Genbank accession
YP_009226011.1 [GenBank]
Protein name
KP36gp50
RBP type
TSP
Evidence DepoScope
Probability 1,00
TSP
Evidence RBPdetect
Probability 0,91
TSP
Evidence RBPdetect2
Probability 0,95
TSP
Evidence DepoCatalog
Probability 1,00
Protein sequence
MALYREGKAAMAADGTVTGTGTKWQSSLSLIRPGATIMFLSSPIQMAVVNKVVSDTEIKAITTNGAVVASSDYAILLSDSLTVDGLAQDVAETLRYYQSQETVIADAVEFFKNFDFDSLQDLANQINADSESAQSSAAAAAASENAAKTSENNAKSSEVAAENARDQVQQIINDAGDASTLVVLANPDGFRHIGRCKDIATLRTIEPVESRQVIEVLSYYNGLAQGGGTFWYDPNDSVTEDNGGSCIVTNGGKRWKRIIDGAVDVLSFGAKPDDISFDSAPHIQAALDNHDAVSLYGRSYYIGSPIYMPSRTVFDGMGGKLTSIAPSTAGFMAGSIFAPGNYHPDFWEEVPKVAATTTLGSANITLADPNIVNVGDIIRLSSTTGVLSAGFFVSEYLQMARVLSKTGNVITIDGPVESQLTLVAANANQPGYLARFNKPLFCCVDSIIQNIEIDTWDYWTADSATYNVKFSNIWGSAKAVAYGNTFCRSLFEDIRIVFSGRVSELAFGSHDTNLVRITAIASPKGLSASVVFGWAESGRRCTIDTFSIMLNANANPSTVIRVSGHRDSLIKNGSIYVHNNTNNILSVENYGTTADGVRPDCDNITFENVSIFVTGSSAVVCDVYKSADNSVIKNVAFKNIKYFGPTPSVALYRARGTLANFVKGVQANISSDTGGAIVLSNSENNVLTFTGPVSVTSLVSAAAKNTLSIRNYARSSAKANNFTQESTLNVTDTTANAVSKEFTYPAGSLRINDKIKLSLGGSTAGTVGKKTVQVGFIGSDGAFKYVELAALATDQVYWTMEVEISFLRTTNSQTNELETSAIITSFLSKGAATGAALSGSRALAVVSDLALSNFVVQVRAWKENAADGLSLSRMNLQLEDLTA
Physico‐chemical
properties
protein length:883 AA
molecular weight: 93882,94040 Da
isoelectric point:5,00316
aromaticity:0,08267
hydropathy:-0,00057

Domains

Domains [InterPro]
YP_009226011.1
1 883
Legend: Pfam SMART CDD TIGRFAM HAMAP SUPFAM PRINTS Gene3D PANTHER Other

Taxonomy

  Name Taxonomy ID Lineage
Phage Klebsiella phage KP36
[NCBI]
1129191 Viruses > Duplodnaviria > Heunggongvirae > Uroviricota > Caudoviricetes
Host No host information

Coding sequence (CDS)

