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View Structure Prediction Details

Protein: NAA10_MOUSE
Organism: Mus musculus
Length: 235 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 NAA10_MOUSE.

Description E-value Query
Range
Subject
Range
gi|34881754, gi|... - gi|34881754|ref|XP_343843.1| PREDICTED: similar to N-terminal acetyltransferase complex ARD1 subunit...
219.0 [0..1] [225..1]
NAA10_BOVIN - N-alpha-acetyltransferase 10 OS=Bos taurus GN=NAA10 PE=2 SV=1
216.0 [0..1] [225..1]
NAA10 - N(alpha)-acetyltransferase 10, NatA catalytic subunit
gi|109132766 - gi|109132766|ref|XP_001089215.1| PREDICTED: similar to N-acetyltransferase, homolog of S. cerevisiae...
HGNC:18704|MIM:3... - 10, NatA catalytic subunit
gi|117646630, gi... - gi|117646630|emb|CAL37430.1| hypothetical protein [synthetic construct], gi|117646470|emb|CAL38702.1...
215.0 [0..1] [225..1]
gi|74008789 - gi|74008789|ref|XP_853470.1| PREDICTED: similar to N-acetyltransferase, homolog of S. cerevisiae ARD...
214.0 [0..1] [225..1]
gi|51773477 - gi|51773477|emb|CAF25308.1| N-terminal acetyltransferase complex ARD1 subunit homolog [Mus musculus]
211.0 [0..6] [225..1]
gi|109074369 - gi|109074369|ref|XP_001090920.1| PREDICTED: similar to N-acetyltransferase, homolog of S. cerevisiae...
203.0 [0..1] [235..1]
gi|182890674, gi... - gi|47086985|ref|NP_998499.1| alpha-N-acetyltransferase 1A [Danio rerio], gi|31419462|gb|AAH53180.1| ...
202.0 [0..1] [231..1]

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Predicted Domain #1
Region A:
Residues: [1-151]
      1          11         21         31         41         51         
      |          |          |          |          |          |          
    1 MNIRNARPED LMNMQHCNLL CLPENYQMKY YFYHGLSWPQ LSYIAEDENG KIVGYVLAKM  60
   61 EEDPDDVPHG HITSLAVKRS HRRLGLAQKL MDQASRAMIE NFNAKYVSLH VRKSNRAALH 120
  121 LYSNTLNFQI SEVEPKYYAD GEDAYAMKRD L

[Run NCBI BLAST on this sequence.]

Detection Method: PSI-BLAST
Confidence: 23.69897
Match: 1yr0A
Description: Crystal structure of phosphinothricin acetyltransferase from agrobacterium tumefaciens
Matching Structure (courtesy of the PDB):

Predicted functions:

Term Confidence Notes
N-acetyltransferase activity 6.09290029352595 bayes_pls_golite062009
N-acyltransferase activity 6.08913516066746 bayes_pls_golite062009
acetyltransferase activity 5.86411968036951 bayes_pls_golite062009
histone acetyltransferase activity 5.85159161781386 bayes_pls_golite062009
lysine N-acetyltransferase activity 5.85159161781386 bayes_pls_golite062009
acyltransferase activity 4.72881921515185 bayes_pls_golite062009
transferase activity, transferring acyl groups 4.70793039001114 bayes_pls_golite062009
transferase activity, transferring acyl groups other than amino-acyl groups 4.69837915971204 bayes_pls_golite062009
transferase activity 3.5778020729894 bayes_pls_golite062009
myristoyltransferase activity 3.50779447340192 bayes_pls_golite062009
glycylpeptide N-tetradecanoyltransferase activity 3.50779447340192 bayes_pls_golite062009
3.29707445389818 bayes_pls_golite062009
catalytic activity 1.97933499002461 bayes_pls_golite062009
binding 1.07749536895426 bayes_pls_golite062009
nucleic acid binding 0.522132859536345 bayes_pls_golite062009
protein binding 0.098756769132141 bayes_pls_golite062009
transcription regulator activity 0.0766125702622449 bayes_pls_golite062009

Predicted Domain #2
Region A:
Residues: [152-235]
      1          11         21         31         41         51         
      |          |          |          |          |          |          
    1 TQMADELRRH LELKEKGKHM VLAALENKAE NKGNVLLSSG EACREEKGLA AEDSGGDSKD  60
   61 LSEVSETTES TDVKDSSEAS DSAS

[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