Genbank accession
QEG10354.1 [GenBank]
Protein name
tail fiber protein
RBP type
TF
Evidence GenBank
Probability 1,00
TF
Evidence RBPdetect2
Probability 0,62
Protein sequence
MSKVITAMGKGGSSTPRQPKEMPDNLISKDRIKLLLAVADGEVEDDFNLKQLMFGGVPVQNESGEFNYPDVIAEFRPGTQTQDFIQGFTESSSEVTVARDVKANQPYSLTVTNKNLSAIRFRLLWPRVLQQKDNGDMVGSKVEYAFDMAVDGAAFKEVLRDNIDGKNTTGGYDRSIRINLPQDFTNQVILRVRRITPDADGVKTVDAFKVQSYAEVIDARFRYPLTALLYVEFDSDLFENNIPTISINKKWKIIQVPSNYSPITRTYNGTWDGTFKWAWSNNPAWVLYDLITNQRYGLDQRELGIPVDKWSLYEVAQYCDQMVPDNKGGEEPRYLCDMVVQDQVEAYRLIRDVCSIFRGMSFYNGESISIVVDKPRNPVYLFTNDNVIDGYFGYTFASEKSMYTTVNVMFDDEENAYTQDVEPVYDAVASRRFGHNPTDITAIGCVRRTEANRRGRWIIKTNLRSETVNFATGLQGMIPTCGDVIQVLDPHYQSNYGLILNGRLSEVAGLQVFVPMKTDAKAGDFIIVNKPDGAPVKRTIASVSKDGLTLTLNVGFGFDVEPDAVFAIERTDLAMKLYVVMSIAKGSDEEEFQYNISAVEYNPGKYDEIDYGVITDERPTSIIEPDAMPAPENVVIDSFSRVVQGLSLETMVVGWSKVRYASVYEMQWRKDGGNWLNTPRTATTETQVEGIYSGVYEVRVRAINAGGVASPWSEIVAKSLTGKVGKPKAPTGIVASDNEVLGIRVKWSMPEGSGDTAYIELHQSPDNNDANSSLLTMVPYPAHEYWHSTLRSGQVVWYKARAVDRIGNVSDWTKLARGMATDDVDQIMDTIRIEIEGTDGYKELVKDIFETNERIDEAEKTIAKVDTDAKQGITEAKNDAAEAKNRAEEVNTTAQKGINEAKAAAKAADDHATQVGKDAAAGLAEANAKTDQVRKDAEQGITEAKNDAKAAKDEALRVEKKADKGIAEAKDDAKKASDAAAEAGEKAGQAIDDAQGALNESIKNAGNIDALGNAVIENAQSQSEMYIHFEKENGDRKAEYDQAVTMVVNEQEARVEQVERLRVEMGDSITASNTELKQAIATETEARATQMNQLTATMNEKFTATDKQWREAVANEEQARVSAIGEMKAQVDKDIAATSKTLTEAIATETEARIQAINELEAKIGDGVEADLTEVKKAIATETEARVEGDRRIEAKFDKGLSDSNAKITANEKAIAEEGKARTEQYNQLKATVDSNKKNTDASITRLDTAIADETKARVSQYNELKASIEKNDKDINAKVDASVKTLTEAIATEEAARVKQYNELNAKVDSNKKATDAAISELTEVVATDREASASKITELTASVNAVAEGVVENALANDKTSRESAAGIKEVREVIANETEARAEMMTQLQTSFDAEIGKVNASVTNLSQAISDEQGARVQQYNELKASIEGQDFKTESYYYSLSQAISTEKESRVKQYEELNAKLESGQGGTDAAIKNLQEAIANEEQARVKAVSDLDANMKTEFGKTNANVKTVSDALAEEKQVRAQQYTELNGKITATDKELAAQVKRLDTAIATEKEARAEQYNQLKATVDANKKTADANYQENKTAISNETQARVKAVSDLDASMKSEFGKTNANVKTVSDALAEETKVRAQQYTELNGKITTAGTENAAQIKRLDEAIAEEKQSRTTQYNALKATVEKNDKDINTKVDANVKQLTEAIATEEAARVKQYNELKATVDSNKKAVDAAITEMNEVIATEKEATASKITDLTASMGATGEAALENALANDQESRRREAQYRNVVEVIANETQTRVTQMEQLTAMFAAGEARAAGQITNLQEVITNEKEANAKQFTEIDAKFENVDFYANANYSKLNQAIASETEARIKQYEELKASIGDDIQGEINNLQQAIADETKARTQAIQNLDAKFNTEIGKTNASVKTVSDALATEKQSTAQRFTDVNAKVDGLEKSTNASVKRLDEAIATETEARSQQYTGLSATVNKNNTDINKKVDDKDAAINKKVNDNNTAINTKVDANYKQLNTAIADETQARTQAITRLESSIGSNAAALENKLDSWSDVNSVGAMYSVKLGLKYQGRQYQAGMNMQLVGSGSNVKSQILFQADRFAIMDANNNGKYPFLVDGNQVYMQDALIKDGSISNAKIGNEIKSNNFVWDSQGWGLSKEGWFQMNGQAGGGRTLINQNGVQVFDGNNRLRVRLGLW
Physico‐chemical
properties
protein length:2206 AA
molecular weight: 242467,69280 Da
isoelectric point:4,87755
aromaticity:0,06210
hydropathy:-0,57398

