GPCR-I-TASSER results for A6NF89

[Click on A6NF89_results.tar.bz2 to download the tarball file including all modeling results listed on this page]

  Submitted Sequence

>A6NF89
MKNKSMEIEFILLGLTDDPQLQIVIFLFLFLNYTLSLMGNLIIIILTLLDPRLKTPMYFF
LRNFSFLEVIFTTVCIPRFLITIVTRDKTISYNNCATQLFFILLPGVTEFYLLAAMSYDR
YVAICKPLHYPIIMSSKVCYQLVLSSWVTGFLIIFPPLVMGLKLDFCASKTIDHFMCETS
PILQISCTDTHVLELMSFTLAVVTLVVTLVLVILSYTCIIKTILKFSSAQQRNKAFSTCT
SHMIVVSMTYGSCIFMYIKPSAKERVTVSKGVALLYTSIAPLLNPFIYTLRNQQVKEVFW
DVLQKNLCFSKRPF

  Predicted Secondary Structure

Sequence                  20                  40                  60                  80                 100                 120                 140                 160                 180                 200                 220                 240                 260                 280                 300
                   |                   |                   |                   |                   |                   |                   |                   |                   |                   |                   |                   |                   |                   |                   |              
MKNKSMEIEFILLGLTDDPQLQIVIFLFLFLNYTLSLMGNLIIIILTLLDPRLKTPMYFFLRNFSFLEVIFTTVCIPRFLITIVTRDKTISYNNCATQLFFILLPGVTEFYLLAAMSYDRYVAICKPLHYPIIMSSKVCYQLVLSSWVTGFLIIFPPLVMGLKLDFCASKTIDHFMCETSPILQISCTDTHVLELMSFTLAVVTLVVTLVLVILSYTCIIKTILKFSSAQQRNKAFSTCTSHMIVVSMTYGSCIFMYIKPSAKERVTVSKGVALLYTSIAPLLNPFIYTLRNQQVKEVFWDVLQKNLCFSKRPF
PredictionCCCCCCSSSSSSSCCCCCCCHHHHHHHHHHHHHHHHHHHHHHHHHHHHHCCCCCCCHHHHHHHHHHHHHHHHCCCHHHHHHHHCCCCCSSSHHHHHHHHHHHHHHHHHHHHHHHHHHHHHCHHCCCCCCCCCCCCHHHHHHHHHHHHHHHHHHHHHHHHHHSSCCCCCCCCCCCSCCCHHHHHHHHCCCCCHHHHHHHHHHHHHHHHHHHHHHHHHHHHHHHHHCCCCCCCCCCHHHCHHHHHHHHHHHHHCHHSSSSCCCCCCCCCCCCSSSSSHHHHHHCCCCHHCCCCCHHHHHHHHHHHHHHHHHCCCCC
Conf.Score99885212678955898833499999999999999999899999999748776773888846799998888606788998986469958718999999999999999999999998744105105665478225776999999999999999999999988472788989468740484888888334752999999999999999989999999999999992186621376322252857995899873031278688998778678589861533676035741005639899999999986732105899

  Predicted Solvent Accessibility

Sequence                  20                  40                  60                  80                 100                 120                 140                 160                 180                 200                 220                 240                 260                 280                 300
                   |                   |                   |                   |                   |                   |                   |                   |                   |                   |                   |                   |                   |                   |                   |              
MKNKSMEIEFILLGLTDDPQLQIVIFLFLFLNYTLSLMGNLIIIILTLLDPRLKTPMYFFLRNFSFLEVIFTTVCIPRFLITIVTRDKTISYNNCATQLFFILLPGVTEFYLLAAMSYDRYVAICKPLHYPIIMSSKVCYQLVLSSWVTGFLIIFPPLVMGLKLDFCASKTIDHFMCETSPILQISCTDTHVLELMSFTLAVVTLVVTLVLVILSYTCIIKTILKFSSAQQRNKAFSTCTSHMIVVSMTYGSCIFMYIKPSAKERVTVSKGVALLYTSIAPLLNPFIYTLRNQQVKEVFWDVLQKNLCFSKRPF
Prediction87240311100000004314011100130333133233333200300200330100001103000110121100100310010115433010200000010010002100200010000000000211202020033000000110131002003110110030300441301000003200010002303100210122023223313310330232002000103126323100001110210000132001000000316433434000002103320330030000204201400230032111135457
Values range from 0 (buried residue) to 9 (highly exposed residue)

