ABCDEF;" align="center"|'''Function''' || fatty acid degradation
 
|style="background:#ABCDEF;" align="center"|'''Function''' || fatty acid degradation
 
|-
 
|-
|style="background:#ABCDEF;" align="center"| '''MW, pI''' || 34 kDa, 9.377  
+
|style="background:#ABCDEF;" align="center"| '''MW, pI''' || 89 kDa, 6.53  
 
|-
 
|-
|style="background:#ABCDEF;" align="center"| '''Gene length, protein length''' || 906 bp, 302 aa  
+
|style="background:#ABCDEF;" align="center"| '''Gene length, protein length''' || 2445 bp, 815 aa  
 
|-
 
|-
|style="background:#ABCDEF;" align="center"|'''Immediate neighbours''' || ''[[fadN]]'', ''[[yusN]]''
+
|style="background:#ABCDEF;" align="center"|'''Immediate neighbours''' || ''[[fadA]]'', ''[[fadM]]''
 
|-
 
|-
 
|colspan="2" style="background:#FAF8CC;" align="center"|'''Hier soll was neues rein'''
 
|colspan="2" style="background:#FAF8CC;" align="center"|'''Hier soll was neues rein'''
 
|-
 
|-
|colspan="2" | '''Genetic context''' <br/> [[Image:yusM_context.gif]]
+
|colspan="2" | '''Genetic context''' <br/> [[Image:yusL_context.gif]]
 
  <div align="right"> <small>This image was kindly provided by [http://genolist.pasteur.fr/SubtiList/ SubtiList]</small></div>
 
  <div align="right"> <small>This image was kindly provided by [http://genolist.pasteur.fr/SubtiList/ SubtiList]</small></div>
 
|-
 
|-
Line 43: Line 43:
 
* '''DBTBS entry:''' [http://dbtbs.hgc.jp/COG/prom/yusMLKJ.html]
 
* '''DBTBS entry:''' [http://dbtbs.hgc.jp/COG/prom/yusMLKJ.html]
  
* '''SubtiList entry:''' [http://genolist.pasteur.fr/SubtiList/genome.cgi?gene_detail+BG14025]
+
* '''SubtiList entry:''' [http://genolist.pasteur.fr/SubtiList/genome.cgi?gene_detail+BG14024]
  
 
=== Additional information===
 
=== Additional information===
Line 56: Line 56:
 
* '''Protein family:'''
 
* '''Protein family:'''
  
* '''Paralogous protein(s):''' [[YcgM]]
+
* '''Paralogous protein(s):'''
  
 
=== Extended information on the protein ===
 
=== Extended information on the protein ===
Line 80: Line 80:
 
* '''Swiss prot entry:'''
 
* '''Swiss prot entry:'''
  
* '''KEGG entry:''' [http://www.genome.jp/dbget-bin/www_bget?bsu+BSU32850]
+
* '''KEGG entry:''' [http://www.genome.jp/dbget-bin/www_bget?bsu+BSU32840]
  
 
* '''E.C. number:'''
 
* '''E.C. number:'''
Line 92: Line 92:
 
* '''[[Sigma factor]]:'''  
 
* '''[[Sigma factor]]:'''  
  
* '''Regulation:'''  
+
* '''Regulation:''' repressed by glucose (4.5-fold) [http://www.ncbi.nlm.nih.gov/pubmed/12850135 PubMed] 
  
 
* '''Regulatory mechanism:'''  
 
* '''Regulatory mechanism:'''  
Line 118: Line 118:
 
=References=
 
=References=
  
 +
# Blencke et al. (2003) Transcriptional profiling of gene expression in response to glucose in ''Bacillus subtilis'': regulation of the central metabolic pathways. ''Metab Eng.'' '''5:''' 133-149 [http://www.ncbi.nlm.nih.gov/pubmed/12850135 PubMed]
 
# Matsuoka H, Hirooka K, Fujita Y. (2007) Organization and function of the YsiA regulon of Bacillus subtilis involved in fatty acid degradation. ''J Biol Chem. '' '''Feb 23;282(8):''' 5180-94. [http://www.ncbi.nlm.nih.gov/sites/entrez/17189250 PubMed]
 
# Matsuoka H, Hirooka K, Fujita Y. (2007) Organization and function of the YsiA regulon of Bacillus subtilis involved in fatty acid degradation. ''J Biol Chem. '' '''Feb 23;282(8):''' 5180-94. [http://www.ncbi.nlm.nih.gov/sites/entrez/17189250 PubMed]
 
# Author1, Author2 & Author3 (year) Title ''Journal'' '''volume:''' page-page. [http://www.ncbi.nlm.nih.gov/sites/entrez/PMID PubMed]
 
# Author1, Author2 & Author3 (year) Title ''Journal'' '''volume:''' page-page. [http://www.ncbi.nlm.nih.gov/sites/entrez/PMID PubMed]

Revision as of 17:52, 15 April 2009

  • Description: 3-hydroxyacyl-CoA dehydrogenase (acetoacetyl-CoA)

Gene name fadN
Synonyms yusL
Essential no
Product 3-hydroxyacyl-CoA dehydrogenase (acetoacetyl-CoA)
Function fatty acid degradation
MW, pI 89 kDa, 6.53
Gene length, protein length 2445 bp, 815 aa
Immediate neighbours fadA, fadM
Hier soll was neues rein
Genetic context
YusL context.gif
This image was kindly provided by SubtiList



The gene

Basic information

  • Coordinates:

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):

Extended information on the protein

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

Database entries

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

Additional information

Expression and regulation

  • Operon:
  • Regulation: repressed by glucose (4.5-fold) PubMed
  • 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

  1. Blencke et al. (2003) Transcriptional profiling of gene expression in response to glucose in Bacillus subtilis: regulation of the central metabolic pathways. Metab Eng. 5: 133-149 PubMed
  2. Matsuoka H, Hirooka K, Fujita Y. (2007) Organization and function of the YsiA regulon of Bacillus subtilis involved in fatty acid degradation. J Biol Chem. Feb 23;282(8): 5180-94. PubMed
  3. Author1, Author2 & Author3 (year) Title Journal volume: page-page. PubMed