CDS

Accession Number TCMCG081C37017
gbkey CDS
Protein Id XP_002284299.1
Location join(4163263..4164120,4166058..4166156,4167693..4167812,4167898..4168064,4169910..4169980,4170788..4170930,4171430..4171541,4171677..4171789,4171929..4172072)
Gene LOC100241770
GeneID 100241770
Organism Vitis vinifera

Protein

Length 608aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA33471
db_source XM_002284263.3
Definition PREDICTED: tRNA (guanine(37)-N1)-methyltransferase 1 [Vitis vinifera]

EGGNOG-MAPPER Annotation

COG_category A
Description Specifically methylates the N1 position of guanosine-37 in various cytoplasmic and mitochondrial tRNAs. Methylation is not dependent on the nature of the nucleoside 5' of the target nucleoside. This is the first step in the biosynthesis of wybutosine (yW), a modified base adjacent to the anticodon of tRNAs and required for accurate decoding
KEGG_TC -
KEGG_Module -
KEGG_Reaction R00597        [VIEW IN KEGG]
KEGG_rclass RC00003        [VIEW IN KEGG]
RC00334        [VIEW IN KEGG]
BRITE ko00000        [VIEW IN KEGG]
ko01000        [VIEW IN KEGG]
ko03016        [VIEW IN KEGG]
KEGG_ko ko:K15429        [VIEW IN KEGG]
EC 2.1.1.228        [VIEW IN KEGG]        [VIEW IN INGREDIENT]
KEGG_Pathway -
GOs -

Sequence

CDS:  
ATGGTCACCAAGCTCTTCCTCAGACCTCACTCTCTCTCCTTCACACTTCTCTCTGGAATCCACTTGTTCCCGAAGACCTCTCTCTCTAAACCTATTACTCTCTGTCTCCTCTCCACCACCGCAACCACCCCAATCCTGACCTTAACCCAGACACTAGACCCGAACCTCTCCTATGGGCCGTCTCTCCACAAAGGCACAAAACCATTAAATCACCAAAATCACCAATTAATTGCAGCAACTCCAGGAGAAGAAGAGTGTGTTTTTGATAAAGAAGCCTTCACTAGGGTTTTCAACCTTACAGCCATTAGAGTACCTTCAAAGGACTGTTTCGCCCTCGAAAACCGCCTCCGAGGGCACCTTCTGAACTGGCCTCGAATCCGGAACGTTGCTAGAGTTCCAGGGGATGAGGTGGAAGATGGGCTGGTGAAATTGTTGGGAGAGAAAAGGAATAGTAGTGACGGGAGTGAGAGTGAAGGGGATTTTGATTCACTGAATAGGAGAATTTACGGGAAAGCGGAAGGAGATGGCGAAATCTTGAGTCCAGTTTTGTACAGGGATACGCTTGCCAAGACATTTGATTCCCAGGGTTTTGCGAATTTTAGGAATCTTGCAAAGTTGTCTAGGCCAAAGAAGAAGAAGAGGAGGAAGGAGGAGGAGAGGAGTGAGGGGAAGAAACGCACTGGGAAGAATGAGTTTGCAATGGTGGAAGTGGTTGAAGACGGGGAGGAGGGGGAAGATTTGAGAGGGTTGCTGGGGGAGGAATTTAAAAGGAAGAGGTGGAGAGGCTCAACAAGGTTGTTGCTTCTGGATGAGCGGTATGCGGATAAAGGCGTGGAAGAGTTGCCCGAGGCAATTAAGGCAGTGTTAAAAGAAGATACTGGCCAAAGCATGACATCAACTTTTGAGCTTGTGAAATGCAAGCTGACCTTGTTTTATAATTACTGGCAGATGAATGAGATCTTAGAGGCCTTGCTGCCTGAAGGTATGATTGTTCCTTCAGCCTTTGAAATGGTTGGGCATATTGCACACCTGAACCTCAGAGATGAGCATCTACCATACAAGAAGCTCATTGCAAAGGTAGTTTTGGATAAAAACAAGCCAAAGATACAAACAGTTGTCAATAAGACTGATGCCATCCACAATGACTACAGAACAATGCAGCTTGAGGTTTTGGCTGGAAACCGTTCCCTTGTGACTACAGTAATTGAGAATGGAATGCGTTTTCAGGTTGATTTAGCAACAGTGTATTGGAATTCAAGGCTTGCAACTGAAAGACAAAGGCTCCTGAACTGCTTTACGCGCAATGATGTTGTTTGTGACGTCTTCTCTGGGGTTGGCCCAATAGCTATCTCAGCAGCAAAGAAAGTAAAGCGTGTGTATGCTAATGACTTAAACCCTTATGCAATTGAATACCTGGAAAGCAATAGTGTTCTCAACAAACTTGAGAGGAAGATCAAGGTATTTAACATGGATGGAAGGAGGTTCATCAATGCCATGTTTACTAGTGATAAGGCTGAGTCTATCACACAAGTTGTTATGAATTTGCCTAATGATGCTGCCGAGTTTCTAGATGCCTTCAGGGGAATATTCAGAAAGAAGTCCAGGGATAAACAACTGAAATTACCAATGATCCATGTTTATGGGTTCTCTAAAGCTCAAGATCCAGAATTTGATTTCCATCAGCGGATAAGAATTGCGCTTTCAGAGGTTGCAGTTGATGTAGAAATGCACAGGGTTCGACTGGTTGCACCAGGAAAATGGATGTTGCGGGCATCATTCATCCTCCCCAAGAGTGTGGTATTTGCAAAAGCAGTGTTATATATGTAA
Protein:  
MVTKLFLRPHSLSFTLLSGIHLFPKTSLSKPITLCLLSTTATTPILTLTQTLDPNLSYGPSLHKGTKPLNHQNHQLIAATPGEEECVFDKEAFTRVFNLTAIRVPSKDCFALENRLRGHLLNWPRIRNVARVPGDEVEDGLVKLLGEKRNSSDGSESEGDFDSLNRRIYGKAEGDGEILSPVLYRDTLAKTFDSQGFANFRNLAKLSRPKKKKRRKEEERSEGKKRTGKNEFAMVEVVEDGEEGEDLRGLLGEEFKRKRWRGSTRLLLLDERYADKGVEELPEAIKAVLKEDTGQSMTSTFELVKCKLTLFYNYWQMNEILEALLPEGMIVPSAFEMVGHIAHLNLRDEHLPYKKLIAKVVLDKNKPKIQTVVNKTDAIHNDYRTMQLEVLAGNRSLVTTVIENGMRFQVDLATVYWNSRLATERQRLLNCFTRNDVVCDVFSGVGPIAISAAKKVKRVYANDLNPYAIEYLESNSVLNKLERKIKVFNMDGRRFINAMFTSDKAESITQVVMNLPNDAAEFLDAFRGIFRKKSRDKQLKLPMIHVYGFSKAQDPEFDFHQRIRIALSEVAVDVEMHRVRLVAPGKWMLRASFILPKSVVFAKAVLYM