Genbank accession
QZI86393.1 [GenBank]
Protein name
hypothetical protein
RBP type
TSP
Evidence DepoScope
Probability 1,00
TSP
Evidence RBPdetect
Probability 0,91
TSP
Evidence RBPdetect2
Probability 0,95
TF
Evidence Phold
Probability 1,00
Protein sequence
MPLVLDPIQSGYNLSKINDNFQRIEDAWDEKLDRVNSGSFYNQMDQTLDMNSNEIINVKVGDTDDSLVNKGYVDQQDELRVLKAGDSMSGQLNTIDPVQPSNATNKRYVDGMIATIDGVEGIVPLVSPRQQGDGVTTVFPTIVTSQHPTQSYSVNLDGVTQRPQTDFTADTNGNVVFAEAPEVGVDIDITVFEPVNLQEAADLSQVTATGSTTPRTLADRFAGTANVVDFGAVGDGVADDTSAINLASASGKSVVFPKGRYRCTGKLTTSVSWEFLDGASIVIAEPVANMIEIVPEYTKTILGQGDVVIGDFVKYANKLSNLDDYPNHFMVVDSTQLDFNRNHASMQTYTKNSVTLLGENGVLAYPLTTTFNSISRIELSPTNIKRAIFKNLTVELDGAPTTPENMISVTRNCVDFHNTRYVDKTTNSGQIDLQSFVSISYAFDVTFDKITCDALSEGRLDFNYTILTWKSAKIRIKELRSFDGWAQLDGNHTRDVVVRDSTIDRIGGHYAYWDCTFDNITANQSRCIDVSGGGRLDVRNLNIRVNPDFLSGNELYAVAIRGDYAAEWDGDVLVDGVTVDARSIKGELTSETIFNIFSSFADSSSAGFNYGRPTTVAKTVTVRAVRFYCSEDSGAKWVLRACALGYVGAPVSDAQYTESVTVEDVAIVTKDTSFYHQIRALDWFGDVKPATIAQTTSINIKGVNNNDPAFAGQSPSSGLIDQVPTLSILNQDRNSIDVAVSDCNWLKIHSNGHPASPTKIDVVNSRLYYVGGDFDNRMTFNGCNWADTRFEGSWKGTVNSGWFEDYEKSGGGFGNIGFPNNIETNLSGVANVLLGANTTMTTSVHDSYTIYEGTTDGTYWQDTVRPIPNPTFRSGANNPTGVVTPLYLGEEYLDTSPGQFNFYKATGLAISNWKQITA
Physico‐chemical
properties
protein length:918 AA
molecular weight: 100244,90990 Da
isoelectric point:4,57516
aromaticity:0,09368
hydropathy:-0,27222

Domains

Domains [InterPro]
QZI86393.1
1 918
Legend: Pfam SMART CDD TIGRFAM HAMAP SUPFAM PRINTS Gene3D PANTHER Other

Taxonomy

  Name Taxonomy ID Lineage
Phage Vibrio phage PS35B.1
[NCBI]
2859297 Viruses > Duplodnaviria > Heunggongvirae > Uroviricota > Caudoviricetes
Host No host information

Coding sequence (CDS)

