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View Structure Prediction Details

Protein: CLSY1_ARATH
Organism: Arabidopsis thaliana
Length: 1256 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

No multiple sequence alignment data found for CLSY1_ARATH.

Predicted Domain #1
Region A:
Residues: [1-85]
      1          11         21         31         41         51         
      |          |          |          |          |          |          
    1 MKRKHYFEFN HPFNPCPFEV FCWGTWKAVE YLRIENGTMT MRLLENGQVL DDIKPFQRLR  60
   61 IRSRKATLID CTSFLRPGID VCVLY

[Run NCBI BLAST on this sequence.]

Detection Method: deduced

Shown below is our most confident de novo (Rosetta) prediction for this domain.
Click here to view all matches.

Found no confident structure predictions for this domain.

Predicted Domain #2
Region A:
Residues: [86-388]
      1          11         21         31         41         51         
      |          |          |          |          |          |          
    1 QRDEETPEPV WVDARVLSIE RKPHESECLC TFHVSVYIDQ GCIGLEKHRM NKVPVLVGLN  60
   61 EIAILQKFCK EQSLDRYYRW RYSEDCSSLV KTRLNLGKFL PDLTWLLVTS VLKNIVFQIR 120
  121 TVHEKMVYQI VTDEDCEGSS SSLSAMNITV EDGVVMSKVV LFNPAEDTCQ DSDVKEEIEE 180
  181 EVMELRRSKR RSGRPERYGD SEIQPDSKDG WVRMMPYRYN IWNVSSDDDD EEEDCEDDKD 240
  241 TDDDLYLPLS HLLRKKGSKK GFSKDKQREI VLVDKTERKK RKKTEGFSRS CELSVIPFTP 300
  301 VFE

[Run NCBI BLAST on this sequence.]

Detection Method: PSI-BLAST
Confidence: 7.0
Match: 1i84S
Description: Heavy meromyosin subfragment
Matching Structure (courtesy of the PDB):

Predicted Domain #3
Region A:
Residues: [389-540]
      1          11         21         31         41         51         
      |          |          |          |          |          |          
    1 PIPLEQFGLN ANSLCGGVSG NLMDEIDKYR SKAAKYGKKK KKKIEMEEME SDLGWNGPIG  60
   61 NVVHKRNGPH SRIRSVSRET GVSEEPQIYK KRTLSAGAYN KLIDSYMSRI DSTIAAKDKA 120
  121 TNVVEQWQGL KNPASFSIEA EERLSEEEED DG

[Run NCBI BLAST on this sequence.]

Detection Method: deduced

Shown below is our most confident de novo (Rosetta) prediction for this domain.
Click here to view all matches.

Found no confident structure predictions for this domain.

Predicted Domain #4
Region A:
Residues: [541-642]
      1          11         21         31         41         51         
      |          |          |          |          |          |          
    1 ETSENEILWR EMELCLASSY ILDDHEVRVD NEAFHKATCD CEHDYELNEE IGMCCRLCGH  60
   61 VGTEIKHVSA PFARHKKWTT ETKQINEDDI NTTIVNQDGV ES

[Run NCBI BLAST on this sequence.]

Detection Method: deduced

Shown below is our most confident de novo (Rosetta) prediction for this domain.
Click here to view all matches.

Found no confident structure predictions for this domain.

Predicted Domain #5
Region A:
Residues: [643-1256]
      1          11         21         31         41         51         
      |          |          |          |          |          |          
    1 HTFTIPVASS DMPSAEESDN VWSLIPQLKR KLHLHQKKAF EFLWKNLAGS VVPAMMDPSS  60
   61 DKIGGCVVSH TPGAGKTFLI IAFLASYLKI FPGKRPLVLA PKTTLYTWYK EFIKWEIPVP 120
  121 VHLLHGRRTY CMSKEKTIQF EGIPKPSQDV MHVLDCLDKI QKWHAQPSVL VMGYTSFLTL 180
  181 MREDSKFAHR KYMAKVLRES PGLLVLDEGH NPRSTKSRLR KALMKVDTDL RILLSGTLFQ 240
  241 NNFCEYFNTL CLARPKFVHE VLVELDKKFQ TNQAEQKAPH LLENRARKFF LDIIAKKIDT 300
  301 KVGDERLQGL NMLRNMTSGF IDNYEGSGSG SGDVLPGLQI YTLLMNSTDV QHKSLTKLQN 360
  361 IMSTYHGYPL ELELLITLAA IHPWLVKTTT CCAKFFNPQE LLEIEKLKHD AKKGSKVMFV 420
  421 LNLVFRVVKR EKILIFCHNI APIRLFLELF ENVFRWKRGR ELLTLTGDLE LFERGRVIDK 480
  481 FEEPGGQSRV LLASITACAE GISLTAASRV IMLDSEWNPS KTKQAIARAF RPGQQKVVYV 540
  541 YQLLSRGTLE EDKYRRTTWK EWVSSMIFSE EFVEDPSQWQ AEKIEDDVLR EIVEEDKVKS 600
  601 FHMIMKNEKA STGG

[Run NCBI BLAST on this sequence.]

Detection Method: PSI-BLAST
Confidence: 73.0
Match: 1z3iX
Description: Structure of the SWI2/SNF2 chromatin remodeling domain of eukaryotic Rad54
Matching Structure (courtesy of the PDB):

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