Genbank accession
QDH47009.1 [GenBank]
Protein name
putative BspA family leucine-rich repeat surface protein
RBP type
TSP
Evidence DepoScope
Probability 1,00
Protein sequence
MYVDKDKPQPPLDERTDPVGVVLEAFIENDRKVQEVTGDIVDTIKDIQNAQASATQKLDKFDADVKAKLKTHVDKRGAVHGENKHTVGLGNKDNYPMATMQEHVDGKALAYAHPSGLRELVESRVKSDPTKYIPARVIPLASGGMLGDIPQYHMDLSIGELDQSKQDPNLHLGETPWEFSTTSGALIFPTINNAPHHGRYTQVPQGMNVFSHGPHGGTKIRVYNKTLDSRRTRPSFIRGWGDTSGAPEQLGTCVKTGSSLFDKTHVIYRENNWLLRSFNKNALPSDVIEIYKHYSKEPEGIFEYAEGFLFNYWVTPLNAIVPGGSVAEPHIKLDMRCFKMDVADYRAAQGAVSLNGEQRTTLGDTTQTFSATVPAHNKMVFGGQAGSGIGSIYIRLNRLLSLPAGMENAFLANLNQNLVRQLTFAWRNRMSYHGLFRIPVGWWNKQKTKYWHAWVDFEIIDRPFYTGLNNQLRVLTADPSWNAVQTVDANWNVTGSGMFKEYRADIKDNPMHPLALGGIFESQGGHMKTYTLYGRQYTAYHQHDMGQSLDFITKGNAPLPPPTQSEYSARSTLNGTGLYGDHLRHIPVDIDQQTGLVTYLTHVRDYRDRYRWARVVIDGEQEVVQDRFYGNYLGPKVQKLDWLPGIKTPRPFVISNDDFQPTMNINGLVFTAENKFLGFGSFRTNEANQDYLEYVDEIRLDEQVIAWVKSNAGGFTNPDLLFFYFRGSLFWFCRCSDPGEYPADGKDCYYGVIKDCGVKLDGGGARVMGPNGSIADSITINKFNLMTKNSLLVDQAEVYGIDSLSGRDVYIMMTQHHNDSGTQDHDVMVNMGPFNNFYIEMKLIRSGDGAMTFRPKPEAIDPVFPYTESNGFQIDYDAHTLYGTKIPERFHVNYQSPVMLKKGMWSYRKTPNNFGFFTRRHGFITITGCVMASYYGTDVYPMGSVLTVSGKNTVVKKPVQFSPDDIDGSSELFVRIVGDEPVLYGTNFNPNGYEVEPHNGAAPAGWGSGSNFYYYDPASWRNTFMPVIDGRRMSWYGYGSTVPVLLGKPGEGLPINRYYFGTQSTQMTWDTAKGRVVKFDTEIATTVAVNGNAEVTGSATQYVIPAQYTGVVTIDLYNANKLIWAPGLTNLIRLGSEIMEVDFSGSDQFTISAPLPKRVTSLKRAFYKAKGASYPGLQNWNVTGVTDFTECFAETTAFNQDLSNWTFVMGRTLRGMFQNAVAFNQPVPGTWFQYILDCSYMFAGSGAFNKPLTGTALQCKTAIGMFQGSKVFNSSINGLKFLEIVDISDFFRESVVFNQSINGFDVSKVERAERMFQGAKGFLQPITLNMKQCHSVSGMFKDNLVFNALVNISLPICTDFSQMFMGTKLFNQKLPEWSFSPRTTLLEMFRGSEAYNQSMDHWMMERVASVRGMFRDAVAFNTPVKTWKFYKLRDCAYLFAAPNFNADVNDIQWPNDKTLDIDAGGIFYGALVFNKPLNKWNVSAFGQLNGMFNNAPVFNQDISMWDTSNCWRMANLFLRATAFSGDISKWDVSKVIDFSQFAANAINFKSDLSKWKVSACLNFNRMFRHALAFNSPIGDWDVSNGVDFESMFDAYHITETVTEPSYAMTFNQDISKWNVGKGVKFNAMFRKCESFNQDISNWNMANAEETGAMFQNCYLFNADLSKWNPGRLMNIKYMFYKAISFNRSIGHWDVSRCTEFTQVFLGAIEFNQNLNNWNVSNGTDFKGMFENAVKFNGTIGGWDVRKGVAFNRMFWHCFALDQDISAWRVDSGQNFQDMFRDCYYYNSPMNDWGMGNAITCTDMFTGCLTFNQPLDKWNTSRVTSMQAMFYKTPKFNQNLNSWTTSSVLNMANMFKGANVYNQPMDKWDVSKVTDFTNMFGPIADTDPYAFNQPLATWNTASAVNMTAMFRMCWNFNQKLTGWNTSKVTNMTAMFYRCERLVDPDVNGWDVSKVQSFQSMFQGCPLFYGSLFAWRPVEARNMSEMFRDAVKFNSNISSWNMTKVGTFAGMFQGARAFNQDISSWNTNAATDMSNMFFGAVAFNAPIGSWNTGNVNDMADMFHGATAFNKPIGNWNVSNVTAMNGMFTEATAFAQDISGWNVGKVANFNSMFRAALNFNSPVNDWNVSSATQMGSMFKGCPKFNQPLNKWDVSKVTNFGYMFDGWEDYPNGTTVYDMIFNQDLSMWNVSAGTTFHYMFRNCTAYNQSMANWKVGNATTMVAMFSNCKELTDPGIGIWDVRKVTLANYMFASCYKFNSNIAPWSTLVCTNMDSMFENAKLFNQDLSGWNVAKVTTHTNFDTGATAWTKPRPNFV
Physico‐chemical
properties
protein length:2311 AA
molecular weight: 260857,79000 Da
isoelectric point:6,60972
aromaticity:0,13630
hydropathy:-0,33592

