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D-I-TASSER results for P52757-D1

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 Input Sequence in FASTA format
    >P52757 (266 residues)
    MAASSNSSLSGSSVSSDAEEYQPPIWKSYLYQLQQEAPRPKRIICPREVENRPKYYGREFHGIISREQADELLGGVEGAYILRESQRQPGCYTLALRFGNQTLNYRLFHDGKHFVGEKRFESIHDLVTDGLITLYIETKAAEYISKMTTNPIYEHIGYATLLREKVSRRLSRSKNEPRKTNVTHEEHTAVEKISSLVRRAALTHNDNHFNYEKTHNFKVHTFRGPHWCEYCANFMWGLIAQGVRCSDCGLNVHKQCSKHVPNDCQP

 Predicted Secondary Structure
    Sequence                    20                  40                  60                  80                  100                 120                 140                 160                 180                 200                 220                 240                 260
                       |                   |                   |                   |                   |                   |                   |                   |                   |                   |                   |                   |                   |
    MAASSNSSLSGSSVSSDAEEYQPPIWKSYLYQLQQEAPRPKRIICPREVENRPKYYGREFHGIISREQADELLGGVEGAYILRESQRQPGCYTLALRFGNQTLNYRLFHDGKHFVGEKRFESIHDLVTDGLITLYIETKAAEYISKMTTNPIYEHIGYATLLREKVSRRLSRSKNEPRKTNVTHEEHTAVEKISSLVRRAALTHNDNHFNYEKTHNFKVHTFRGPHWCEYCANFMWGLIAQGVRCSDCGLNVHKQCSKHVPNDCQP
    PredictionCCCCCCCCSSCCSSSSSCCCCCCHHHHHHHHHCCCCCCCCCCSSCCCCCCCCCHHHHHSSCCCCCHHHHHHHHCCCCCCSSSSCCCCCCCCSSSSSSSCCSSSSSSSSCCCCSSSCCSCCCCHHHHHHHHHHCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCHHHHSSSSCCCCCCCHHHCHHHSSHHHCCCSCCCCCCCHSHHHHHHCCCCCCC
    Confidence99877541316602254367898156676431066066422123245777650232210258899999999974899837976378999956888997997898452036425641311343777654432001100011223322233344322222232221100012222333333222221122223332223443223323221123202205630488865045310220125325252689961015665227676989
    H:Helix; S:Strand; C:Coil
 Predicted Solvent Accessibility
    Sequence                    20                  40                  60                  80                  100                 120                 140                 160                 180                 200                 220                 240                 260
                       |                   |                   |                   |                   |                   |                   |                   |                   |                   |                   |                   |                   |
    MAASSNSSLSGSSVSSDAEEYQPPIWKSYLYQLQQEAPRPKRIICPREVENRPKYYGREFHGIISREQADELLGGVEGAYILRESQRQPGCYTLALRFGNQTLNYRLFHDGKHFVGEKRFESIHDLVTDGLITLYIETKAAEYISKMTTNPIYEHIGYATLLREKVSRRLSRSKNEPRKTNVTHEEHTAVEKISSLVRRAALTHNDNHFNYEKTHNFKVHTFRGPHWCEYCANFMWGLIAQGVRCSDCGLNVHKQCSKHVPNDCQP
    Prediction76575523044333140246444410203126255502112411253535634420232013403163025306766121000205546522200022553022024244220201342041034233332333224323232332332233322222222222222332233223332322232422222222322233223234343234224202322144332042024101000300010450513003302740367758
