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Protein Overview: FUM1

Protein Complex Data

Mass Spectrometry Data

The following runs contain data for this protein:

  BAIT COMMENTS PUBLICATION
View Run CEP3 sample cbf3 from feb 2005 Sandall S, et all (2006)
View Run MLP2 #31 Asynchronous Prep (Protease cleavage) Keck JM, et al. (2011)

Yeast Two-Hybrid Data

The following interactions contain this protein:

NOT SHOWING SINGLE HITS. [ Show Single Hits ]

[View our yeast two-hybrid interpretation guidelines.]

No yeast two-hybrid interactions found for this protein.

Microscopy / Localization Data

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  PROTEIN(S) PUBLICATION
View Data FUM1 Huh WK, et al. (2003)

Protein Structure Data


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[View Top Sequence Alignments] [Show Ginzu Version Information]

Domains predicted:

#   Region(s) Method Confidence Match Description
1 View Details [1..193]
[232..314]
[358..407]
PSI-BLAST 11000.0 Fumarase
2 View Details [194..231]
[315..357]
[408..428]
PSI-BLAST 11000.0 Fumarase
3 View Details [429..488] PSI-BLAST 11000.0 Fumarase

Functions predicted (by domain):

# Gene Ontology predictions
1
Term Confidence Notes
  • fumarate hydratase activity
  • 4.22589182982073 bayes_pls_golite062009
  • catalytic activity
  • 2.51282259572665 bayes_pls_golite062009
  • lyase activity
  • 2.31268471569846 bayes_pls_golite062009
  • carbon-nitrogen lyase activity
  • 2.2046475419807 bayes_pls_golite062009
  • histidine ammonia-lyase activity
  • 0.948129236753279 bayes_pls_golite062009
  • amidine-lyase activity
  • 0.901614580251298 bayes_pls_golite062009
  • binding
  • 0.854855116369286 bayes_pls_golite062009
  • argininosuccinate lyase activity
  • 0.617974375213548 bayes_pls_golite062009
  • ammonia-lyase activity
  • 0.491229595527877 bayes_pls_golite062009
    2 No functions predicted.
    3 No functions predicted.




    Philius Transmembrane Prediction:

    Protein predicted to be: GLOBULAR (No transmembrane regions or signal peptide)
    Confidence of classification: 0.99

    Source: Reynolds et al. (2008)


    YRC Informatics Platform - Version 3.0
    Created and Maintained by: Michael Riffle