Domains

Domains [InterPro]
IPR011889
Unmapped
2059–2083
QDH47009.1
1 2311
Architecture
STR
RBD
STR
RBD
STR
STR 1-1689 | RBD 1690-1773 | STR 1774-2138 | RBD 2139-2212 | STR 2213-2311
Legend: ATT STR RBD CBM LEC ENZ CHP LNK TAS TTP UNK Unmapped

Tail Spike Domain Segmentation

Tail Spike Domain Segmentation

This protein has been segmented into three structural domains: N-terminal, central domain, and C-terminal.

Domain Layout
N-terminal
Central
C-terminal
QDH47009.1
1 2311
Domain Start End Length (AA) Confidence
N-terminal 1 107 107 0,9576
Central domain 108 2300 2194 0,9379
C-terminal 2301 2311 10 0,2302
Legend: N-terminal Central domain C-terminal
3D Structure with Domain Coloring

The structure is colored according to the domain segmentation: N-terminal (blue), Central (green), C-terminal (pink).

Domain Coloring
N-terminal
1-107
Central
108-2300
C-terminal
2301-2311

Taxonomy

  Name Taxonomy ID Lineage
Phage Aeromonas phage LAh10
[NCBI]
2591025 Viruses > Duplodnaviria > Heunggongvirae > Uroviricota > Caudoviricetes
Host Aeromonas hydrophila
[NCBI]
644 cellular organisms > Bacteria > Pseudomonadati > Pseudomonadota > Gammaproteobacteria > Aeromonadales

Coding sequence (CDS)