Coding sequence (CDS)
Genbank protein accession
QZI86393.1 [NCBI]
Genbank nucleotide accession
MW865303 [NCBI]
CDS location
range 1646 -> 4402
strand -
CDS
ATGCCATTAGTATTAGATCCGATTCAATCGGGTTATAACTTGTCAAAGATAAATGACAACTTCCAGCGTATTGAAGATGCGTGGGATGAGAAATTAGATAGAGTGAACTCTGGTAGTTTTTACAACCAGATGGATCAAACGTTAGATATGAACTCTAACGAAATTATTAATGTTAAAGTAGGTGACACTGACGATAGTCTTGTTAATAAAGGTTATGTAGACCAACAAGATGAGTTACGCGTACTGAAAGCTGGTGACAGCATGTCAGGTCAATTAAATACTATTGATCCTGTACAGCCGAGTAACGCAACTAACAAACGCTATGTGGATGGCATGATTGCTACTATTGATGGCGTTGAGGGTATTGTGCCTCTTGTATCTCCGCGTCAACAAGGCGATGGTGTAACAACTGTATTTCCTACTATCGTAACAAGTCAACACCCTACACAGTCTTATTCAGTGAATCTAGACGGTGTTACTCAGCGTCCTCAAACAGATTTCACTGCTGACACTAACGGTAATGTTGTATTCGCTGAAGCTCCTGAAGTAGGCGTGGATATTGACATCACTGTGTTCGAACCTGTTAACCTTCAAGAAGCAGCTGACCTGTCCCAAGTGACAGCTACAGGTTCTACTACTCCGCGTACGCTAGCTGATCGTTTTGCTGGCACAGCTAATGTAGTAGATTTTGGAGCGGTGGGTGATGGAGTCGCTGATGATACTTCAGCAATAAATCTAGCGTCTGCATCTGGGAAATCAGTAGTATTTCCTAAAGGTAGATACCGTTGTACAGGCAAGCTTACAACATCTGTTTCATGGGAATTCCTAGATGGAGCTTCGATTGTTATTGCAGAACCTGTAGCCAATATGATTGAAATCGTTCCTGAGTATACCAAGACAATTTTAGGGCAAGGTGATGTGGTAATCGGAGACTTTGTTAAGTATGCTAACAAGCTTTCTAACCTAGATGACTATCCTAACCATTTTATGGTTGTAGACTCAACGCAGTTAGATTTCAACAGAAACCATGCAAGTATGCAGACTTATACAAAAAACTCTGTAACTCTTTTAGGTGAAAACGGTGTATTGGCATACCCTCTTACAACAACTTTTAATTCTATTTCAAGAATCGAATTATCACCTACAAATATAAAAAGAGCCATCTTTAAAAACTTGACTGTAGAGTTGGACGGTGCCCCAACCACCCCTGAGAATATGATCTCGGTAACACGTAACTGCGTAGACTTCCACAATACGCGATACGTAGACAAAACTACTAACTCAGGTCAAATAGATTTACAGTCATTCGTTTCAATATCTTATGCATTCGATGTCACTTTTGATAAGATAACGTGCGACGCTTTATCAGAAGGAAGGTTGGATTTTAACTATACGATATTGACATGGAAATCAGCTAAGATACGTATAAAGGAGTTACGTTCTTTTGACGGCTGGGCTCAGCTAGACGGCAACCATACTCGTGATGTTGTAGTCAGAGACTCCACTATTGACAGGATAGGCGGACATTATGCGTATTGGGATTGCACCTTCGACAATATAACAGCTAACCAGTCCAGATGTATTGATGTCAGCGGAGGAGGTCGACTAGATGTTCGAAACTTGAATATCAGAGTGAACCCTGATTTCCTTTCAGGGAATGAACTCTATGCTGTAGCTATACGCGGTGACTATGCAGCAGAGTGGGATGGAGATGTACTGGTTGATGGTGTAACAGTAGACGCTCGTTCCATCAAAGGCGAGTTGACTTCAGAGACGATCTTCAATATCTTTTCCAGTTTTGCAGATTCTTCAAGTGCAGGTTTTAACTATGGAAGACCCACTACAGTAGCTAAGACAGTTACAGTACGAGCGGTACGTTTCTACTGTAGCGAAGATTCCGGTGCAAAATGGGTACTTCGCGCCTGTGCGCTAGGCTACGTAGGAGCTCCTGTTTCTGACGCGCAGTATACTGAAAGTGTGACTGTTGAAGACGTAGCTATCGTTACAAAGGATACATCCTTCTACCATCAGATCAGGGCTCTGGATTGGTTTGGCGATGTTAAGCCAGCTACAATTGCACAGACTACCAGTATTAACATCAAAGGTGTTAATAATAACGACCCTGCATTTGCAGGGCAATCTCCTAGTTCTGGATTGATTGACCAAGTACCGACCCTATCTATTCTTAACCAAGATCGTAACAGTATAGATGTGGCAGTGTCCGACTGCAATTGGCTGAAGATCCACTCTAATGGGCATCCTGCTTCACCCACTAAGATAGATGTTGTAAATTCAAGACTGTATTACGTAGGAGGGGATTTTGACAACAGGATGACTTTCAATGGCTGCAACTGGGCAGATACTCGATTTGAAGGTTCTTGGAAAGGTACTGTTAATAGCGGATGGTTCGAAGACTATGAAAAATCTGGAGGAGGTTTCGGCAATATTGGTTTCCCTAACAATATCGAAACGAACCTATCAGGGGTAGCCAATGTACTGCTTGGGGCAAACACCACTATGACTACCAGCGTACACGATTCATATACTATATATGAGGGCACAACCGATGGGACTTATTGGCAGGACACTGTTCGCCCAATTCCTAATCCAACTTTTAGATCAGGAGCTAATAACCCTACAGGGGTAGTGACTCCACTGTACCTTGGGGAAGAGTACCTAGATACTTCCCCTGGTCAGTTTAACTTCTATAAAGCTACAGGTCTCGCAATATCCAATTGGAAACAGATTACAGCTTAA

Tertiary structure

PDB ID
e88a64a280a24873f764af8e91c9871cae7266086196068ee85495e49d3b0c7d
ESMFold
Source ESMFold
Method ESMFold
Resolution 0,6755
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
Rapid evolution of virus immunity in the wild Piel,D., Bruto,M., Labreuche,Y., Blanquart,F., Chenivesse,S., Lepanse,S., James,A., Garcia Cruz,R., Dubert,J., Petton,B., Lieberman,E., Wegner,M.K., Hussain,F.A., Kauffman,K.K., Polz,M.F., Gandon,S., Bikard,D. and Le Roux,F. 2024-02-09 GenBank