UniProt accession
A0A6J5NQ56 [UniProt]
Protein name
Collagen triple helix repeat
RBP type
TF
Evidence RBPdetect2
Probability 0,91
Protein sequence
MAIYDNLNTIRRLTNSSLTSIIDVTNLNFRNISEANLEFLNNIQYNEATNSFVVYSGTFDLVNVTNTLSLTSNGVPTFTINSLGQAEGQEILVQVAETKRLRFTDFPDWPDQGVPGEIVYTGIQNQKPEFGEDFIGFLQGRGWVSLTTGGSGIFTQVDGSPGFPDTPAPGTGLVWVGAPGLQSSTTPTSQELYFTDENGDIFSLIDVTSNDWEVIGNDLKMIPTGKVLPKLSGLNDLGSSTSQWRKLYLSNGIALTASSGLGIVNSGADLIIYANESGAGEITLSAYDKINLSFGIEANIGSVFTVYNNQIQYANGTEGAGYVLTSDASGNASWQPSPALNFAYQETISIVADVPYTITHNLGTENIILSAVDLPIEEEVDVIVKSHTLNTVDVVSSVSTTLRVSIVAVGGVSSPGGSGTSGSSGTSGTSGATGSSGTSGSSGSSGTRGTSGTSGSSGAAGSAGSSGTSGTSGSTGSGGTSGTSGSSGAAGSSGSSGSSGSRGQSGSSGTSGSSGSSGTRGTSGTSGSSGISGTSGTSGSSGINGTSGTSGFSGTSGSSGTSGVSGTDGTSGSSGFTGSSGTSGSDGSSGTSGTSGTSGTDGSSGTSGTSGTDGTSGTSGIDGTSGTSGSSGSSGINGSSGSSGIDGSSGSSGIDGSSGTSGIDGTSGTSGIEGTSGTSGTSGTDGSSGTSGSSGIDGSSGSSGIDGSSGTSGIDGSSGTSGIDGTSGTSGTSGASGTDGSSGSSGTSGTSGSSGTDGSSGTSGIDGTSGTSGTSGIDGSSGTSGTSGTSGTDGTSGTSGTSGTDGTSGTSGTSGTDGSSGTSGTDGTSGTSGTNGTDGTSGTSGTSGTSGTDGSSGTSGTSGTSGTDGSSGTSGTSGSSGSSGTDGSSGTSGTSGTDGSSGTSGADGSSGTSGIDGTSGTSGTSGTDGSSGTSGIDGTSGTSGTSGIDGTSGTSGTSGTDGSSGSSGTSGSSGSSGIDGTSGTSGIDGTSGTSGSSGTSGQNGLSSSYYNYKTKTTVYSGNPGNTFILWDNSTQVNSTSINISSETLDIVDIDVFLSLLAENQVLIIQDVDQSNDYQKWEIAGAPVNNTGYWTVPVTLVDSGGAGATNFSDALDIILVLFTTNGSSGTSGTSGSSGTQGSSGTSGSSGSSGVDGTSGTSGVDGTSGTSGINGSSGSSGSSGTTGTSGTSGTSGSAGTSGTSGSSGINGSSGSSGSSGSSGTRGTSGTSGTSGSSGLDGGLSIWRYSDNTNTSVDPGAGYFRLNNIWTAGTTEIAIDDFSHSPSILFSGFLNTVGSGAVIKITSLSDQTVYKVFSVTAPLPLQTGYEAYTVTQVASSGPDPVLNDLFLIDFVGSPGSSGSSGTSGTSGSSGINGSSGSSGLSGSSGSSGTTGTSGTSGTSGISGSSGSSGTTGTSGTSGISGSSGTSGISGSSGTSGISGTSGTSGISGTSGTSGISGTSGTSGTSGISGTSGTSGISGTSGTSGISGTSGSSGTSGISGTSGTSGLSGTSGTSGTSGSSGTTGTSGTSGSSGTTGSSGTSGSSGINGTSGTSGINGTSGTSGISGTSGTSGSSGTTGTSGSSGTTGSSGTSGSSGINGTSGTSGVNGTSGTSGINGTSGTSGSSGSSGTRGTSGTSGSSGFSGTSGTSGINGSSGSSGFSGTSGTSGINGTSGTSGSSGTTGTSGTSGSSGFSGTSGSSGTSGIDGTSGTSGSSGSSGTRGTSGTSGSSGFSGTSGSSGSSGTGGTSGSSGSSGANGTSGSSGSSGFSGTSGSSGSSGTAGSNGSSGSSGTRGTSGTSGSSGFSGTSGSSGSSGAQGPTGPAGATGAAGTNGTSGSSGSSGTGGTSGTSGSSGSSGAQGPTGPAGATGATGATGPAGATGATGAAGTNGTSGTSGSSGSSGTRGTSGTSGSSGTSGATGPAGATGATGATGASGTSGSSGSSGSSIVITSPANNRVLTSDGTSFGAIAEQLFVFDAATTRVGIGTTAPSSTLDVQFTSIATGIEFTALVQSTYQAATSSTKSGLRVTTQSANPSGTMARVDGIYSKVVGPVNSGVVTSMSAIRAMAEIIGSGTISNAYCVHIDSPSVNVGAGAGITTTYGLYIDNLVVSGTLDTWAIYSAGNSPSYHAGDLDLGGLDISGVNPKLYVTKSYTNAGTAFTSDYAAYIKQSTDINTALAHIKGALFIDSISNAGISSVSNIRGINVVLRSSAAAGASTTNAIGLNLFLDRRNGPVTDYRAINISNSTGTGTLSTQYGLYVSDLTAGVDNWGLWIAGNTRSYLGGDVMIGGVIVTGSASAQVVIGASTGVAGTAPLKIQSGTVIAIPEQGAFEHAGGILYWTGVAAVRNFIPATRLSRLASTVSITNTTGYITTNLSVAYKANRRYLFEACVQFYIVSGGGVKMKYVNSSALGNIVMATQATLSGNVTATGSFGTVAAHAQRTTRTTANFIDPEIGVTWTGGAVAIISKGIIDTSASDGTIQVQFAQNVAAGTSLDLWQDSWIRLTEIPDTDLVY
Physico‐chemical
properties
protein length:2513 AA
molecular weight: 234776,20600 Da
isoelectric point:4,14995
aromaticity:0,04576
hydropathy:-0,20649

Domains

Domains [InterPro]
IPR008160
STR
950–1004
IPR008160
STR
1887–1945
A0A6J5NQ56
1 2513
Architecture
STR
STR
STR
STR
STR 920-1076 | STR 1125-1182 | STR 1353-1410 | STR 1836-2229 |
Legend: ATT STR RBD CBM LEC ENZ CHP LNK TAS TTP UNK Unmapped

Taxonomy

  Name Taxonomy ID Lineage
Phage uncultured Caudovirales phage
[NCBI]
2100421 Uroviricota > Caudoviricetes > Peduoviridae > Maltschvirus maltsch >
Host No host information

Coding sequence (CDS)

Coding sequence (CDS)
Genbank protein accession
CAB4159138.1 [NCBI]
Genbank nucleotide accession
LR796670 [NCBI]
CDS location
range 68178 -> 75719
strand -
CDS
ATGGCCATTTATGATAACCTAAATACGATAAGACGTTTAACTAATTCAAGCTTAACTTCAATTATAGATGTAACTAACTTAAACTTTAGAAACATATCTGAAGCTAATCTTGAATTCTTAAATAACATTCAATACAACGAGGCGACTAATAGTTTCGTCGTATATAGTGGCACATTTGATCTAGTAAACGTAACAAATACGTTAAGCTTAACCTCTAATGGAGTACCAACATTTACTATAAATTCATTAGGCCAAGCAGAAGGACAGGAGATATTGGTACAGGTCGCTGAGACCAAACGATTAAGATTTACTGATTTTCCAGATTGGCCCGATCAAGGTGTTCCTGGAGAAATAGTCTATACTGGAATCCAAAATCAAAAACCTGAATTCGGAGAAGATTTTATAGGTTTCCTACAAGGTAGAGGCTGGGTAAGTTTAACAACAGGAGGAAGCGGTATTTTTACACAAGTTGACGGTAGTCCAGGTTTTCCTGATACTCCTGCTCCAGGCACAGGTTTAGTTTGGGTCGGAGCACCTGGTTTACAGAGTTCAACTACTCCAACAAGTCAAGAATTATATTTTACTGACGAGAACGGTGACATATTTAGCCTAATCGATGTTACTTCTAATGATTGGGAAGTAATAGGGAATGATCTTAAAATGATTCCAACTGGAAAGGTATTACCTAAGCTTTCTGGTTTGAACGATTTGGGTTCTTCTACAAGTCAATGGAGAAAGTTATATCTTTCTAATGGGATCGCTCTAACTGCTTCATCAGGATTAGGAATAGTTAATTCTGGTGCAGACTTAATTATTTATGCAAACGAGAGCGGCGCTGGTGAGATCACCCTATCCGCGTATGATAAGATAAACTTGTCATTTGGTATAGAAGCCAATATAGGTTCAGTATTCACAGTTTATAATAATCAGATACAATATGCAAATGGAACAGAAGGGGCAGGATATGTCTTGACTTCTGACGCTTCCGGTAACGCTTCATGGCAGCCTTCACCAGCTTTAAATTTTGCATATCAAGAAACCATTTCAATCGTAGCAGATGTTCCATATACGATAACTCACAATTTAGGAACAGAAAATATAATATTATCTGCAGTTGACCTTCCGATTGAAGAAGAAGTCGACGTTATCGTAAAAAGTCATACTTTAAATACTGTCGATGTAGTATCGTCAGTGTCAACAACATTAAGAGTTAGCATAGTTGCAGTAGGAGGAGTTTCTTCTCCTGGTGGATCTGGAACAAGCGGTTCATCAGGAACAAGTGGAACTTCTGGAGCAACAGGATCTAGTGGTACGTCTGGGTCTTCAGGTTCTTCTGGAACTAGGGGTACTTCTGGTACTTCAGGTTCTTCAGGAGCAGCAGGCTCGGCCGGTTCATCAGGAACAAGCGGTACTTCAGGTTCTACTGGTTCAGGCGGAACAAGCGGAACTAGTGGAAGTTCTGGGGCAGCTGGATCCAGTGGATCTTCAGGTAGCTCAGGAAGTAGGGGACAGTCTGGATCAAGCGGTACATCCGGCTCTTCAGGTTCGTCTGGAACTAGAGGTACATCCGGAACAAGCGGTTCTTCTGGAATAAGCGGAACAAGCGGAACAAGCGGTTCTTCTGGGATCAATGGAACAAGCGGAACAAGTGGATTCTCAGGAACAAGCGGTTCATCGGGAACAAGCGGAGTTAGCGGAACAGATGGTACTTCAGGATCAAGTGGATTTACTGGATCAAGCGGTACTTCAGGTAGTGATGGTTCTTCAGGTACGAGTGGCACTTCTGGTACAAGCGGAACGGATGGTTCTTCAGGAACAAGCGGTACAAGTGGAACGGATGGTACTTCAGGTACGAGTGGAATAGATGGAACTAGCGGTACATCTGGATCTAGTGGATCAAGCGGAATCAATGGTTCAAGCGGTAGTTCAGGAATAGATGGTTCAAGCGGATCAAGCGGAATAGACGGTTCAAGCGGTACTTCAGGTATCGATGGAACTAGCGGGACTTCAGGAATAGAAGGTACTTCTGGAACTAGCGGGACTTCAGGAACGGACGGTTCTTCTGGAACAAGCGGGTCGAGTGGTATTGACGGTTCAAGCGGATCAAGTGGTATTGACGGTTCAAGCGGTACGTCAGGTATCGATGGTTCAAGCGGTACGTCAGGTATCGATGGTACTTCTGGAACAAGTGGAACATCTGGTGCTTCAGGAACAGATGGTTCTTCAGGATCTTCAGGAACAAGTGGAACTTCAGGTTCTAGCGGAACTGATGGAAGTTCAGGAACAAGCGGAATCGATGGTACGTCCGGAACAAGCGGGACTTCAGGAATCGATGGTTCTTCAGGTACATCAGGAACTAGCGGTACAAGCGGAACCGATGGAACAAGCGGTACTTCAGGTACTAGTGGAACAGACGGAACTAGTGGTACATCTGGTACTTCAGGAACAGACGGTTCTTCTGGAACCAGCGGAACAGACGGAACAAGTGGTACGTCCGGTACTAACGGAACAGACGGAACAAGCGGTACGTCTGGTACTAGCGGGACTTCAGGAACAGACGGGTCTAGTGGAACTTCTGGAACAAGTGGTACATCAGGAACTGATGGCTCTTCGGGTACAAGCGGGACTTCAGGAAGTTCAGGCTCTTCGGGAACAGATGGTTCTTCTGGAACTAGCGGGACTTCTGGAACGGACGGTTCTTCAGGTACATCAGGAGCAGACGGCTCTTCAGGAACTAGCGGTATTGATGGGACAAGTGGAACCTCTGGTACTAGCGGAACTGACGGAAGCTCTGGAACATCAGGAATAGATGGAACTAGCGGTACTTCAGGGACTAGTGGTATCGATGGAACAAGTGGAACATCTGGTACTTCAGGAACAGACGGGTCTAGCGGATCTTCAGGAACAAGCGGAAGCTCAGGTTCTAGCGGAATCGACGGAACTTCTGGAACTAGCGGAATCGACGGAACTTCTGGGACATCAGGTTCTTCTGGAACTTCTGGACAAAATGGTCTATCTTCAAGCTATTATAATTATAAGACAAAGACTACAGTATATAGTGGAAACCCTGGAAACACTTTTATTCTTTGGGATAACTCTACTCAAGTAAACTCAACTTCAATAAACATAAGTAGTGAAACATTAGATATTGTCGATATCGATGTATTCTTAAGTCTACTTGCAGAAAATCAGGTTCTTATCATACAGGATGTAGATCAGAGCAACGATTATCAAAAATGGGAGATTGCTGGTGCTCCAGTAAACAACACTGGATATTGGACTGTTCCTGTAACTCTAGTTGATTCTGGAGGAGCAGGTGCAACTAATTTTAGTGATGCATTAGATATAATATTAGTATTATTTACAACAAACGGTTCTTCTGGTACGAGTGGAACAAGCGGAAGCTCAGGTACACAAGGATCGTCAGGTACAAGTGGAAGTTCTGGTTCTTCTGGAGTTGACGGAACAAGCGGAACTTCAGGAGTTGACGGAACAAGCGGAACTTCTGGAATTAATGGTTCTAGTGGAAGTTCAGGTTCTAGTGGAACAACTGGGACTTCAGGTACGAGCGGTACTTCAGGTTCAGCAGGTACTAGTGGGACTTCTGGTTCTTCTGGTATAAACGGTTCTTCAGGCTCAAGCGGAAGCTCTGGTTCTTCTGGAACTAGGGGTACTTCAGGTACAAGCGGAACGTCTGGTTCATCAGGATTAGACGGAGGACTTTCTATTTGGAGATATAGCGATAATACAAATACTTCAGTTGATCCTGGTGCTGGATATTTTAGACTTAATAATATTTGGACTGCTGGTACTACTGAAATAGCAATAGACGACTTTTCGCATAGCCCGAGCATATTATTTTCAGGATTCTTAAATACTGTTGGTTCAGGTGCAGTAATTAAAATTACTTCTCTTTCAGATCAAACAGTATATAAAGTATTCTCAGTAACTGCGCCTCTTCCTTTACAAACAGGATATGAAGCATATACGGTTACCCAAGTAGCTTCGTCTGGTCCAGATCCAGTATTAAATGATTTATTCTTAATTGATTTCGTAGGTTCCCCAGGATCTAGCGGATCTTCTGGTACTTCTGGAACATCTGGTTCATCTGGAATAAATGGTTCTTCAGGATCTAGCGGACTTAGCGGGTCTAGTGGATCCAGCGGTACTACTGGTACTTCCGGAACATCGGGGACTAGTGGAATTAGCGGATCTAGTGGGTCTAGCGGTACTACAGGTACTTCTGGTACTTCTGGAATAAGTGGTTCTTCGGGGACTAGCGGTATTTCTGGATCTTCAGGAACCAGTGGAATTAGCGGTACATCCGGTACCTCTGGTATTTCTGGAACATCAGGAACTAGCGGAATTAGCGGTACATCCGGTACATCCGGTACCTCTGGTATTTCTGGAACATCGGGAACTAGTGGAATTAGTGGTACTTCTGGAACTAGTGGAATTAGCGGTACTTCTGGATCTTCAGGAACCAGTGGAATAAGCGGTACATCTGGTACTAGTGGACTTAGTGGTACTTCTGGAACATCAGGAACTAGTGGTTCTTCTGGAACTACTGGTACATCAGGTACATCTGGATCTTCTGGAACTACTGGCTCTTCAGGAACTAGCGGGTCGAGTGGTATAAATGGAACAAGTGGTACATCTGGTATAAACGGCACGTCTGGAACTAGCGGAATTAGTGGTACTTCAGGTACATCTGGATCTTCTGGAACAACAGGTACGTCTGGTTCTTCTGGAACTACTGGATCTTCAGGTACCTCGGGTTCAAGTGGAATAAACGGTACGTCTGGTACTTCTGGTGTAAATGGTACATCCGGTACATCTGGAATCAACGGTACGTCTGGAACTAGCGGAAGCTCTGGTTCTTCTGGAACTAGAGGTACTTCAGGTACTTCTGGATCAAGTGGATTCTCAGGAACAAGCGGTACTTCTGGAATCAATGGTTCTTCTGGATCAAGCGGATTCTCAGGCACATCCGGTACATCTGGTATAAATGGTACATCCGGTACATCAGGATCAAGCGGAACGACTGGTACTTCTGGGACATCTGGCTCAAGCGGATTCTCAGGTACATCTGGTTCAAGCGGCACGTCAGGTATCGATGGAACTTCAGGAACATCTGGATCTAGTGGATCATCTGGGACTAGAGGTACTTCTGGAACAAGCGGATCGAGCGGATTCTCAGGAACAAGCGGATCTAGTGGATCTAGTGGAACAGGAGGAACTTCTGGTTCTTCTGGAAGTTCAGGAGCAAACGGTACGTCTGGCTCTTCTGGTTCAAGCGGATTCTCAGGAACAAGCGGATCTAGTGGATCTAGTGGAACTGCAGGTTCAAACGGAAGCTCTGGTTCTTCTGGAACTAGAGGTACTTCAGGTACTTCAGGATCAAGTGGATTCTCAGGAACTAGTGGATCAAGCGGAAGTTCCGGTGCACAAGGTCCTACTGGACCTGCTGGTGCAACTGGCGCTGCTGGGACAAATGGTACTTCAGGCTCAAGTGGTTCTTCTGGAACTGGAGGTACATCTGGTACTTCAGGTTCAAGCGGAAGTTCCGGTGCACAAGGTCCTACTGGACCTGCTGGTGCAACTGGTGCAACTGGTGCTACTGGTCCTGCTGGTGCAACTGGTGCAACTGGTGCGGCTGGGACAAACGGTACATCTGGAACTAGCGGAAGCTCTGGTTCTTCGGGAACTAGAGGTACGTCTGGTACTTCAGGTTCAAGCGGTACTTCTGGAGCGACTGGTCCTGCTGGTGCAACTGGAGCGACTGGGGCAACTGGAGCATCAGGAACATCTGGATCTAGCGGTTCTTCTGGAAGCAGCATAGTAATAACTAGCCCAGCGAATAATAGAGTATTGACGTCTGATGGTACATCGTTTGGGGCGATTGCTGAACAGCTCTTTGTATTTGATGCAGCTACAACCAGAGTCGGAATAGGGACGACTGCTCCTTCAAGCACTCTAGATGTACAGTTTACTAGTATAGCAACTGGAATTGAATTTACTGCCTTAGTGCAGAGTACATATCAAGCAGCAACATCTAGCACTAAGAGTGGACTGAGAGTGACAACACAGTCAGCCAATCCATCAGGCACAATGGCCAGAGTCGATGGGATATATTCAAAGGTAGTAGGACCTGTCAATAGTGGAGTTGTTACTAGTATGTCTGCGATTAGAGCAATGGCTGAAATCATTGGCAGCGGGACGATAAGCAATGCATATTGTGTTCATATAGATTCTCCAAGCGTTAACGTAGGAGCTGGAGCAGGAATTACCACAACATATGGGTTATACATAGATAATTTAGTGGTATCTGGCACATTGGACACTTGGGCCATATATTCAGCTGGAAATTCTCCTTCATATCATGCTGGAGACCTTGATCTAGGCGGACTTGATATCAGTGGAGTGAATCCTAAGCTGTATGTTACTAAATCATACACTAACGCAGGTACCGCCTTCACTTCAGATTATGCTGCATACATAAAACAGAGCACAGACATTAACACTGCCCTTGCCCATATCAAGGGAGCATTATTTATCGATTCTATAAGTAATGCGGGAATCAGCTCTGTTAGTAATATAAGAGGAATTAATGTTGTATTAAGATCATCAGCAGCTGCTGGAGCAAGCACCACTAATGCAATCGGATTGAATTTATTTCTAGATAGAAGAAATGGGCCTGTTACAGATTATCGAGCAATTAACATAAGTAATTCAACTGGAACAGGAACACTTAGTACTCAGTATGGACTGTATGTTAGTGACTTAACTGCCGGCGTAGATAACTGGGGATTATGGATAGCCGGAAACACTAGATCTTATCTTGGAGGAGATGTGATGATCGGAGGTGTCATTGTAACCGGTAGTGCATCAGCACAAGTAGTGATTGGTGCATCGACTGGTGTGGCAGGAACAGCTCCGCTTAAGATTCAAAGCGGTACAGTAATTGCTATTCCAGAACAGGGGGCATTTGAACATGCTGGTGGGATTCTTTATTGGACTGGTGTCGCAGCTGTTAGGAATTTCATACCTGCAACTAGATTGAGCAGGTTAGCCTCTACTGTATCAATAACGAATACTACTGGTTATATAACAACGAACCTTAGCGTCGCATATAAAGCGAATCGAAGATATTTGTTTGAGGCATGTGTACAGTTCTATATTGTTTCAGGCGGTGGAGTAAAGATGAAATACGTTAACAGCTCAGCTTTAGGCAATATAGTAATGGCCACGCAAGCAACTCTTAGTGGTAACGTAACCGCGACAGGATCATTTGGAACAGTTGCTGCCCATGCACAAAGAACGACTAGGACGACTGCGAATTTCATTGATCCGGAAATAGGTGTTACTTGGACAGGAGGAGCAGTTGCGATAATTTCAAAGGGAATAATTGATACTAGTGCATCTGATGGTACTATACAGGTACAATTTGCGCAAAATGTGGCGGCGGGAACTAGTTTAGACCTTTGGCAGGACTCTTGGATTAGATTGACTGAAATACCTGATACTGATTTGGTTTACTAA

Genome Context

Genome Context

Tertiary structure

PDB ID
19ebc11e792af7b0f6e0d559054e3fdac5057d8b3d0cd24e2a2a1b930871b22e
ColabFold
Source ColabFold
Method ColabFold
Resolution 0,3766
Oligomeric State monomer
Model Confidence
Very high
pLDDT > 90
High
90 > pLDDT > 70
Low
70 > pLDDT > 50
Very low
pLDDT < 50