Protein
View in Explore- Genbank accession
- AUG85951.1 [GenBank]
- Protein name
- tail fiber protein
- RBP type
-
TF
- Protein sequence
-
MAENVKVEYEDLGDLDLDFDFDFGDDASTKKKGKGGAIREFAAGLWTGAKEEVFTKGTPQRIIRSLLPASFSPAFDAKDRAARFKDDLYDKVKSNTRNSVNDIKDLTLDALSMYGGKLPEKVLKQIEVWAENKDIDYSVSSTKPADPGLDDGSTGNENDDYVTMMQQATLQSSQLAVALHKESMAQTAAVATRQASVSADSLAFMQGIHRLTARTVGFNEQFTANYQRKSLELQYRSYKLQLSIGKMQERFYKRSLDAMSSLVKNTGLTDFEKMSHSASARELIRKRALGGLGGTVSQFGNRLFDNVFNMVDQRSQDMNHRASGGIAAARAAMMGAQQARMMGRSLGARDYGQMAGQGLVGMLPMMLSSLARPALSRNPGLNRMGHDLSYYSNAAPGLINGWLRNRQSFDENFDPNAEGNKWHTRLQKRVVNPFLNNALFQLPASMGNRTRLHNPGVKDLTEPAVWDQMSRRSLVEVIPGLLTKQLAQQTAIANKLEADVGSVSEVHFNHIQGGFTSKKRANVDLRSSIFNRNEFSSAAGSFNTMVETLDPDQELSPNARVALAMRFARDAEAGDGFNVNTYLKSSGWGNANKEAVQEINEFLHKRFDTREATGRAKAFGDYQIGDAPELAQMRNNLSNVMQAQSQYMPNVEQSLNTMANSGSRAQLKDMGVIKRVNGQDVFNHEMYWEMMQKFIANPNYRPDREGEDSNERGSNVNPGAELGEMGRETLDNLRRGVTDSLGNLRGRLTREQEEEIRAQLSQARANSPEYYQVVLQQLRARYGEVAVNRIARRLDNSLGQSLRDRVNGFGGAGAAGAAGGSGGLGDSLRNMGESASNLFGKINSVRPDTSAVKQALLNAASSGKEALRNATTELQRRFGRQAVEEAASEIAQEAEVVRSSGVFNDGTADRASRTRLPSEGITAPDAGSASETAAIVQAQLDNNALLRETIGVLASVRDSVTATKDATIAQVTGDPDIMKDSVNERQGWLRKLSGRMSNQGKSSGLIRKVFKSLPNINSPVLTVAKWTTVMPAVLGFKATRGLWRMLRDKKREDASDPDHDGVRNNSVADLIRRRAQQKKEREEAQHAHDSDDHAKDKEKPTTLFGLVAGLFSSVTGLVSGIKEFGILGGLAKFLGLGWIGDIVKGIGSVISGGKGVMDELSDALGDDEGGEEEGGRRRRRRRGGRRNRGGGGPRPRGGLISRLAGKAARGVRGLGRGIVGRTGGMLGRGVAGNLKLLVKGGGIVTAGVSALEAWDSYKAGDNAGVAEAAGSGIGGILGGAAMGAAIGSVVPVVGTAIGAIAGGAIGALGGGAIGRSLYTWFNDPGLLQQMRLRQYGVPDNDSSHVSAILKLEAALEPYVKTTDDGYASLDPKAPIAQLGSLFVDDPNDREQVEQFAGWFLHRFKPVYLTHKAVAKQVLPSQAFMDLDKSTDEAAKYEIAKRAQQFDESSDHPYMFTGRIFPDLNATDRKQTEALVKDVLDRLRNKAQKMTTGKSASVFATGMDKVASSRELSSDMVKAINPNGDIPELKTVGHKESSWFTGDRTVVSAGDLLGGLLPKAGQPMDDLTALRMKVYGLPTLDVDRVSTLLQLELVMANKIKFADNGATFDGKASDIYRVVAASFGLSPSNQWSYKSWEPWFTRRFLPAYLAFASTVYTQTGDSRPTLAVPKMPPELKFAAATAMTNAKYSDGVNAISVWTIKTSPWSTGELNDDASVVQNHLNNLKAQVKQAQYSAEAVKGGVQQRADGTTEKDWRKDSSGNMVNNQVKTSTGQVYTSQRQVTTYNPETGRIETAYGGGAAGGAAGAGGGIDNTGKVGPIKLGPGAEEGARILIREAMKSGITDKQELAMLLAQTHLESGGFSKLEENLRYKAETLMRLWPNRFPTLAAAQQLATAGPVAIANSIYGGRMGNDKPGDGWKYRGRGFMQLTGKANYTAASKGLGVDLVSDPDKISTDPTMAAKSALWYWKSRNGIEEAAKKGDLNTVTKLVNGGTHGLAERGQLFKQYTDLMGTGKFDDILSGKDQSAGPQGDAAEDNQAQTLASGQAQSGPSTPALSGAKTAAELTAPGASAVNAVAPPPGQGDAPALKSTSGPSVAAAVSAGSSTPNAKDSTASAIDKQAAADASTPTPTTPTLNTPPRMQPTQGQVPNAPQVTTVTPAPAPVPVLPKESAAAISGSKDHLANIDNNMNSLVEIMKQFIAVQTQMLNKPAPAALQAPASGAGTPPVSFARKYGNG
- Physico‐chemical
properties -
protein length: 2234 AA molecular weight: 239193,94320 Da isoelectric point: 9,20565 aromaticity: 0,06132 hydropathy: -0,45725
Domains
Domains [InterPro]
DC_0124
STR
1–1937
STR
1–1937
Coil
Unmapped
1067–1087
Unmapped
1067–1087
G3DSA:1.10.530.10
RBD
1830–2010
RBD
1830–2010
IPR023346
STR
1837–2014
STR
1837–2014
cd00325
ENZ
1841–2017
ENZ
1841–2017
IPR000726
ENZ
1915–1969
ENZ
1915–1969
1
2234
Architecture
STR 1-2017 | RBD 2018-2234
Legend:
ATT
STR
RBD
CBM
LEC
ENZ
CHP
LNK
TAS
TTP
UNK
Unmapped
Taxonomy
| Name | Taxonomy ID | Lineage | |
|---|---|---|---|
| Phage |
Erwinia phage vB_EamM_Bosolaphorus [NCBI] |
2060126 | Uroviricota > Caudoviricetes > Chimalliviridae > Agricanvirus ray > |
| Host | No host information | ||
Coding sequence (CDS)
Coding sequence (CDS)
Genbank protein accession
AUG85951.1
[NCBI]
Genbank nucleotide accession
MG655267.1
[NCBI]
CDS location
range 122433 -> 129137
strand -
strand -
CDS
ATGGCCGAGAATGTCAAAGTCGAGTACGAAGATCTGGGTGACCTTGACCTGGACTTTGACTTCGATTTCGGTGACGATGCAAGTACGAAGAAGAAGGGTAAAGGCGGGGCGATTCGTGAGTTCGCCGCAGGCCTTTGGACTGGTGCCAAAGAGGAAGTGTTCACTAAAGGCACTCCTCAGCGTATCATTCGCTCTTTGTTACCCGCATCGTTTTCGCCTGCGTTTGATGCAAAAGATCGCGCAGCAAGATTCAAAGATGACCTATACGATAAAGTTAAAAGTAATACCCGTAACTCTGTCAATGACATCAAAGACCTAACCCTCGATGCATTATCGATGTACGGTGGGAAATTGCCGGAGAAGGTCTTAAAGCAAATTGAAGTCTGGGCTGAGAATAAAGACATCGATTATTCGGTCTCCAGCACCAAACCTGCCGATCCCGGTCTGGACGACGGCTCAACCGGTAACGAGAACGATGACTACGTCACCATGATGCAGCAGGCTACGCTGCAGTCGAGTCAGCTGGCTGTGGCCCTGCATAAAGAGAGCATGGCACAGACCGCCGCAGTCGCCACCAGACAAGCGAGCGTCTCTGCAGACAGTCTGGCCTTCATGCAAGGCATCCATCGCCTCACAGCCCGTACCGTTGGCTTTAATGAGCAGTTCACTGCCAACTACCAGCGCAAGTCATTAGAGCTCCAGTACCGTTCGTATAAACTGCAGTTGTCAATTGGCAAGATGCAAGAACGTTTCTACAAACGCAGTCTGGACGCCATGTCAAGTCTGGTGAAAAATACCGGCTTAACTGACTTCGAAAAGATGAGTCATTCTGCCTCGGCCCGTGAGTTGATTCGTAAACGTGCACTGGGTGGGTTAGGTGGTACGGTCTCGCAATTTGGTAACCGTCTGTTTGACAATGTCTTTAACATGGTGGATCAGCGTAGCCAGGATATGAACCACCGCGCTTCGGGCGGCATTGCTGCCGCCCGTGCTGCCATGATGGGTGCACAACAGGCCCGCATGATGGGGCGTTCGCTTGGCGCCCGTGACTACGGACAGATGGCGGGTCAAGGACTGGTCGGTATGTTGCCGATGATGCTTTCCTCTTTAGCCCGTCCTGCACTGTCGCGTAACCCGGGTCTGAACCGCATGGGTCATGACTTAAGCTATTACTCAAATGCGGCACCGGGTCTGATCAATGGTTGGTTACGTAACCGTCAGTCGTTTGATGAGAACTTCGATCCGAATGCCGAGGGGAATAAATGGCACACGCGGTTACAAAAGCGCGTCGTCAACCCCTTCCTGAATAACGCCCTCTTTCAATTGCCGGCCTCCATGGGTAACCGTACTCGGTTGCACAACCCTGGCGTGAAAGACCTGACTGAACCGGCTGTTTGGGATCAGATGTCACGGCGTTCATTGGTGGAAGTGATTCCAGGCTTACTGACTAAACAACTGGCCCAGCAAACGGCGATTGCCAATAAACTGGAAGCAGATGTCGGGTCGGTGTCGGAAGTGCACTTCAACCACATCCAGGGTGGCTTCACTTCCAAGAAACGGGCGAACGTCGATCTGCGTTCGTCGATCTTTAATCGCAATGAGTTCTCCTCGGCCGCAGGTTCCTTCAATACCATGGTGGAAACCCTCGACCCCGACCAGGAGCTCTCACCCAATGCCCGTGTGGCATTAGCGATGCGTTTTGCCCGGGATGCTGAAGCGGGTGATGGCTTCAACGTCAACACCTACTTGAAGTCCAGTGGCTGGGGCAATGCCAATAAAGAAGCAGTGCAGGAGATCAATGAGTTCTTGCACAAACGTTTCGACACTCGGGAAGCAACCGGTCGGGCCAAAGCCTTTGGTGATTATCAGATTGGCGATGCACCCGAACTGGCACAGATGCGTAACAACCTGTCTAACGTTATGCAGGCCCAGTCGCAGTATATGCCGAATGTCGAGCAGTCACTGAATACCATGGCCAACAGTGGTAGTCGGGCACAGCTCAAAGACATGGGCGTCATCAAACGGGTTAATGGCCAGGATGTCTTTAACCACGAGATGTACTGGGAGATGATGCAGAAGTTCATTGCTAACCCGAACTATCGTCCTGATCGTGAAGGGGAAGATTCCAATGAACGCGGCAGTAATGTTAACCCTGGAGCAGAACTCGGTGAGATGGGGCGTGAGACGCTGGATAACCTGCGTCGTGGCGTAACAGACAGTCTGGGCAACCTGCGGGGTCGACTCACCCGTGAACAAGAGGAGGAGATCCGTGCACAACTTTCCCAAGCCCGAGCTAACAGTCCGGAATATTATCAAGTGGTGCTTCAGCAGCTTCGTGCGCGATATGGGGAGGTTGCTGTTAATCGTATTGCTCGTCGTTTGGATAATAGCCTTGGCCAAAGTCTGCGCGATCGAGTAAACGGCTTTGGTGGTGCGGGTGCGGCAGGCGCTGCAGGCGGTAGTGGCGGTCTGGGTGATTCATTGCGTAACATGGGTGAAAGTGCCAGTAACTTGTTTGGCAAGATCAACTCAGTCCGTCCAGACACCAGTGCGGTGAAACAAGCGTTGCTGAATGCGGCATCCAGTGGTAAGGAAGCGTTGCGTAATGCCACCACCGAACTGCAACGTCGCTTTGGTCGTCAAGCTGTAGAAGAGGCAGCTTCAGAGATTGCTCAGGAAGCAGAAGTCGTACGCTCCTCTGGTGTGTTCAATGACGGTACGGCGGATCGGGCTTCACGCACTCGCTTACCTTCTGAAGGGATTACTGCACCGGATGCGGGCAGTGCATCAGAGACGGCAGCGATTGTACAGGCCCAACTTGATAACAATGCCTTGCTGCGTGAAACCATCGGTGTCCTGGCTTCTGTGCGTGATAGCGTAACAGCAACCAAAGATGCCACCATTGCGCAAGTGACCGGTGATCCTGACATTATGAAGGATTCGGTGAATGAGCGTCAGGGGTGGTTGCGTAAACTGTCGGGTCGGATGAGTAACCAAGGCAAGTCATCTGGGTTGATTCGTAAAGTCTTCAAAAGCTTACCGAATATTAACAGCCCTGTCTTGACCGTTGCGAAGTGGACTACTGTCATGCCGGCAGTATTAGGCTTCAAAGCGACTCGTGGCTTATGGCGGATGTTACGTGATAAGAAACGGGAAGATGCCAGTGACCCGGATCACGATGGGGTGCGTAATAACTCGGTTGCTGATCTGATTCGTCGCCGTGCTCAACAGAAGAAAGAACGTGAAGAAGCCCAACACGCACATGACTCTGACGACCACGCCAAAGACAAGGAGAAACCCACCACATTGTTTGGATTGGTGGCGGGGTTGTTCTCCTCCGTTACTGGTCTGGTCTCCGGTATCAAGGAGTTCGGTATCCTCGGTGGGCTGGCCAAGTTCTTAGGACTGGGTTGGATCGGTGATATTGTCAAAGGGATCGGTAGTGTGATCTCCGGCGGCAAAGGCGTCATGGATGAACTCAGCGATGCGCTCGGTGATGATGAGGGCGGTGAAGAGGAAGGCGGTCGCAGGCGGCGGAGACGTCGGGGTGGGCGTCGTAATCGCGGCGGTGGTGGTCCTCGCCCACGTGGTGGGTTGATTAGTCGCTTAGCCGGCAAAGCTGCCCGTGGTGTCCGTGGTCTGGGTCGGGGTATCGTCGGTCGTACAGGCGGTATGCTGGGCCGGGGTGTTGCCGGTAACCTGAAACTATTGGTTAAAGGTGGCGGGATTGTCACAGCCGGGGTCTCAGCACTGGAAGCGTGGGATTCGTACAAGGCAGGTGACAATGCAGGTGTGGCAGAAGCAGCTGGCTCCGGTATTGGTGGTATTCTGGGCGGTGCGGCGATGGGTGCGGCTATCGGTTCAGTCGTGCCAGTTGTCGGTACAGCCATTGGTGCTATTGCTGGCGGGGCCATTGGTGCATTAGGGGGCGGTGCTATCGGTCGTTCTTTATACACTTGGTTTAATGACCCGGGTTTACTGCAGCAGATGCGTCTGCGTCAGTATGGTGTTCCGGATAATGACTCCAGTCATGTCTCGGCCATCCTGAAGTTGGAAGCAGCGTTAGAGCCGTATGTCAAAACCACCGATGATGGCTATGCCTCACTCGACCCGAAAGCCCCAATCGCCCAACTCGGTTCATTGTTTGTTGATGACCCGAATGACCGTGAGCAAGTGGAGCAATTCGCGGGTTGGTTCCTGCATCGCTTCAAACCGGTTTACCTGACCCACAAAGCCGTGGCGAAACAAGTCCTCCCAAGCCAGGCCTTCATGGATCTGGATAAGTCGACGGATGAAGCGGCAAAGTACGAGATCGCCAAACGCGCACAACAGTTCGATGAGTCATCTGATCACCCGTACATGTTTACTGGTCGTATCTTCCCGGATCTGAATGCAACTGATCGCAAACAGACCGAAGCGCTGGTAAAAGATGTGCTGGATCGTCTGCGCAACAAAGCTCAGAAGATGACCACGGGGAAATCAGCGTCGGTCTTTGCAACCGGGATGGATAAGGTTGCCTCCAGCCGTGAACTCAGCAGTGACATGGTCAAAGCCATTAATCCAAATGGTGATATCCCTGAGCTGAAAACGGTTGGACATAAAGAGTCGTCGTGGTTTACCGGTGATCGTACTGTGGTCAGTGCCGGGGATCTCTTAGGTGGCTTACTACCTAAAGCCGGTCAGCCGATGGATGATCTCACTGCGCTGCGTATGAAAGTGTATGGCCTGCCAACGTTGGATGTTGATCGTGTGTCGACACTCCTGCAGTTGGAACTGGTGATGGCGAACAAGATCAAGTTTGCAGATAATGGTGCGACGTTTGACGGTAAAGCCTCAGACATCTACCGGGTTGTTGCTGCAAGCTTTGGCTTGAGTCCATCCAACCAGTGGTCTTACAAATCATGGGAGCCATGGTTTACTCGTCGCTTCTTACCGGCGTACTTAGCGTTTGCCAGCACGGTCTATACCCAGACCGGAGACAGTCGACCGACGCTTGCTGTACCGAAGATGCCACCTGAGTTGAAGTTCGCTGCAGCGACAGCGATGACCAATGCCAAATACAGCGATGGCGTGAATGCGATCTCTGTTTGGACCATTAAGACCTCGCCGTGGTCAACCGGTGAACTTAATGATGATGCCTCTGTTGTTCAAAACCACCTGAATAACCTGAAGGCACAAGTCAAACAAGCGCAGTATTCTGCTGAAGCGGTAAAAGGCGGTGTGCAACAACGGGCCGATGGCACTACTGAGAAAGATTGGCGTAAGGACTCGTCCGGTAACATGGTGAACAACCAGGTGAAGACGAGCACCGGTCAAGTCTATACCTCTCAGCGTCAGGTAACAACATACAACCCGGAAACGGGACGTATCGAGACAGCCTATGGTGGCGGTGCGGCAGGTGGTGCGGCAGGTGCAGGTGGGGGGATTGACAACACCGGGAAGGTTGGGCCGATTAAGTTAGGTCCAGGTGCTGAAGAGGGTGCGCGTATCTTGATTCGTGAAGCCATGAAGTCCGGCATTACGGATAAACAAGAACTCGCCATGCTCTTGGCCCAGACTCACCTGGAGTCCGGAGGCTTTAGCAAACTCGAAGAGAACCTGCGTTATAAAGCAGAGACTCTGATGAGGCTCTGGCCTAACCGCTTCCCCACCCTGGCAGCTGCGCAGCAGTTAGCGACAGCGGGTCCAGTGGCGATTGCCAACTCGATCTACGGCGGTCGTATGGGGAACGACAAACCAGGTGATGGTTGGAAGTACCGTGGACGTGGCTTCATGCAGCTGACCGGTAAAGCCAACTACACAGCCGCCAGTAAAGGCCTTGGCGTTGACCTGGTGTCCGATCCCGATAAAATCTCGACTGACCCAACCATGGCTGCGAAGTCAGCACTGTGGTATTGGAAGTCGCGTAATGGGATTGAGGAAGCTGCGAAGAAAGGGGATCTGAATACTGTTACCAAATTGGTCAACGGCGGGACACACGGTTTAGCTGAACGTGGTCAGTTGTTCAAACAGTATACGGATCTAATGGGGACTGGGAAGTTTGATGACATTCTCTCGGGTAAAGATCAGTCTGCTGGCCCACAAGGTGATGCAGCTGAAGATAACCAGGCACAAACCTTGGCATCCGGTCAAGCACAGAGCGGACCTTCTACTCCGGCATTGTCGGGTGCGAAGACGGCAGCTGAGCTGACTGCACCGGGTGCATCTGCGGTTAATGCCGTAGCACCACCTCCGGGCCAGGGCGATGCGCCAGCATTGAAGTCAACAAGCGGACCAAGTGTAGCAGCAGCCGTTTCTGCAGGTTCATCGACACCGAATGCCAAAGACTCCACGGCATCGGCTATCGATAAGCAAGCAGCCGCTGATGCGTCTACGCCAACACCAACCACCCCAACCCTTAACACACCTCCTCGCATGCAACCGACCCAAGGGCAGGTTCCTAATGCCCCGCAGGTCACGACAGTTACCCCTGCACCGGCACCCGTACCGGTCTTACCGAAAGAGTCTGCTGCGGCGATCTCTGGCAGTAAAGACCACCTGGCGAACATCGACAATAACATGAACTCGTTGGTTGAGATCATGAAGCAGTTCATTGCGGTGCAAACCCAGATGTTGAACAAACCTGCACCGGCGGCACTACAAGCACCTGCCAGTGGTGCTGGTACACCACCGGTGAGCTTTGCTCGCAAATACGGTAATGGCTAG
Genome Context
Genome Context
Tertiary structure
PDB ID
27e87b09587413cd73134012fc642cf92f6163925dc72f9df95d5077360947fb
Model Confidence
Very high
pLDDT > 90
pLDDT > 90
High
90 > pLDDT > 70
90 > pLDDT > 70
Low
70 > pLDDT > 50
70 > pLDDT > 50
Very low
pLDDT < 50
pLDDT < 50