Domains

Domains [InterPro]
IPR003961
STR
629–716
IPR003961
STR
630–724
IPR013783
STR
632–716
QEG10354.1
1 2206
Architecture
STR
ATT
STR
RBD
STR
RBD
STR
RBD
STR
RBD
STR 2-91 | ATT 92-219 | STR 220-1139 | RBD 1140-1192 | STR 1193-1353 | RBD 1354-1434 | STR 1435-1778 | RBD 1779-1845 | STR 1846-2013 | RBD 2014-2206
Legend: ATT STR RBD CBM LEC ENZ CHP LNK TAS TTP UNK Unmapped

Taxonomy

  Name Taxonomy ID Lineage
Phage Klebsiella phage KMI8
[NCBI]
2601619 Viruses > Duplodnaviria > Heunggongvirae > Uroviricota > Caudoviricetes
Host Klebsiella michiganensis
[NCBI]
1134687 cellular organisms > Bacteria > Pseudomonadati > Pseudomonadota > Gammaproteobacteria > Enterobacterales

Coding sequence (CDS)

Coding sequence (CDS)
Genbank protein accession
QEG10354.1 [NCBI]
Genbank nucleotide accession
MN101222.1 [NCBI]
CDS location
range 16062 -> 22682
strand +
CDS
ATGTCAAAAGTAATCACGGCAATGGGTAAGGGTGGCAGCAGTACACCGCGCCAGCCAAAAGAGATGCCCGATAACTTAATCTCTAAAGACAGAATTAAGCTACTGCTTGCGGTAGCTGATGGTGAAGTTGAAGACGACTTCAACCTTAAGCAACTGATGTTCGGCGGCGTCCCGGTTCAAAACGAAAGCGGAGAATTCAACTACCCTGACGTTATCGCAGAGTTCCGCCCAGGTACGCAGACTCAAGACTTTATTCAGGGGTTCACTGAGTCAAGTTCTGAAGTCACCGTTGCGCGAGACGTTAAAGCGAATCAACCTTACTCGCTCACTGTTACCAACAAAAACCTTTCGGCTATCCGCTTCCGCCTGTTATGGCCTCGCGTGCTTCAGCAGAAAGACAACGGCGACATGGTAGGCTCAAAAGTTGAATACGCCTTTGATATGGCGGTTGACGGCGCAGCCTTTAAAGAAGTGCTTCGCGACAACATCGACGGGAAGAATACAACTGGCGGCTACGATCGCAGCATTCGAATCAACTTACCGCAAGACTTTACGAACCAAGTGATTTTGCGAGTTCGCCGAATCACGCCGGACGCAGACGGAGTAAAGACGGTTGACGCCTTCAAGGTTCAGAGCTACGCAGAAGTTATCGATGCTCGTTTCCGTTATCCGCTAACCGCGTTGTTGTATGTTGAGTTTGATTCTGATTTGTTCGAGAACAACATCCCGACAATCTCAATCAACAAAAAGTGGAAGATTATCCAGGTTCCGAGCAACTACAGCCCAATAACCCGCACTTACAACGGGACGTGGGACGGTACTTTTAAATGGGCGTGGAGCAACAACCCGGCGTGGGTTTTGTATGACCTGATAACCAATCAGCGATACGGACTCGATCAACGCGAGTTGGGAATCCCGGTTGACAAGTGGTCACTCTATGAAGTGGCTCAGTATTGCGATCAGATGGTGCCAGATAACAAGGGCGGCGAAGAGCCTCGTTATTTGTGTGATATGGTTGTTCAGGATCAGGTTGAAGCTTACAGGTTGATTCGTGATGTGTGTTCAATCTTCCGTGGGATGAGCTTCTACAACGGCGAAAGCATCTCAATCGTAGTTGATAAGCCTCGCAACCCGGTTTACCTGTTCACTAACGACAACGTAATCGATGGTTATTTCGGATACACGTTCGCCTCCGAAAAGAGCATGTACACGACCGTTAACGTGATGTTTGACGACGAAGAGAACGCCTATACTCAGGACGTTGAGCCTGTTTATGATGCGGTCGCCAGTCGCCGATTTGGTCACAACCCAACGGACATTACAGCGATCGGATGTGTTCGACGCACTGAAGCCAACCGTCGCGGGCGCTGGATTATCAAAACCAACTTGCGCAGCGAAACGGTAAACTTCGCCACCGGGTTACAGGGCATGATCCCAACGTGCGGCGATGTTATCCAAGTTCTCGACCCGCATTACCAAAGCAACTATGGACTGATCTTAAACGGTCGCTTGTCAGAGGTTGCAGGGCTGCAAGTGTTCGTACCAATGAAGACTGACGCGAAAGCGGGCGACTTCATTATCGTTAACAAGCCGGACGGCGCACCAGTTAAGCGCACGATAGCGAGCGTATCAAAGGATGGCTTGACTTTAACGCTTAATGTTGGGTTCGGTTTTGACGTTGAGCCTGATGCTGTATTTGCGATCGAACGCACTGATTTAGCAATGAAGCTTTACGTTGTGATGAGCATCGCGAAGGGAAGCGACGAAGAAGAGTTTCAGTACAATATTTCAGCGGTTGAGTACAATCCTGGTAAGTATGATGAGATCGATTACGGCGTTATAACTGATGAGCGCCCGACCAGCATTATCGAACCGGATGCAATGCCAGCGCCTGAAAACGTAGTTATCGACTCCTTCTCGCGAGTTGTTCAGGGCTTGAGTCTTGAAACGATGGTTGTAGGGTGGAGCAAGGTTCGTTACGCATCGGTTTACGAAATGCAGTGGCGAAAGGATGGCGGCAACTGGCTTAACACTCCACGCACCGCGACAACCGAAACTCAAGTAGAAGGGATTTATTCAGGGGTTTACGAAGTCAGAGTTCGCGCCATTAACGCTGGCGGAGTTGCTTCCCCCTGGTCTGAGATAGTTGCTAAGTCGCTGACTGGTAAAGTTGGCAAGCCAAAAGCGCCAACCGGGATTGTTGCATCGGATAACGAAGTTTTAGGAATCCGTGTTAAGTGGTCAATGCCAGAAGGCTCCGGCGACACTGCTTACATTGAATTGCACCAGTCGCCAGATAACAACGATGCTAACTCTTCGCTGTTAACTATGGTTCCATATCCGGCGCATGAATATTGGCATAGCACGCTTAGAAGCGGCCAGGTTGTTTGGTACAAGGCGCGCGCAGTGGACAGGATCGGGAACGTATCGGACTGGACGAAACTTGCTCGCGGCATGGCTACCGATGACGTCGATCAGATAATGGACACTATCAGGATCGAAATCGAAGGAACGGACGGATACAAAGAGTTAGTTAAGGATATCTTCGAAACTAACGAGCGCATCGACGAAGCAGAGAAAACGATCGCGAAGGTTGACACTGACGCGAAGCAGGGAATTACGGAAGCCAAAAATGATGCAGCAGAAGCCAAGAATCGAGCCGAAGAAGTAAACACGACGGCGCAGAAAGGAATCAACGAGGCGAAGGCGGCAGCTAAAGCGGCAGACGATCACGCAACGCAGGTTGGTAAGGATGCGGCGGCGGGCCTGGCGGAAGCCAACGCAAAAACAGATCAAGTAAGAAAGGATGCAGAGCAGGGAATCACCGAAGCGAAGAACGACGCCAAAGCGGCGAAGGATGAAGCGCTAAGGGTTGAGAAGAAGGCCGACAAGGGAATCGCAGAAGCCAAAGACGATGCCAAGAAGGCAAGCGATGCGGCGGCGGAGGCTGGCGAAAAAGCAGGGCAAGCGATTGATGACGCGCAAGGGGCGCTAAATGAATCAATCAAGAACGCTGGAAACATCGACGCATTAGGAAACGCGGTTATCGAAAACGCGCAAAGCCAAAGCGAGATGTACATCCACTTTGAAAAGGAGAACGGCGATCGTAAGGCGGAATACGATCAGGCAGTAACTATGGTTGTTAACGAGCAGGAAGCAAGGGTTGAGCAGGTGGAAAGGCTGCGCGTAGAAATGGGCGACAGCATCACCGCCAGCAACACGGAGCTGAAGCAAGCAATCGCAACCGAAACGGAAGCGCGAGCAACGCAGATGAACCAGCTTACAGCAACCATGAATGAAAAGTTCACGGCAACCGATAAGCAGTGGCGCGAAGCAGTAGCCAACGAAGAGCAAGCCAGGGTATCGGCAATCGGCGAAATGAAGGCGCAAGTTGATAAGGATATTGCAGCGACCAGCAAGACGCTAACCGAAGCAATCGCAACCGAAACCGAAGCAAGGATTCAGGCGATTAACGAGCTTGAAGCTAAGATCGGCGACGGCGTGGAGGCAGACTTGACGGAGGTCAAGAAGGCAATCGCAACAGAAACGGAAGCGCGCGTTGAAGGAGATAGGCGGATTGAGGCGAAATTCGACAAGGGTTTAAGCGACTCAAACGCAAAAATTACCGCCAACGAAAAGGCCATAGCAGAAGAAGGGAAAGCGAGAACGGAGCAATACAACCAGCTTAAGGCGACGGTTGATAGCAACAAGAAAAATACCGATGCGAGCATTACGCGACTTGATACGGCGATTGCGGATGAAACAAAGGCCCGCGTTAGTCAGTACAATGAGCTTAAGGCCAGCATCGAAAAGAATGATAAGGATATCAACGCGAAGGTAGACGCCAGCGTTAAAACGCTAACCGAAGCAATCGCGACAGAAGAGGCTGCAAGAGTCAAGCAGTACAACGAGCTTAACGCAAAAGTTGACAGCAACAAGAAGGCAACGGATGCGGCAATCTCTGAGTTAACGGAAGTGGTCGCTACTGATCGGGAAGCAAGCGCCAGCAAGATCACGGAGCTAACCGCCAGTGTTAACGCAGTAGCGGAAGGTGTGGTTGAGAACGCTTTAGCCAACGACAAAACAAGCCGAGAATCAGCGGCTGGAATCAAGGAGGTTCGTGAGGTAATCGCAAACGAGACTGAAGCAAGGGCGGAAATGATGACTCAGTTACAAACATCATTCGACGCAGAGATCGGGAAGGTTAACGCGAGCGTTACCAACTTGAGCCAGGCTATCAGTGACGAGCAAGGCGCTAGAGTTCAGCAGTACAACGAGCTTAAGGCGAGCATTGAGGGGCAGGATTTCAAAACAGAATCCTATTACTACTCACTAAGCCAAGCCATAAGCACCGAGAAAGAGTCGCGAGTTAAGCAGTACGAAGAGCTTAACGCAAAACTTGAATCCGGTCAGGGTGGTACTGATGCGGCGATTAAGAACTTGCAGGAAGCGATCGCCAACGAGGAACAGGCGCGAGTTAAGGCAGTAAGCGATCTTGACGCCAACATGAAAACGGAGTTCGGAAAAACAAACGCCAACGTCAAGACAGTTAGCGACGCACTGGCAGAAGAGAAGCAGGTTAGAGCGCAGCAGTATACGGAGCTAAACGGGAAGATTACCGCGACAGACAAAGAGCTAGCAGCACAGGTTAAGCGTCTGGATACGGCAATCGCCACGGAAAAGGAAGCGCGCGCAGAGCAGTACAACCAGCTTAAAGCAACGGTAGACGCCAACAAGAAAACGGCGGACGCCAACTATCAGGAGAACAAAACAGCGATCTCAAACGAGACGCAAGCAAGAGTTAAGGCAGTAAGCGACCTTGACGCGAGCATGAAATCCGAGTTCGGCAAGACTAACGCGAACGTTAAAACGGTATCGGATGCACTAGCGGAAGAAACCAAAGTTCGGGCGCAGCAGTACACCGAATTGAACGGCAAGATCACGACAGCGGGAACGGAAAACGCAGCGCAGATTAAACGCCTTGATGAAGCAATCGCGGAAGAGAAGCAGTCCCGCACTACTCAATACAACGCCCTGAAGGCCACGGTTGAGAAAAACGACAAGGACATTAACACCAAAGTTGATGCCAACGTTAAGCAGTTAACGGAAGCTATCGCCACCGAGGAAGCGGCAAGGGTTAAGCAGTACAACGAGCTTAAGGCAACGGTAGACAGCAACAAAAAAGCGGTTGACGCTGCAATCACTGAAATGAACGAAGTGATTGCTACTGAGAAGGAGGCCACCGCAAGCAAGATTACCGACTTGACCGCAAGCATGGGGGCAACTGGCGAGGCGGCATTGGAAAACGCATTAGCCAACGACCAAGAGTCTCGACGCCGGGAAGCGCAATATCGTAACGTGGTGGAAGTTATCGCCAACGAAACGCAAACGCGAGTCACTCAGATGGAGCAGCTAACAGCGATGTTTGCAGCGGGAGAGGCTAGGGCAGCAGGGCAGATTACTAACTTGCAGGAGGTGATCACTAACGAAAAAGAGGCGAACGCCAAGCAGTTTACGGAGATTGACGCCAAGTTTGAGAATGTGGATTTTTACGCTAACGCGAATTACTCCAAGCTAAACCAGGCTATAGCGAGCGAGACGGAAGCGAGAATCAAGCAATACGAAGAGCTTAAGGCCAGCATCGGCGACGATATCCAGGGCGAGATTAACAATCTACAGCAGGCTATCGCAGACGAAACAAAAGCCAGAACACAAGCGATTCAGAATCTTGACGCGAAGTTTAACACCGAGATCGGCAAGACGAACGCGAGCGTTAAAACGGTATCCGATGCACTGGCTACCGAAAAACAATCGACGGCGCAGCGGTTCACGGATGTTAACGCCAAAGTTGACGGACTGGAGAAGTCAACTAACGCTTCAGTTAAGCGACTGGATGAGGCAATCGCCACGGAGACGGAAGCGAGATCGCAGCAGTATACGGGATTGAGCGCCACCGTTAACAAGAATAATACGGACATTAACAAGAAGGTTGACGATAAAGACGCGGCTATCAACAAAAAGGTTAATGACAACAACACCGCCATTAACACAAAGGTTGATGCGAACTACAAACAGCTAAACACCGCGATCGCGGATGAGACGCAGGCCAGGACGCAGGCAATCACAAGGCTGGAATCGTCAATCGGTAGTAACGCGGCAGCACTGGAAAACAAGCTTGACTCATGGAGCGACGTTAACTCAGTGGGCGCAATGTATAGCGTTAAGTTGGGCCTCAAGTACCAGGGCAGGCAGTATCAAGCCGGGATGAACATGCAGCTAGTAGGAAGCGGCTCAAATGTTAAATCTCAGATACTTTTCCAGGCTGACAGATTCGCTATCATGGATGCCAATAATAACGGGAAATATCCTTTCCTTGTTGATGGTAATCAGGTCTATATGCAGGATGCACTAATCAAGGACGGCTCGATCTCGAACGCAAAGATCGGGAACGAGATAAAATCGAACAACTTTGTTTGGGACTCTCAAGGATGGGGTTTAAGCAAAGAGGGCTGGTTCCAGATGAATGGTCAAGCAGGAGGTGGTAGGACGTTGATTAATCAGAACGGAGTTCAGGTATTCGACGGCAACAATAGATTGAGGGTTAGATTAGGATTGTGGTAA

Genome Context

Genome Context

Tertiary structure

PDB ID
5833977832950a8f6c8975b7d87042396361ff13b6f29bb7ff7ff624b623db09
ColabFold
Source ColabFold
Method ColabFold
Resolution 0,6138
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
Comparative genomics of Klebsiella bacteriophages in the elucidation of host range specificity Ku,H., Brown,T., Kabwe,M., Chan,H.T., Petrovski,S. and Tucci,J. 2022-11-21 GenBank