CDS

Accession Number TCMCG028C37494
gbkey CDS
Protein Id KAF6139021.1
Location join(<1574379..1574444,1574565..1574654,1576201..1576299,1576406..1576586,1576701..1576768,1576864..1577091,1577184..1577367,1577563..1577888,1578040..1578184,1578270..1578346,1578433..1578532,1579986..1580221,1581244..1581282)
Organism Kingdonia uniflora
locus_tag GIB67_010747

Protein

Length 612aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA587615, BioSample:SAMN13195877
db_source JACGCM010002535.1
Definition hypothetical protein GIB67_010747, partial [Kingdonia uniflora]
Locus_tag GIB67_010747

EGGNOG-MAPPER Annotation

COG_category D
Description Methylates the 2'-O-ribose of nucleotides at positions 32 and 34 of the tRNA anticodon loop of substrate tRNAs
KEGG_TC -
KEGG_Module -
KEGG_Reaction -
KEGG_rclass -
BRITE ko00000        [VIEW IN KEGG]
ko01000        [VIEW IN KEGG]
ko03016        [VIEW IN KEGG]
KEGG_ko ko:K14864        [VIEW IN KEGG]
EC 2.1.1.205        [VIEW IN KEGG]        [VIEW IN INGREDIENT]
KEGG_Pathway -
GOs -

Sequence

CDS:  
GTGAAGATTCTTGATATCTGCAACAATTTTGGTTGTGTTATTATAAAGTTGGAGCACAGACAGGTGACTGAAGAAAGGCCTAAAGAGTATGCGGAGATGATTGCTAATGATGTTCCAGGAAATCCTACACCGCACACAGCTGTGTGGGATCTAAAGGTGGTGGTAAAAACCCTATCTTTCGAGATGATTTCACGATCAAGTTCGGAGTCTGAGGATGATAGGCGTATTCGTAAAGTTGATGAGACTTCTGCTGTGTGGCCAGCCGCAATAGTGACAACTATGTTTCCAGAGGTAACACCGTCAAACAACGAAATTGAACTTGGAAAAGCTTCTATGGATCTTCAGGCATCAGCTGTGATCAATGAAGATTTTACGGAGATATCACATCTTCCTATGAGTAGGAGGTCTTTCTCACTATGGAGAGATTATCAGGCAGGCTTTGAATGTACTGATTTCATTAAAGACAGGAAAGTATCTCAAACAAGAAAGTGCACATCACTTGAAGAAAGAGAAGTTTGGAATGTTAAAAGAGATAACGGATTGCAGTATTTGGTAAACAAAATGGGAAGAGCTTCCAGAGATAAAAGGGATATTTATTACATAAGAGCTAAGGAAGAAGGTTGGAGTGCTCGAAGCGCTTTCAAACTCCTTCAGATTGATGAAGGATTTAGTATATTCGAAGGTGTGAAGCGTGTAGCTGATCTTTGTGCAGCACCAGGAAGCTGGAGTCAACCAATGGCTCCCATAAAAGGTGTTATCCAAGTTCAGGGAGATATTACCAATGCTAGAACTGCTGAAGTGGTTATAAAGCATTTTGATGGATGCGAAGTTGATCTAGTTGCCTGCAATGGTGCTCCTGATATTATAGGACTTCATGATATGAATGAATTTGTTCAGTCGCAGCTTATACTAGCGGGATTTAATCCAAAAGATTTACATCACCTTCTGGAAAAGGTGGGCACTCCCTCAGGAGCAGATGATCTAGATTGCAGCAGTAGTTGGTTAGAAGGGCCCAACATGGTGTATATCCCCTTTTTGGCGTGTGAAGACCTCAGTGGATTCGACTCGGGCCGTTCTTATCCACTTCCTACTGTAGCAGAGGGATGTTCTTACCAAAGTTTGGATCCTGTGCAACCCCCAATTTCTTTCCCTCATAATAGAGCACGGGAAATGAAGAAGGCTAGTAATGGTACAGGGAGCTCTCTCTTGATTCTTGATTATTATTTCTTCTCTCAGTTTGTGTATAAGGAACTAATAGAAACTAAAAAACCTTTGAAACGGTTTAAGGACTATGAACTGAAAAACAAAGAATGCGATGACGCTTGGTTGTCTCTGTGGGAGCTTCAGAATGAACTCATGCGAAAGTCTATGCATGTCGGATCTCTAGCTTATGCCAAAGAGGGACAAATGAAGGAAAAGTCACGGTGGTTATCATCCCTTAGAGATCTGCCAAATAAATTTAAGATGTTGAAAATGGAGCACACTAGGCTATCAGCTGAAGCACTTGAATACAAGAAGTGCATTAAAGACGTTACAAAAATGACCAGTACCATTCAGTCTGCAAATATAAGAGTAATGAATGGGGAAGCTGTATATGCACGTCCTAAGAAAATGGGCATGATAATTCTTGGAGGTGGACAGCCCAAGCATCACATCTACAATGCCAATATGTTTTGTAATGATGTAGATTATGCTATTTTCATCAACACGGTTCAAGAATTTGACGGTAGTGATTCTGGTGCTTGTCCCAACGAGGCTGTACCGTGGGGAAAAATAAGAGGATCTGCAGAGACTGTCGAAGGATTTATACCCATGGAAATGTTGATGGTTTACAAGTAG
Protein:  
VKILDICNNFGCVIIKLEHRQVTEERPKEYAEMIANDVPGNPTPHTAVWDLKVVVKTLSFEMISRSSSESEDDRRIRKVDETSAVWPAAIVTTMFPEVTPSNNEIELGKASMDLQASAVINEDFTEISHLPMSRRSFSLWRDYQAGFECTDFIKDRKVSQTRKCTSLEEREVWNVKRDNGLQYLVNKMGRASRDKRDIYYIRAKEEGWSARSAFKLLQIDEGFSIFEGVKRVADLCAAPGSWSQPMAPIKGVIQVQGDITNARTAEVVIKHFDGCEVDLVACNGAPDIIGLHDMNEFVQSQLILAGFNPKDLHHLLEKVGTPSGADDLDCSSSWLEGPNMVYIPFLACEDLSGFDSGRSYPLPTVAEGCSYQSLDPVQPPISFPHNRAREMKKASNGTGSSLLILDYYFFSQFVYKELIETKKPLKRFKDYELKNKECDDAWLSLWELQNELMRKSMHVGSLAYAKEGQMKEKSRWLSSLRDLPNKFKMLKMEHTRLSAEALEYKKCIKDVTKMTSTIQSANIRVMNGEAVYARPKKMGMIILGGGQPKHHIYNANMFCNDVDYAIFINTVQEFDGSDSGACPNEAVPWGKIRGSAETVEGFIPMEMLMVYK