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View Structure Prediction Details

Protein: ATB16_ARATH
Organism: Arabidopsis thaliana
Length: 294 amino acids
Reference: Drew K, et al. (2011) The proteome folding project: Proteome-scale prediction of structure and function. Genome Res. 2011 Sep 16



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Top Sequence Alignment Hits

Listed below are up to the top 10 sequence alignment matches, by species, for the PSI-BLAST search against the protein sequence for ATB16_ARATH.

Description E-value Query
Range
Subject
Range
gi|15450982, gi|... - gi|22136478|gb|AAM91317.1| homeodomain-like protein [Arabidopsis thaliana], gi|15450982|gb|AAK96762....
209.0 [0..1] [294..1]

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Predicted Domain #1
Region A:
Residues: [1-128]
      1          11         21         31         41         51         
      |          |          |          |          |          |          
    1 MKRLSSSDSM CGLISTSTDE QSPRGYGSNY QSMLEGYDED ATLIEEYSGN HHHMGLSEKK  60
   61 RRLKVDQVKA LEKNFELENK LEPERKTKLA QELGLQPRQV AVWFQNRRAR WKTKQLEKDY 120
  121 GVLKGQYD

[Run NCBI BLAST on this sequence.]

Detection Method: PSI-BLAST
Confidence: 21.69897
Match: 1pufA
Description: Crystal Structure of HoxA9 and Pbx1 homeodomains bound to DNA
Matching Structure (courtesy of the PDB):

Predicted functions:

Term Confidence Notes
binding 0.334577365229545 bayes_pls_golite062009
transcription regulator activity 0.0696342306231097 bayes_pls_golite062009

Predicted Domain #2
Region A:
Residues: [129-294]
      1          11         21         31         41         51         
      |          |          |          |          |          |          
    1 SLRHNFDSLR RDNDSLLQEI SKIKAKVNGE EDNNNNKAIT EGVKEEEVHK TDSIPSSPLQ  60
   61 FLEHSSGFNY RRSFTDLRDL LPNSTVVEAG SSDSCDSSAV LNDETSSDNG RLTPPVTVTG 120
  121 GSFLQFVKTE QTEDHEDFLS GEEACGFFSD EQPPSLHWYS ASDHWT

[Run NCBI BLAST on this sequence.]

Detection Method: MSA

Shown below is our most confident prediction for this domain.
Click here to view all matches.

Found no confident structure predictions for this domain.


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