Coding sequence (CDS)
Genbank protein accession
KP36gp50_CDS [NCBI]
Genbank nucleotide accession
YP_009226011.1 [NCBI]
CDS location
range 1 -> 2652
strand +
CDS
TTATGCCGTCAAATCTTCTAACTGAAGATTCATTCTTGACAGTGACAATCCATCTGCCGCATTTTCCTTCCAGGCGCGAACTTGGACGACAAAATTCGAGAGCGCTAAATCCGACACAACCGCCAGCGCCCTTGAGCCAGATAATGCCGCGCCGGTAGCCGCACCCTTCGAAAGGAAGGAAGTGATAATAGCCGAGGTCTCAAGCTCATTTGTCTGGCTATTCGTCGTCCTGAGGAACGATATTTCAACCTCCATCGTCCAATATACTTGATCGGTTGCCAAAGCTGCCAACTCAACGTACTTGAACGCACCGTCAGACCCAATGAAACCCACCTGTACGGTCTTTTTACCGACAGTCCCAGCCGTACTACCACCCAACGACAGCTTGATCTTATCGTTAATTCTGAGAGAGCCAGCAGGATATGTAAATTCTTTGCTGACAGCGTTTGCCGTAGTATCAGTCACGTTCAAGGTAGACTCTTGCGTGAAATTGTTCGCCTTCGCGCTAGATCTGGCATAGTTTCTGATGGACAACGTATTTTTTGCGGCAGCAGAGACGAGCGATGTAACGCTCACCGGGCCGGTAAATGTCAGAACGTTATTTTCCGAATTGCTGAGAACAATGGCTCCGCCAGTATCGGAAGATATGTTCGCCTGAACTCCCTTCACGAAATTCGCCAACGTTCCGCGAGCGCGGTATAATGCGACGCTTGGTGTAGGCCCGAAATATTTTATGTTTTTAAACGCAACATTTTTAATAACCGAGTTGTCGGCGGATTTATATACATCACACACTACAGCAGATGATCCAGTTACGAAGATGCTCACGTTCTCGAACGTTATGTTGTCGCAATCTGGTCTAACACCATCAGCGGTAGTGCCATAGTTCTCGACGCTAAGGATATTATTGGTGTTGTTATGGACATATATGCTTCCGTTCTTGATCAAGCTATCCCGATGACCAGATACACGAATTACCGTGCTGGGATTAGCATTAGCGTTCAACATGATAGAAAAGGTATCAATCGTGCAGCGCCTGCCAGATTCAGCCCAACCAAAGACAACTGATGCAGATAAGCCTTTAGGGCTGGCAATAGCCGTGATGCGAACTAGGTTCGTGTCATGCGACCCAAAAGCCAACTCCGATACACGCCCGGAGAAAACAATCCGTATATCCTCGAAAAGTGAACGGCAGAAGGTGTTGCCATAGGCCACTGCCTTTGCTGAACCCCATATATTCGAGAATTTTACGTTATAAGTTGCTGAGTCGGCAGTCCAGTAATCCCAGGTATCGATTTCGATATTCTGAATTATTGAATCGACACAGCAGAACAACGGTTTATTGAAGCGCGCAAGATACCCTGGCTGGTTGGCATTAGCTGCCACCAACGTAAGCTGCGATTCAACCGGGCCATCAATCGTGATGACATTGCCTGTCTTACTCAAGACGCGGGCCATCTGTAGATACTCGGAAACGAAGAACCCGGCGCTCAGGACACCAGTGGTTGACGAAAGCCGGATGATGTCTCCAACGTTCACTATATTCGGATCTGCCAGCGTGATGTTGGCACTCCCAAGCGTCGTGGTGGCCGCTACCTTCGGAACCTCTTCCCAAAAGTCTGGGTGGTAGTTTCCAGGCGCGAAGATTGACCCAGCCATGAAGCCAGCCGTGCTTGGAGCTATGGAGGTTAGCTTTCCTCCCATACCATCGAACACAGTCCTTGACGGCATATAGATCGGGCTTCCGATATAATAGCTGCGTCCGTACAATGATACTGCGTCATGGTTGTCAAGTGCGGCTTGAATGTGAGGGGCGCTATCAAAACTTATATCGTCTGGCTTGGCTCCAAAGCTCAAAACATCTACCGCTCCGTCAATGATTCGCTTCCAGCGCTTTCCGCCATTTGTGACAATACAACTCCCGCCATTGTCCTCAGTTACTGAATCGTTAGGATCGTACCAGAATGTTCCGCCTCCTTGTGCCAAGCCGTTGTAGTAGCTTAGAACCTCAATAACCTGCCGGCTTTCTACTGGCTCAATTGTCCTCAGAGTGGCAATATCTTTGCAACGCCCTATGTGCCTAAATCCATCAGGATTCGCCAGCACAACCAGTGTTGATGCGTCTCCAGCGTCATTAATGATCTGCTGAACTTGGTCTCTTGCATTCTCCGCAGCCACCTCTGAAGACTTGGCGTTATTCTCTGAAGTTTTGGCCGCATTTTCAGACGCAGCAGCAGCCGCAGCGCTTGATTGTGCAGATTCAGAGTCTGCATTAATTTGGTTAGCAAGATCTTGCAGGGAATCGAAATCAAAGTTCTTGAAGAACTCGACTGCATCCGCGATCACGGTTTCCTGTGACTGATAGTAGCGCAGAGTTTCAGCAACATCTTGCGCCAGACCGTCAACGGTAAGTGAGTCACTTAACAGGATCGCGTAATCGCTAGACGCTACGACAGCGCCGTTTGTGGTGATGGCTTTAATTTCAGTATCGCTAACCACCTTGTTTACGACGGCCATTTGAATTGGTGACGACAAAAACATAATCGTCGCGCCTGGGCGAATCAGCGAAAGCGAAGATTGCCATTTTGTGCCAGTCCCGGTAACGGTTCCGTCTGCGGCCATAGCCGCTTTGCCTTCTCTGTATAGTGCCAT

DepoCatalog

K-type Target
Number of Rings

12

Domain Ranges
N-terminal Domain
1-277
Central Domain
278-710
C-terminal Domain
711-883
Experimentally Tested K-types
KL101-KL170 KL101-KL170
With exceptions: KL104, KL106, KL110, KL115, KL117, KL121, KL126, KL128, KL129, KL135, KL136, KL138, KL145, KL147-KL152, KL155-KL157, KL159-KL162, KL164, KL165
Phage Morphotype

Sipho-type

Tertiary structure

1 / 2
PDB ID
Source
Method
Resolution
Oligomeric State

Literature

Title Authors Date PMID Source
Capsule-Targeting Depolymerase, Derived from Klebsiella KP36 Phage, as a Tool for the Development of Anti-Virulent Strategy Majkowska-Skrobek, Grażyna; Łątka, Agnieszka; Berisio, Rita; Maciejewska, Barbara; Squeglia, Flavia; Romano, Maria; Lavigne, Rob; Struve, Carsten; Drulis-Kawa, Zuzanna 2016-01-01 10.3390/v8120324