Protein
View in Explore- Accession
- GBH001_056 [Not found in db]
- Protein name
- GBH001_056 (depolymerase)
- RBP type
-
TSP
- Protein sequence
-
MALIRLVAPERVFSDLASMVAYPNFQVQDKIILLGSGGGDFTFTTTASVVDNGTVFAVPGGYLLRKFVGPAYSSWFSNWAGIVTFMSAPNRHLVVDTVLQATSVLNIKSNSTLEFTDTGRILPDAAVARQVLNIIGSAPSAFVPLAADAAAGSKVITVTAGALSVVKGTYLYLRSNKLCDGGPNTHGVKISQIRKVVGVSTSGSITSIRLDKALHYNYYLSDAAEVGIPTMVENVTLVSPYINEFGYDDLNRFFTIGISANFAADLHIQDGVIIGNKRPGASDIEGRSAIKFNNCVDSTVKGTYFYNIGWYGVEVIGCSEDTEVHDIHAMDVRHAISLNWQSTADGDKWGEPIEFLGVNCEAYSTTHAGFDTHDIGKRVKFVRCVSYDSADDGFQARTNGVEYLNCRAYRAALDGFASSTGVGFPIYRECLAYDNVRSGFNCSYGGGYVYDCEAHGSRNGVRTNGGCVKGGRYTRNSSSHIFVTKDVAETAQTSLEIDGVSMRYDGTGRAVYFHGTMGINPTLVSMSNNDMTGHGLSWALLSGYTVQPTPPRMSRNLLDDTSIRGVATLVAGEATVNARVRGNFGSVANSFKWVSEVKLTRLTFPSSAGALTVTSVAQNRDVPTPNPDLNSFVIRSSNAADVSQVAWEVYL
- Physico‐chemical
properties -
protein length: 651 AA molecular weight: 69983,79230 Da isoelectric point: 6,12823 aromaticity: 0,09831 hydropathy: -0,02197
Domains
Domains [InterPro]
IPR057094
ENZ
1–65
ENZ
1–65
1
651
Architecture
ENZ 1-64 | ATT 65-140 | STR 180-651
Legend:
ATT
STR
RBD
CBM
LEC
ENZ
CHP
LNK
TAS
TTP
UNK
Unmapped
Taxonomy
| Name | Taxonomy ID | Lineage | |
|---|---|---|---|
| Phage |
Klebsiella phage GBH001 [NCBI] |
999002080 | No lineage information |
| Host | No host information | ||
Coding sequence (CDS)
Coding sequence (CDS)
Genbank protein accession
GBH001_056
[NCBI]
Genbank nucleotide accession
CDS location
range ->
strand
strand
CDS
ATGGCATTAATTAGATTAGTAGCTCCCGAGCGGGTGTTCTCCGACTTGGCGAGCATGGTAGCATACCCAAACTTTCAGGTGCAGGACAAGATTATCCTACTGGGCAGTGGTGGTGGGGATTTCACCTTTACTACTACTGCGTCGGTAGTGGATAACGGAACTGTGTTTGCTGTACCCGGTGGGTACCTGCTCCGTAAATTCGTGGGCCCAGCATACAGCTCCTGGTTCAGCAACTGGGCGGGTATAGTCACGTTCATGAGTGCGCCTAATAGGCACCTGGTTGTGGACACGGTCCTGCAGGCCACGAGTGTGCTCAACATCAAAAGCAACTCTACGCTAGAGTTTACCGATACCGGAAGAATCCTACCGGATGCTGCGGTTGCACGTCAAGTGCTTAATATTATCGGCTCTGCGCCCTCGGCGTTCGTGCCGTTAGCAGCGGATGCCGCTGCAGGTAGCAAAGTCATTACGGTGACTGCTGGGGCTTTGTCTGTGGTAAAAGGTACGTACTTGTATCTTCGCTCTAACAAGCTGTGCGACGGTGGGCCTAACACGCACGGGGTAAAGATTTCCCAGATTAGGAAAGTGGTGGGTGTTAGCACCTCCGGTAGCATCACCAGCATTCGGCTGGATAAAGCGCTGCACTATAACTACTACCTGTCTGATGCCGCGGAAGTAGGTATCCCGACAATGGTGGAGAACGTAACCTTAGTATCCCCGTACATCAACGAGTTCGGCTACGACGACTTGAACCGGTTCTTTACTATCGGTATCTCTGCCAACTTTGCCGCGGACTTGCACATCCAGGATGGGGTTATTATTGGCAACAAACGCCCCGGGGCTTCTGATATAGAAGGGCGTAGTGCTATCAAGTTCAATAACTGCGTAGACAGCACCGTTAAGGGTACGTACTTCTACAACATCGGATGGTACGGGGTAGAGGTGATCGGCTGCTCAGAGGACACGGAAGTACATGATATCCACGCTATGGACGTACGCCACGCAATCTCTCTGAACTGGCAGAGCACTGCAGACGGGGACAAGTGGGGAGAGCCTATCGAGTTCTTAGGCGTTAACTGCGAAGCCTACAGCACAACCCATGCTGGATTTGATACTCACGACATTGGTAAGCGTGTGAAGTTCGTTCGCTGCGTTTCATACGACAGTGCTGACGATGGGTTCCAAGCCCGCACTAATGGGGTAGAGTACTTGAACTGTCGAGCTTACCGCGCCGCCCTAGACGGATTCGCCTCCAGCACCGGCGTAGGCTTCCCTATCTATAGAGAATGCTTAGCTTATGACAACGTACGCTCTGGATTTAACTGTTCGTACGGTGGTGGCTACGTTTATGACTGTGAGGCTCACGGTAGCCGGAATGGTGTCCGCACCAACGGGGGTTGTGTTAAGGGTGGTCGGTACACTCGCAACTCCAGCTCGCACATCTTCGTCACTAAGGATGTAGCTGAGACAGCGCAGACGTCCCTGGAGATTGATGGCGTGAGCATGCGCTACGATGGTACCGGAAGAGCTGTGTACTTCCACGGGACTATGGGCATTAACCCTACCCTGGTATCTATGTCCAATAATGACATGACCGGTCACGGCTTGTCCTGGGCATTACTGAGTGGCTACACTGTTCAACCTACACCCCCGCGCATGTCCAGGAACTTACTGGACGACACAAGCATTCGCGGAGTGGCAACGCTGGTTGCTGGTGAGGCTACAGTCAACGCCCGTGTACGCGGAAACTTTGGCAGTGTAGCTAACTCCTTCAAGTGGGTGTCCGAGGTTAAGTTGACGCGGTTGACCTTTCCCTCTAGTGCTGGGGCCTTGACGGTTACTAGCGTAGCTCAGAACCGGGATGTGCCTACACCTAACCCGGACCTAAACAGCTTCGTGATTAGGAGCAGTAACGCAGCTGACGTATCCCAGGTAGCCTGGGAGGTGTATCTCCTGA
Genome Context
Genome Context
Tertiary structure
PDB ID
e01e5e43cd9973f4544779fe9805f10ad703fd5d8c66e0b1874abca4791e5512
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
Literature
| Title | Authors | Date | PMID | Source |
|---|---|---|---|---|
| KLEOPATRA: Klebsiella depolymerase database | — | — | 10.1101/2025.09.09.675204 | DOI |
| DepoCatalog: Mapping the Diversity of 105 Recombinant Klebsiella Phage Depolymerases Across Sequence, Structure, and Substrate Specificity | DepoCatalog: Mapping the Diversity of 105 Recombinant Klebsiella Phage Depolymerases Across Sequence, Structure, and Substrate Specificity | — | https://doi.org/10.1101/2025.09.09.675204 | bioRxiv |