   Predicted normalized B-factor


  Top 10 templates used by GPCR-I-TASSER

Rank PDB
Hit
Iden1Iden2Cov.Norm.
Z-score
Download
Align.
                   20                  40                  60                  80                 100                 120                 140                 160                 180                 200                 220                 240                 260                 280                 300
                   |                   |                   |                   |                   |                   |                   |                   |                   |                   |                   |                   |                   |                   |                   |              
Sec.Str
Seq
CCCCCCSSSSSSSCCCCCCCHHHHHHHHHHHHHHHHHHHHHHHHHHHHHCCCCCCCHHHHHHHHHHHHHHHHCCCHHHHHHHHCCCCCSSSHHHHHHHHHHHHHHHHHHHHHHHHHHHHHCHHCCCCCCCCCCCCHHHHHHHHHHHHHHHHHHHHHHHHHHSSCCCCCCCCCCCSCCCHHHHHHHHCCCCCHHHHHHHHHHHHHHHHHHHHHHHHHHHHHHHHHCCCCCCCCCCHHHCHHHHHHHHHHHHHCHHSSSSCCCCCCCCCCCCSSSSSHHHHHHCCCCHHCCCCCHHHHHHHHHHHHHHHHHCCCCC
MKNKSMEIEFILLGLTDDPQLQIVIFLFLFLNYTLSLMGNLIIIILTLLDPRLKTPMYFFLRNFSFLEVIFTTVCIPRFLITIVTRDKTISYNNCATQLFFILLPGVTEFYLLAAMSYDRYVAICKPLHYPIIMSSKVCYQLVLSSWVTGFLIIFPPLVMGLKLDFCASKTIDHFMCETSPILQISCTDTHVLELMSFTLAVVTLVVTLVLVILSYTCIIKTILKFSSAQQRNKAFSTCTSHMIVVSMTYGSCIFMYIKPSAKERVTVSKGVALLYTSIAPLLNPFIYTLRNQQVKEVFWDVLQKNLCFSKRPF
13v2yA 0.15 0.19 0.84 2.10Download ----------------DKENSIKLTSVVFILICCFIILENIFVLLTIWKTKKFHRPMYYFIGNLALSDLLAGVAYTANLLLSGATTYK-LTPAQWFLREGSMFVALSASVFSLLAIAIERYITMLKN--------NFRLFLLISACWVISLILGG--------LPIMGWNCISA--------LSSCSTVLPLYHKHYILFCTTVFTLLLLSIVILYCRIYSLVRTRNSRSSENALLKTVIIVLSVFIACWAPLFILLLLDVGCKVKTCDILFRLVLAVLNSGTNPIIYTLTNKEMRRAFIRIMGR---------
24iaqA 0.16 0.17 0.86 2.28Download ----------YIYQDSISLPWKVLLVMLLALITLATTLSNAFVIATVYRTRKLHTPANYLIASLAVTDLLVSILVMPISTMYTVTGRWTLGQVVCDFWLSSDITCCTASIWHLCVIALDRYWAITDAVEYSAKRTPKRAAVMIALVWVFSISISLP---PFFECVVNTDHI-----------------------LYTVYSTVGAFYFPTLLLIALYGRIYVEARSRIIQKMAARERKATKTLGIILGAFIVCWLPFFIISLVMPIHLAIFDFFTWLGYLNSLINPIIYTMSNEDFKQAFHKLIRFK--------