    Values range from 0 (buried residue) to 8 (highly exposed residue)
 Predicted Contact, Hydrogen and Distance Map Used in D-I-TASSER simulation
    Contact Map
    Distance Map
    Hydrogen Bond Networks
    D-I-TASSER simulation is guided by the consensus contact map (left figure), distance map (middle figure) and Hydrogen bond network (right figure), generated by integrating predictions from multiple sources. In the contact, distance map and hydrogen bond networks, the axes mark the residue index along the sequence. For the contact map, each dot represents a residue pair with predicted contact, while for the distance map and hydrogen bond network, a color scale represents a distance of 1-20+ angstroms or a angle of 0-180 degree.
 Top 10 threading templates used by D-I-TASSER
    Rank PDB
    hit
    ID1ID2CovNorm.
    Zscore
    Download
    alignment
                        20                  40                  60                  80                  100                 120                 140                 160                 180                 200                 220                 240                 260
                       |                   |                   |                   |                   |                   |                   |                   |                   |                   |                   |                   |                   |
    SS
    Seq
    CCCCCCCCSSCCSSSSSCCCCCCHHHHHHHHHCCCCCCCCCCSSCCCCCCCCCHHHHHSSCCCCCHHHHHHHHCCCCCCSSSSCCCCCCCCSSSSSSSCCSSSSSSSSCCCCSSSCCSCCCCHHHHHHHHHHCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCHHHHSSSSCCCCCCCHHHCHHHSSHHHCCCSCCCCCCCHSHHHHHHCCCCCCC
    MAASSNSSLSGSSVSSDAEEYQPPIWKSYLYQLQQEAPRPKRIICPREVENRPKYYGREFHGIISREQADELLGGVEGAYILRESQRQPGCYTLALRFGNQTLNYRLFHDGKHFVGEKRFESIHDLVTDGLITLYIETKAAEYISKMTTNPIYEHIGYATLLREKVSRRLSRSKNEPRKTNVTHEEHTAVEKISSLVRRAALTHNDNHFNYEKTHNFKVHTFRGPHWCEYCANFMWGLIAQGVRCSDCGLNVHKQCSKHVPNDCQP
    15d06A 0.05 0.04 1.70 0.67DEthreader ------------W--DHESPYLWMSVNFRIDCAELLIREAMQAW---------------------------SEEELRLVDCTPNTVE---DTLNAALAFCSAIGSVYG--LLDL-------------------ISVKTLLMKAAVIFETQQL-RLPSYLVSFFALVVGIMYGCCRLRAMQMMSLLLTGAQAIQDYVCRFVLSKYTEISLSSDLQENERYVIDATIIKPYEDYQF-RPNFTIA----------MVVAPEL-------
    23cxlA 0.81 0.61 17.09 2.63SPARKS-K -----------------------GVWKSYLYQLQQEAPHPRRITCTCEVENRPKYYGREFHGMISREAADQLLIVAEGSYLIRESQRQPGTYTLALRFGSQTRNFRLYYDGKHFVGEKRFESIHDLVTDGLITLYIETKAAEYIAKMTINPIYEHVGYTTLMPVLKETE-------------------------------------------KIHNFKVHTFRGPHWCEYCANFMWGLIAQGVKCADCGLNVHKQCSKMVPNDCKP
    33cxlA 0.79 0.58 16.47 0.95MapAlign ----------------------------YLYQLQQEAPHPRRITCTCEVENRPKYYGREFHGMISREAADQLLIVAEGSYLIRESQRQPGTYTLALRFGSQTRNFRLYYDGKHFVGEKRFESIHDLVTDGLITLYIETKAAEYIAKMTINPIYE-------------------------------------------HVGYTTLMPVLKETEKIHNFKVHTFRGPHWCEYCANFMWGLIAQGVKCADCGLNVHKQCSKMVPNDCKP