Coding sequence (CDS)
Genbank protein accession
QDH47009.1 [NCBI]
Genbank nucleotide accession
MK838116 [NCBI]
CDS location
range 64517 -> 71452
strand +
CDS
ATGTATGTAGATAAGGATAAGCCCCAACCCCCACTGGACGAACGTACCGATCCGGTAGGGGTCGTACTTGAAGCGTTCATTGAGAACGATCGTAAAGTACAAGAAGTGACGGGTGATATCGTTGACACGATAAAGGACATCCAGAACGCACAGGCGTCAGCCACTCAGAAACTTGACAAGTTTGATGCCGACGTTAAGGCAAAACTTAAGACCCACGTTGATAAACGCGGGGCAGTTCACGGGGAGAATAAGCACACAGTAGGATTGGGGAACAAGGATAACTACCCAATGGCTACAATGCAGGAACATGTGGACGGTAAGGCTCTAGCTTACGCACACCCCTCCGGTCTCCGCGAGTTGGTGGAATCCAGAGTAAAAAGTGATCCTACCAAGTATATTCCTGCTCGAGTAATACCTCTGGCTTCTGGTGGGATGTTGGGTGATATCCCTCAGTACCACATGGATTTGAGTATTGGCGAGCTCGACCAATCCAAACAGGACCCCAATCTTCACTTAGGGGAAACCCCTTGGGAATTTAGCACCACCTCAGGCGCTCTGATATTCCCCACGATTAATAACGCACCTCACCATGGGCGATACACACAAGTCCCACAAGGAATGAACGTGTTCAGTCACGGACCTCATGGTGGGACGAAAATCCGAGTCTATAATAAGACCCTGGATAGTCGGAGGACACGTCCTTCCTTTATTCGTGGTTGGGGCGATACTTCAGGTGCCCCTGAGCAATTAGGCACTTGTGTCAAAACAGGGAGTTCGCTCTTCGACAAGACACACGTTATTTACCGTGAAAATAACTGGTTGCTTCGGTCCTTTAACAAAAACGCACTCCCCTCCGATGTGATAGAGATATATAAACACTATTCGAAAGAACCAGAAGGTATCTTCGAGTACGCAGAGGGATTTCTCTTTAACTATTGGGTAACACCCCTCAACGCTATCGTCCCCGGCGGATCAGTTGCCGAACCGCATATCAAGCTGGATATGCGGTGCTTTAAAATGGACGTGGCTGATTACCGTGCCGCCCAAGGAGCGGTGAGTCTGAATGGGGAACAGCGGACGACTCTTGGGGACACCACCCAAACGTTCTCTGCGACAGTGCCCGCGCACAACAAAATGGTCTTTGGTGGTCAAGCCGGTTCCGGGATTGGTTCTATTTATATTAGGTTGAACCGCCTCTTGTCACTCCCTGCCGGGATGGAGAATGCGTTTCTTGCCAATCTGAATCAAAACCTCGTGCGACAGTTAACCTTCGCGTGGCGCAACCGGATGAGTTACCACGGTCTGTTCAGGATCCCTGTAGGTTGGTGGAACAAACAAAAAACTAAATACTGGCACGCCTGGGTCGATTTCGAGATTATCGATCGTCCTTTCTATACTGGGCTCAATAACCAGCTTCGTGTGTTAACAGCAGATCCGTCTTGGAACGCAGTCCAGACTGTCGATGCCAACTGGAACGTGACCGGGTCAGGAATGTTCAAAGAGTACCGCGCTGACATCAAAGATAACCCGATGCACCCCTTGGCGCTCGGTGGTATCTTCGAATCCCAAGGCGGTCACATGAAGACCTATACCTTGTATGGAAGACAGTACACTGCCTACCATCAACACGACATGGGTCAATCGCTGGATTTCATCACTAAGGGTAACGCCCCTCTTCCTCCTCCGACCCAGAGCGAGTACAGTGCCAGGTCCACCTTGAACGGTACCGGTCTTTATGGGGACCACCTCCGACACATTCCTGTCGATATCGACCAACAGACCGGTTTGGTGACGTACCTTACTCACGTTCGCGATTATCGTGATCGTTATCGGTGGGCCCGTGTGGTCATCGATGGAGAACAGGAAGTCGTCCAGGACAGGTTCTACGGGAACTACCTTGGTCCCAAAGTCCAGAAATTGGACTGGCTCCCAGGGATCAAAACACCCAGACCGTTCGTTATTTCCAACGATGACTTCCAACCCACGATGAACATCAACGGGTTGGTCTTTACAGCCGAAAACAAGTTTCTTGGCTTTGGTAGTTTCAGAACCAATGAAGCTAACCAGGATTACCTTGAATACGTTGACGAGATTCGACTGGACGAGCAAGTTATTGCTTGGGTGAAGAGTAATGCCGGCGGGTTTACCAACCCTGATTTACTCTTCTTCTATTTCAGGGGGAGTCTGTTCTGGTTCTGTCGCTGTTCCGATCCGGGTGAATATCCGGCTGACGGAAAGGATTGTTACTACGGCGTAATAAAGGACTGTGGTGTCAAACTCGATGGTGGTGGTGCCCGTGTCATGGGTCCGAATGGTTCTATCGCTGATTCAATCACGATTAACAAATTCAACTTAATGACCAAAAATAGTTTACTGGTCGATCAAGCGGAAGTTTACGGGATAGATTCCCTCTCCGGTCGTGATGTTTACATCATGATGACTCAGCATCATAACGATTCAGGAACCCAAGATCATGACGTAATGGTCAACATGGGTCCTTTCAACAATTTCTATATTGAAATGAAGTTGATACGTTCTGGTGATGGCGCCATGACGTTTAGACCGAAGCCCGAGGCGATCGATCCGGTATTCCCTTACACAGAGAGCAATGGTTTCCAAATAGACTATGACGCACACACTCTGTACGGGACAAAAATTCCGGAAAGATTCCACGTAAACTATCAGTCCCCCGTGATGTTGAAGAAAGGGATGTGGAGCTACCGTAAAACCCCCAATAACTTTGGGTTCTTTACACGTCGACATGGGTTCATTACGATAACCGGTTGTGTAATGGCCAGTTACTATGGGACAGACGTTTATCCAATGGGATCGGTACTCACGGTTTCCGGGAAGAACACAGTGGTCAAGAAACCGGTCCAGTTTAGTCCCGACGACATCGATGGAAGTTCGGAACTGTTCGTCAGAATAGTGGGTGATGAGCCTGTACTCTACGGTACGAATTTTAATCCCAATGGTTACGAGGTAGAACCACATAACGGCGCTGCTCCAGCTGGTTGGGGGTCTGGTTCGAACTTCTATTACTACGACCCGGCTAGTTGGAGAAATACTTTCATGCCGGTGATAGATGGACGGCGGATGAGTTGGTATGGCTACGGTTCGACTGTACCCGTTCTTCTGGGGAAACCTGGAGAAGGACTTCCTATCAACAGGTATTACTTTGGAACCCAAAGTACCCAGATGACCTGGGACACCGCTAAGGGAAGGGTGGTGAAGTTTGATACCGAAATAGCCACCACTGTGGCTGTAAACGGAAACGCAGAAGTGACCGGAAGTGCTACGCAGTATGTTATTCCTGCACAGTACACTGGGGTGGTGACAATCGACCTTTACAACGCCAATAAACTCATCTGGGCACCAGGACTGACAAACCTGATCCGGTTGGGGAGTGAAATAATGGAGGTTGACTTCTCTGGTTCTGACCAGTTTACGATTTCGGCCCCACTACCAAAACGTGTCACTAGTCTGAAGCGTGCGTTCTATAAAGCTAAGGGTGCGAGTTATCCTGGACTTCAAAATTGGAACGTGACGGGCGTCACCGACTTCACCGAGTGTTTTGCTGAAACCACTGCATTCAACCAAGATCTTAGCAACTGGACCTTCGTTATGGGGAGGACATTGCGAGGGATGTTCCAGAACGCTGTGGCGTTCAACCAGCCTGTTCCTGGAACTTGGTTCCAATACATCCTGGATTGCTCCTACATGTTTGCTGGTTCAGGTGCGTTTAACAAACCGCTAACTGGAACTGCGTTACAGTGTAAGACAGCCATCGGTATGTTCCAAGGCTCCAAAGTGTTCAACTCCAGTATCAATGGACTCAAGTTCCTGGAAATTGTGGATATCTCTGATTTCTTCAGGGAGTCGGTCGTTTTCAACCAATCCATAAATGGATTTGACGTTTCGAAGGTTGAACGCGCTGAAAGGATGTTCCAAGGTGCGAAAGGGTTCCTTCAACCCATCACACTCAACATGAAACAATGTCATTCAGTGTCAGGGATGTTCAAAGATAACCTTGTGTTTAATGCACTTGTGAATATCTCGCTCCCTATCTGTACTGACTTCAGCCAAATGTTCATGGGAACCAAGCTGTTCAACCAGAAATTGCCTGAATGGTCATTTAGTCCCAGGACGACATTGCTAGAAATGTTCAGGGGCTCCGAAGCGTACAACCAGTCCATGGACCACTGGATGATGGAGCGAGTTGCTTCTGTTCGCGGAATGTTCCGTGATGCAGTCGCGTTCAATACTCCGGTCAAGACTTGGAAATTCTACAAGCTGAGGGATTGTGCTTATCTGTTTGCGGCACCGAACTTTAATGCTGATGTGAATGACATCCAATGGCCTAACGACAAGACCCTGGATATCGATGCCGGTGGTATTTTCTACGGTGCGTTGGTATTCAACAAACCACTGAATAAGTGGAACGTGAGTGCGTTTGGTCAGTTAAACGGCATGTTCAACAACGCTCCTGTCTTTAACCAGGATATTTCCATGTGGGATACCAGCAACTGTTGGCGAATGGCGAATTTGTTCCTGAGAGCCACAGCGTTCAGCGGGGACATTTCCAAGTGGGACGTCAGTAAGGTAATTGATTTCTCGCAGTTCGCTGCTAATGCGATCAATTTCAAATCTGACCTTTCCAAATGGAAAGTGAGTGCTTGTCTGAACTTCAACCGAATGTTCCGTCATGCCCTGGCGTTCAACTCACCAATAGGTGATTGGGATGTGAGTAATGGTGTTGACTTCGAAAGCATGTTCGATGCGTACCACATAACGGAGACTGTTACCGAACCCAGTTACGCCATGACCTTTAACCAGGACATCAGTAAGTGGAATGTAGGTAAGGGTGTCAAGTTCAATGCAATGTTCCGTAAGTGTGAGTCCTTTAACCAGGATATCTCCAACTGGAACATGGCGAATGCAGAAGAAACTGGCGCGATGTTCCAGAACTGTTACCTCTTCAACGCGGACCTCTCCAAGTGGAACCCGGGACGTTTGATGAACATCAAGTACATGTTCTATAAGGCCATCTCTTTCAACAGAAGTATTGGTCATTGGGATGTGAGTCGTTGCACAGAGTTCACCCAGGTATTCCTTGGTGCAATCGAGTTCAACCAAAACCTTAATAACTGGAACGTTTCTAACGGTACAGACTTCAAGGGGATGTTCGAGAACGCTGTCAAGTTCAACGGGACTATCGGTGGATGGGATGTTCGGAAGGGTGTAGCTTTCAACCGGATGTTCTGGCATTGCTTCGCGTTGGATCAAGACATCTCGGCTTGGAGAGTTGACTCTGGTCAAAACTTCCAGGACATGTTCCGTGATTGTTACTACTACAACTCTCCAATGAACGATTGGGGAATGGGTAATGCGATTACTTGTACCGACATGTTTACAGGTTGTCTGACGTTCAACCAGCCGTTGGATAAGTGGAATACTAGCCGTGTCACCTCGATGCAGGCGATGTTCTACAAGACACCGAAGTTCAACCAGAACCTCAATAGCTGGACGACATCCAGTGTGCTGAACATGGCTAACATGTTCAAGGGTGCGAATGTGTACAACCAACCCATGGACAAATGGGATGTGAGTAAAGTCACCGACTTTACCAACATGTTCGGCCCTATCGCCGACACTGATCCGTACGCATTTAACCAACCTCTCGCTACTTGGAACACCGCTTCTGCGGTAAACATGACCGCGATGTTCAGGATGTGTTGGAACTTCAACCAGAAACTCACTGGTTGGAATACATCCAAGGTTACCAATATGACAGCAATGTTCTATCGTTGCGAGCGTTTGGTCGATCCTGATGTCAACGGCTGGGATGTTAGTAAAGTTCAGTCCTTCCAATCCATGTTCCAAGGTTGTCCGTTGTTCTATGGTTCCCTGTTCGCCTGGCGTCCGGTGGAAGCACGGAATATGTCCGAAATGTTCCGCGATGCAGTGAAGTTCAATTCCAACATTAGTAGTTGGAACATGACTAAGGTCGGTACGTTTGCCGGCATGTTCCAGGGTGCAAGAGCGTTCAACCAAGACATCTCCAGTTGGAATACTAACGCGGCTACTGACATGTCCAACATGTTCTTTGGTGCGGTAGCTTTCAACGCACCTATTGGTAGTTGGAACACTGGTAACGTAAACGACATGGCCGATATGTTCCACGGCGCTACAGCCTTTAACAAGCCGATCGGAAACTGGAACGTGAGTAACGTAACAGCAATGAACGGAATGTTTACTGAGGCCACGGCGTTCGCCCAGGACATCTCGGGTTGGAATGTTGGTAAGGTGGCGAACTTCAACTCGATGTTCCGTGCTGCATTGAACTTCAACAGCCCGGTTAATGACTGGAATGTTAGTTCTGCGACACAGATGGGTTCGATGTTCAAGGGATGTCCTAAGTTTAACCAACCACTGAATAAGTGGGACGTTAGCAAGGTGACAAACTTTGGTTACATGTTCGATGGTTGGGAAGATTACCCTAACGGCACCACAGTTTACGACATGATCTTTAACCAAGATCTGTCCATGTGGAACGTTAGTGCTGGTACCACTTTCCATTACATGTTCCGGAACTGTACTGCGTATAACCAGTCCATGGCTAATTGGAAGGTTGGTAATGCAACGACCATGGTCGCCATGTTCTCCAACTGTAAGGAACTCACCGACCCGGGTATCGGTATTTGGGATGTTCGTAAGGTTACACTGGCTAACTACATGTTTGCTAGTTGCTACAAGTTCAATTCCAACATCGCACCTTGGAGTACGTTGGTGTGCACCAACATGGATTCCATGTTTGAGAACGCTAAGTTGTTTAACCAAGATCTGAGCGGGTGGAACGTTGCCAAGGTAACGACACACACTAACTTCGATACTGGGGCGACAGCTTGGACCAAACCTCGTCCTAACTTCGTCTAA

Genome Context

Genome Context

Tertiary structure

PDB ID
eaf9580e940bb0c1ab46e2270130c89aa061e6245c471e314f5f10a3159314a4
ColabFold
Source ColabFold
Method ColabFold
Resolution 0,6273
Oligomeric State monomer
Model Confidence
Very high
pLDDT > 90
High
90 > pLDDT > 70
Low
70 > pLDDT > 50
Very low
pLDDT < 50

Literature

Title Authors Date PMID Source
Novel bacteriophages capable of disrupting biofilms from clinical strains of Aeromonas hydrophila with intrinsic antibiotic resistance Kabwe,M., Brown,T.L., Speirs,L., Ku,H., Leach,M., Chan,H.T., Petrovski,S., Lock,P. and Tucci,J. 2020-02-14 — GenBank