33emlA 0.17 0.20 0.89 3.68Download ------------------IMGSSVYITVELAIAVLAILGNVLVCWAVWLNSNLQNVTNYFVVSLAAADIAVGVLAIPFAITIST--GFCAACHGCLFIACFVLVLTQSSIFSLLAIAIDRYIAIRIPLRYNGLVTGTRAKGIIAICWVLSFAIGLTPMLGWNNCGGCGEGQVACLFEDVVP-----------MNYMVYFNFFACVLVPLLLMLGVYLRIFLAARRQLVHAAKSLAIIVGLFALCWLPLHIINCF-TFFCPDCSHAPLWLMYLAIVLSHTNSVVNPFIYAYRIREFRQTFRKIIRSHVL--RQ--
43uonA 0.17 0.20 0.88 2.54Download ------------------TFEVVFIVLVAGSLSLVTIIGNILVMVSIKVNRHLQTVNNYFLFSLACADLIIGVFSMNLYTLYTVIGYWPLGPVVCDLWLALDYVVSNASVMNLLIISFDRYFCVTKPLTYPVKRTTKMAGMMIAAAWVLSFILWAPAILFWQFIV--GVRTVEDGECYIQFF------S---NAAVTFGTAIAAFYLPVIIMTVLYWHISRASKSRINPSREKKVTRTILAILLAFIITWAPYNVMVLINTFCAIPNTVWTIGYWLCYINSTINPACYALCNATFKKTFKHLLM----------
54bvnA 0.17 0.19 0.88 2.08Download ----------------LSQQWEAGMSLLMALVVLLIVAGNVLVIAAIGSTQRLQTLTNLFITSLACADLVVGLLVVPFGATLVVRGTWLWGSFLCELWTSLDVLCVTASVETLCVIAIDRYLAITSPFRYQSLMTRARAKVIICTVWAISALVSFLPIMMH----WWRDEDPQALKCYQDP----GCCDFVTNRAYAIASSIISFYIPLLIMIFVALRVYREAKE----MREHKALKTLGIIMGVFTLCWLPFFLVNIVNVFNRVPKWLFVAFNWLGYANSAMNPIILC-RSPDFRKAFKRLLA----------
63emlA 0.17 0.20 0.88 4.01Download -------------------MGSSVYITVELAIAVLAILGNVLVCWAVWLNSNLQNVTNYFVVSLAAADIAVGVLAIPFAIT--ISTGFCAACHGCLFIACFVLVLTQSSIFSLLAIAIDRYIAIRIPLRYNGLVTGTRAKGIIAICWVLSFAIGLTPMLGWNNCGGCGEGQVACLFEDVVP-----------MNYMVYFNFFACVLVPLLLMLGVYLRIFLAARRQLVHAAKSLAIIVGLFALCWLPLHIINCF-TFFCPDCSHAPLWLMYLAIVLSHTNSVVNPFIYAYRIREFRQTFRKIIRSHVLRQ----
74bvnA 0.17 0.19 0.88 2.92Download ----------------LSQQWEAGMSLLMALVVLLIVAGNVLVIAAIGSTQRLQTLTNLFITSLACADLVVGLLVVPFGATLVVRGTWLWGSFLCELWTSLDVLCVTASVETLCVIAIDRYLAITSPFRYQSLMTRARAKVIICTVWAISALVSFLPIMMHWWRD----EDPQALKCYQDP----GCCDFVTNRAYAIASSIISFYIPLLIMIFVALRVYREAKEQ---MREHKALKTLGIIMGVFTLCWLPFFLVNIVNVFNRVPKWLFVAFNWLGYANSAMNPIILC-RSPDFRKAFKRLLA----------
82z73A 0.16 0.19 0.94 2.75Download WYNPSIVVHPHWREFDQVPAVYYSLGIFIGICGIIGCGGNGIVIYLFTKTKSLQTPANMFIINLAFSDFTFSLVNGPLMTISCFLKKWIFGFAACKVYGFIGGIFGFMSIMTMAMISIDRYNVIGRPMAASKKMSHRRAFIMIIFVWLWSVLWAIGPIFGTLEGVLCDY-----------------ISRDSTTRSNILCMFILGFFGPILIIFFCYFNIVMAQAGANAEMRLAKISIVIVSQFLLSWSPYAVVALLAQFGPLEWVTPYAAQLPVMFAKASAIHNPMIYSVSHPKFREAISQTFPWVLTCCQF-D
93emlA 0.17 0.20 0.89 5.42Download ------------------IMGSSVYITVELAIAVLAILGNVLVCWAVWLNSNLQNVTNYFVVSLAAADIAVGVLAIPFAITIS--TGFCAACHGCLFIACFVLVLTQSSIFSLLAIAIDRYIAIRIPLRYNGLVTGTRAKGIIAICWVLSFAIGLTPMLNCGQSQGCGEGQVACLFEDVVP-----------MNYMVYFNFFACVLVPLLLMLGVYLRIFLAARRQLVHAAKSLAII-VGLFALCWLPLHIINCFTFFCPDCSHAPLWLMYLAIVLSHTNSVVNPFIYAYRIREFRQTFRKIIRSHVLRQ----