    43cxlA 0.81 0.61 17.20 0.84CEthreader -----------------------GVWKSYLYQLQQEAPHPRRITCTCEVENRPKYYGREFHGMISREAADQLLIVAEGSYLIRESQRQPGTYTLALRFGSQTRNFRLYYDGKHFVGEKRFESIHDLVTDGLITLYIETKAAEYIAKMTINPIYEHVGYTTLMPVLKET-------------------------------------------EKIHNFKVHTFRGPHWCEYCANFMWGLIAQGVKCADCGLNVHKQCSKMVPNDCKP
    53cxlA 0.81 0.61 17.20 1.74MUSTER -----------------------GVWKSYLYQLQQEAPHPRRITCTCEVENRPKYYGREFHGMISREAADQLLIVAEGSYLIRESQRQPGTYTLALRFGSQTRNFRLYYDGKHFVGEKRFESIHDLVTDGLITLYIETKAAEYIAKMTINPIYEHVGYTTLMPVLKET-------------------------------------------EKIHNFKVHTFRGPHWCEYCANFMWGLIAQGVKCADCGLNVHKQCSKMVPNDCKP
    63cxlA 0.81 0.61 17.20 4.92HHsearch -----------------------GVWKSYLYQLQQEAPHPRRITCTCEVENRPKYYGREFHGMISREAADQLLIVAEGSYLIRESQRQPGTYTLALRFGSQTRNFRLYYDGKHFVGEKRFESIHDLVTDGLITLYIETKAAEYIAKMTINPIYEHVGYTTLMPVL-------------------------------------------KETEKIHNFKVHTFRGPHWCEYCANFMWGLIAQGVKCADCGLNVHKQCSKMVPNDCKP
    73cxlA 0.81 0.61 17.20 2.06FFAS-3D -----------------------GVWKSYLYQLQQEAPHPRRITCTCEVENRPKYYGREFHGMISREAADQLLIVAEGSYLIRESQRQPGTYTLALRFGSQTRNFRLYYDGKHFVGEKRFESIHDLVTDGLITLYIETKAAEYIAKMTINPIYEHVGYTTLMPVLK-------------------------------------------ETEKIHNFKVHTFRGPHWCEYCANFMWGLIAQGVKCADCGLNVHKQCSKMVPNDCKP
    81nexB 0.08 0.06 2.42 0.67EigenThreader TSLPFEISLKIFNYLQFEDIINSLGVSQNWNKIIRKYNPKFVPHTSVITN---YVITGADDKISGH--------DGGGGILVGSTDRHNSTVLDIVEYKNIKYIVTGSR--DNTLHVWKLFVGVLRGHASVRTVSGHGNIV--VSGSYDNTLSGHTDRIYSASD------------TTWDLENGELY------TLQGHTALVGADGNDYSHHTNLSAITSD--------------------NISGSENQFNIYNLVHANILKDADQ
    93cxlA 0.81 0.61 17.19 3.81CNFpred ------------------------VWKSYLYQLQQEAPHPRRITCTCEVENRPKYYGREFHGMISREAADQLLIVAEGSYLIRESQRQPGTYTLALRFGSQTRNFRLYYDGKHFVGEKRFESIHDLVTDGLITLYIETKAAEYIAKMTINPIYEHVGYTTL-------------------------MPVLKET------------------EKIHNFKVHTFRGPHWCEYCANFMWGLIAQGVKCADCGLNVHKQCSKMVPNDCKP
    103szeA 0.07 0.05 2.00 0.67DEthreader ------------------------------PEVPFPDFSVAKGST----------ITATHNTKNH-HSVATQNW---GNSTYKQTDWNTAVSRLFVVE---TRGATEGAISLIGALFV----KKKWVVAGWQIDKDGLAGVYLTNLKLTNLGEYNSFILSLDVLDISLTLHDIQAIVYLMFSIYLNVVGDYRGQLTYFTRTFQKPTKQLNIE-VSAPKDT------------------------TRETDDKI----T--WSLT---
    (a)ID1 is the number of template residues identical to query divided by number of aligned residues.
    (b)ID2 is the number of template residues identical to query divided by query sequence length.
    (c)Cov is equal the number of aligned template residues divided by query sequence length.
    (d)Norm. Zscore is the normalized Z-score of the threading alignments. A Normalized Z-score >1 means a good alignment and is highlighted in bold.
    (e)Download alignment lists the threading program used to identify the template, and provide the 3D structure of aligned regions of threading templates (threading[1-10].pdb.gz).
    (f)Template residues identical to query sequence are highlighted in color.
 Top 1 final models from D-I-TASSER

    Click
    to view
    RankaDownload Estimated TM-scoreb
    1 model1.pdb.gz 0.633
    (a) D-I-TASSER simulations generate a large ensemble of structural conformations, i.e. decoys. These decoys are clustered by SPICKER based on pairwise structure similarity to report up to five final models from the five largest clusters. Models are ranked in descending order of cluster size. If the simulations converge well, it is possible to have less than 5 models generated, which is usually an indication of good model quality.
    (b) The model confidence is quantitatified by estimated TM-score (eTM-score), calculated based on significance of threading template alignments, contact map satisfaction rate, mean absolute error between distance of model and the consensus distance, and convergence of D-I-TASSER simulations. eTM-score is typically in the range of [0, 1], with higher eTM-score signifies higher model confidence.
 Proteins with similar structure
    Top 10 structural analogs in PDB (as identified by TM-align)

    Click
    to view
    RankPDB
    Hit
    TM-scoreRMSDaIDENaCov.Download
    Alignment
    13cxlA0.721.580.8140.748model1_3cxlA.pdb.gz
    28ewgA0.416.010.0460.684model1_8ewgA.pdb.gz
    37okqA0.405.870.0470.650model1_7okqA.pdb.gz
    48g1uA0.406.050.0270.654model1_8g1uA.pdb.gz
    52btvB0.405.490.0530.624model1_2btvB.pdb.gz
    67rb4A0.395.880.0460.639model1_7rb4A.pdb.gz
    77os0A0.396.130.0200.677model1_7os0A.pdb.gz
    83ba6A0.395.920.0390.643model1_3ba6A.pdb.gz
    96dueA0.395.440.0240.609model1_6dueA.pdb.gz
    104a2lA0.395.760.0400.624model1_4a2lA.pdb.gz

    (a)Query structure is shown in cartoon, while the structural analog is displayed using backbone trace.
    (b)Ranking of proteins is based on TM-score of the structural alignment between the query structure and known structures in the PDB library.
    (c)RMSDa is the RMSD between residues that are structurally aligned by TM-align.
    (d)IDENa is the percentage sequence identity in the structurally aligned region.
    (e)Cov. represents the coverage of the alignment by TM-align and is equal to the number of structurally aligned residues divided by length of the query protein.
 Predicted Gene Ontology (GO) Terms
    GOsearchresult_final_MF.svg
    Molecular Function (MF)
    GO termCscoreGOName
    GO:00038240.69catalytic activity
    GO:00167400.66transferase activity
    GO:00167730.65phosphotransferase activity, alcohol group as acceptor
    GO:00163010.65kinase activity
    GO:00046720.62protein kinase activity

    Download full result of the above consensus prediction.

    Click the graph to show a high resolution version.
    (a)CscoreGO is the confidence score of predicted GO terms. CscoreGO values range in between [0-1]; where a higher value indicates a better confidence in predicting the function using the template.
    (b)The graph shows the predicted terms within the Gene Ontology hierachy for Molecular Function. Confidently predicted terms are color coded by CscoreGO:
    [0.4,0.5)[0.5,0.6)[0.6,0.7)[0.7,0.8)[0.8,0.9)[0.9,1.0]
    GOsearchresult_final_BP.svg
    Biological Process (BP)
    GO termCscoreGOName
    GO:00650070.98biological regulation
    GO:00507890.80regulation of biological process
    GO:00507940.79regulation of cellular process
    GO:00099870.71cellular process
    GO:00071650.64signal transduction
    GO:00446990.58single-organism process
    GO:00447630.50single-organism cellular process
    GO:00081520.50metabolic process

    Download full result of the above consensus prediction.