103emlA 0.16 0.20 0.89 5.48Download I------------------MGSSVYITVELAIAVLAILGNVLVCWAVWLNSNLQNVTNYFVVSLAAADIAVGVLAIPFAIT--ISTGFCAACHGCLFIACFVLVLTQSSIFSLLAIAIDRYIAIRIPLRYNGLVTGTRAKGIIAICWVLSFAIGLTPMLNCGQSQGCGEGQVACLFEDVVPMNYMVYFNFFACVLV-----------PLLLMLGVYLRIFLAARRQLVHAAKSLAIIVGLFAL-CWLPLHIINCFTFFCPDCSHAPLWLMYLAIVLSHTNSVVNPFIYAYRIREFRQTFRKIIRS----HVLRQ
(a)All the residues are colored in black; however, those residues in template which are identical to the residue in the query sequence are highlighted in color. Coloring scheme is based on the property of amino acids, where polar are brightly coloured while non-polar residues are colored in dark shade. (more about the colors used)
(b)Rank of templates represents the top ten threading templates used by GPCR-I-TASSER.
(c)Ident1 is the percentage sequence identity of the templates in the threading aligned region with the query sequence.
(d)Ident2 is the percentage sequence identity of the whole template chains with query sequence.
(e)Cov. represents the coverage of the threading alignment and is equal to the number of aligned residues divided by the length of query protein.
(f)Norm. Z-score is the normalized Z-score of the threading alignments. Alignment with a Normalized Z-score >1 mean a good alignment and vice versa.
(g)Download Align. provides the 3D structure of the aligned regions of the threading templates.
(h)The top 10 alignments reported above (in order of their ranking) are from the following threading programs:
       1: FFAS-3D   2: SPARKS-X   3: MUSTER   4: HHSEARCH2   5: HHSEARCH I   6: Neff-PPAS   7: HHSEARCH   8: pGenTHREADER   9: wdPPAS   10: PROSPECT2   

  Top 5 Models predicted by GPCR-I-TASSER

Generated 3D models Estimated local accuracy of models
  • Download Model 1
  • C-score=-0.39 (Read more about C-score)
  • Estimated TM-score = 0.66±0.13
  • Estimated RMSD = 7.1±4.2Å

  • Download Model 2
  • C-score = -1.18

  • Download Model 3
  • C-score = -0.96

  • Download Model 4
  • C-score = -1.04

  • Download Model 5
  • C-score = -4.33





  •  Please cite following articles when you use the GPCR-I-TASSER server:
    J Zhang, J Yang, R Jang, Y Zhang. Hybrid structure modeling of G protein-coupled receptors in the human genome, submitted (2015).