    Click the graph to show a high resolution version.
    (a)CscoreGO is the confidence score of predicted GO terms. CscoreGO values range in between [0-1]; where a higher value indicates a better confidence in predicting the function using the template.
    (b)The graph shows the predicted terms within the Gene Ontology hierachy for Biological Process. Confidently predicted terms are color coded by CscoreGO:
    [0.4,0.5)[0.5,0.6)[0.6,0.7)[0.7,0.8)[0.8,0.9)[0.9,1.0]
    GOsearchresult_final_CC.svg
    Cellular Component (CC)
    GO termCscoreGOName
    GO:00444641.00cell part
    GO:00444240.88intracellular part
    GO:00057370.52cytoplasm

    Download full result of the above consensus prediction.

    Click the graph to show a high resolution version.
    (a)CscoreGO is the confidence score of predicted GO terms. CscoreGO values range in between [0-1]; where a higher value indicates a better confidence in predicting the function using the template.
    (b)The graph shows the predicted terms within the Gene Ontology hierachy for Cellular Component. Confidently predicted terms are color coded by CscoreGO:
    [0.4,0.5)[0.5,0.6)[0.6,0.7)[0.7,0.8)[0.8,0.9)[0.9,1.0]
 Predicted Enzyme Commission (EC) Numbers
    Top 5 enzyme homologs in PDB

    Click
    to view
    RankCscoreECPDB
    Hit
    TM-scoreRMSDaIDENaCov.EC NumberPredicted Active Site Residues
    10.0602f1yA0.2073.930.0710.2713.1.2.15 NA
    20.0601vrgA0.3326.030.0490.5756.4.1.2 NA
    30.0601t3tA0.3476.150.0240.5716.3.5.3 NA
    40.0603a1cB0.2656.520.0330.4703.6.3.- NA
    50.0601gthA0.3676.110.0460.6321.3.1.2 NA

     Click on the radio buttons to visualize predicted active site residues.
    (a)CscoreEC is the confidence score for the Enzyme Commission (EC) number prediction. CscoreEC values range in between [0-1]; where a higher score indicates a more reliable EC number prediction.
    (b)TM-score is a measure of global structural similarity between query and template protein.
    (c)RMSDa is the RMSD between residues that are structurally aligned by TM-align.
    (d)IDENa is the percentage sequence identity in the structurally aligned region.
    (e)Cov. represents the coverage of global structural alignment and is equal to the number of structurally aligned residues divided by length of the query protein.
 Predicted Ligand Binding Sites
    Template proteins with similar binding site:

    Click
    to view
    RankCscoreLBPDB
    Hit
    TM-scoreRMSDaIDENaCov.BS-scoreLig. NameDownload
    Complex
    Predicted binding site residues
    10.012agvA0.3805.950.0460.6200.47PTYcomplex1.pdb.gz125,128,131

      Click on the radio buttons to visualize predicted binding site and residues.
    (a)CscoreLB is the confidence score of predicted binding site. CscoreLB values range in between [0-1]; where a higher score indicates a more reliable ligand-binding site prediction.
    (b)BS-score is a measure of local similarity (sequence & structure) between template binding site and predicted binding site in the query structure. Based on large scale benchmarking analysis, we have observed that a BS-score >1 reflects a significant local match between the predicted and template binding site.
    (c)TM-score is a measure of global structural similarity between query and template protein.
    (d)RMSDa the RMSD between residues that are structurally aligned by TM-align.
    (e)IDENa is the percentage sequence identity in the structurally aligned region.
    (f)Cov. represents the coverage of global structural alignment and is equal to the number of structurally aligned residues divided by length of the query protein.
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Reference:
  • Wei Zheng, Qiqige Wuyun, Yang Li, Quancheng Liu, Xiaogen Zhou, Chunxiang Peng, Yiheng Zhu, Lydia Freddolino, Yang Zhang. Deep-learning-based single-domain and multidomain protein structure prediction with D-I-TASSER. Nature Biotechnology, 2025. doi:10.1038/s41587-025-02654-4.
  • Wei Zheng, Qiqige Wuyun, Lydia Freddolino, Yang Zhang. Integrating deep learning, threading alignments, and a multi-MSA strategy for high-quality protein monomer and complex structure prediction in CASP15. Proteins, 2023. doi:10.1002/prot.26585.
  • Contact Wei Zheng