CDS

Accession Number TCMCG014C18683
gbkey CDS
Protein Id GAY50373.1
Location complement(join(433371..433598,433987..434586,434721..434894,435951..436002,436090..436157,437815..437873,438076..438219,438601..438700,439180..439261,439644..439651))
Organism Citrus unshiu
locus_tag CUMW_126070

Protein

Length 504aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJDB5882, BioSample:SAMD00083908, Sequence Read Archive:DRR142810, DRR142811, DRR142812, DRR142818,, DRR142819, DRR142820, DRR142821, DRR142822
db_source BDQV01000061.1
Definition hypothetical protein CUMW_126070 [Citrus unshiu]
Locus_tag CUMW_126070

EGGNOG-MAPPER Annotation

COG_category CH
Description FAD-dependent monooxygenase required for the C5-ring hydroxylation during ubiquinone biosynthesis. Catalyzes the hydroxylation of 3-polyprenyl-4-hydroxybenzoic acid to 3- polyprenyl-4,5-dihydroxybenzoic acid. The electrons required for the hydroxylation reaction may be funneled indirectly from NADPH via a ferredoxin ferredoxin reductase system to COQ6
KEGG_TC -
KEGG_Module M00128        [VIEW IN KEGG]
KEGG_Reaction R04982        [VIEW IN KEGG]
R08773        [VIEW IN KEGG]
KEGG_rclass RC02670        [VIEW IN KEGG]
BRITE ko00000        [VIEW IN KEGG]
ko00001        [VIEW IN KEGG]
ko00002        [VIEW IN KEGG]
ko01000        [VIEW IN KEGG]
KEGG_ko ko:K06126        [VIEW IN KEGG]
EC -
KEGG_Pathway ko00130        [VIEW IN KEGG]
ko01100        [VIEW IN KEGG]
ko01110        [VIEW IN KEGG]
map00130        [VIEW IN KEGG]
map01100        [VIEW IN KEGG]
map01110        [VIEW IN KEGG]
GOs -

Sequence

CDS:  
ATGAACAGGATCATTGTGGGAAGACTCTCTGTAAATGTCTCTGGACTGCGGGTTCTGCAGCGGAGTTTCTGTAGCAGTGTAGCTGAAAAAGAATCTGAGGTCAAGCAAAGCTTTACAAATAATGATGATCAATACGATGTTGCTGTTGTTGGGGGAGGCATGGTTGGCATGGCCCTAGCTTGTTCCTTGGCAAGTATGCCGTTGACAAAGCATTTGAGTGTTGCCATCATTGATAGCAATCCTGCTTTGGGAAAAAGCAACTTTATTAAGAAAGAAGACCCGCCTGATCCTCGGGTTAGTACAGTCACACCAGCAACCATATCATTTTTCAAAGAGATTGGTGCTTGGCAATATGTTCAACAGCATCGTCATGCATATTTTGATAAGATGCAGGTTTGGGATTATACTGGCTTAGGTTACACAACATACAATGCAAGGGACGTAAACAAAGAAATTCTAGGGTGTGTAGTGGAGAACAAGGTGCTTCATAGCTCTCTGTTGTCATGTATGCAGAATACAGAGTTCCAGAAAACCATCTATCCTTCCCGATTAACTTCGATGGCTTTACTTCCAAGCTCTTCATCCATCAGTGTAGACAGCACACCATCAGCAACAACATTGTTCACTAAGGGGCATTTAGCTAAGCTGGATCTCAGTGATGGCACGAGCCTGTATGCTAAGTTGGTGGTTGGAGCTGATGGGGGCAAGTCAAGAGTTAGGGAGTTAGCTGGATTTAAGACAACCGGATGGAGCTACTCACAGAATGCTATCATCTGTACAGTCGAACATAATAAAGAAAACTACTGTGCATGGCAACGCTTCCTAACTACTGGTCCAATTGCACTTTTGCCAATAGGTGATAACTTCAGCAATATTGTTTGGACTATGAACCCAAAAGATGCTTCAGATTGTAAATCAATGAACGAGGATGATTTTGTGAAAATTTTAAATCATGCTCTTGATTATGGATATGGTCCTCATCCAAAGTCAATCTCAAGCGGTAGTGTGGATATGTTTTCTTGGTTTAGAGGAGATGCAACTTTGTCAGCGAAGGAGTGCTTTGAAGTACCCCCAAGAGTGGTCAAGTTGGCATCTGAACGAATGGTGTTTCCACTGTCATTAAAGCATGCTAATAACTATGTGTCGAAGCGTGTTGTTCTAATTGGTGATGCTGCACACACTGTTCATCCTCTAGCTGGTCAAGGTGTTAATTTGGGTTTTGGTGATGCATCTACTCTTTCTAGAATTATTGCTGAGGGAATTGCAGTAGGCGCAGACATTGGGGAGGTATCTCTACTGAAAAAGTATGAAGCAGAAAGAAAACCAGCAAATATAGTAATGATGGCTGTCCTTGATGGCTTCCAGAAGGCGTACTCTGTTGATTTCGGGCCTCTAAACATACTGCGAGCAGCTGCATTTCACGGAGCTCAGTATATTTCACCTCTTAAGAGGAATATTATTTCGTATGCTTCAGGAGAACAGAGACTCCCTCTTCCTCTGCCACTTTTTACTTAA
Protein:  
MNRIIVGRLSVNVSGLRVLQRSFCSSVAEKESEVKQSFTNNDDQYDVAVVGGGMVGMALACSLASMPLTKHLSVAIIDSNPALGKSNFIKKEDPPDPRVSTVTPATISFFKEIGAWQYVQQHRHAYFDKMQVWDYTGLGYTTYNARDVNKEILGCVVENKVLHSSLLSCMQNTEFQKTIYPSRLTSMALLPSSSSISVDSTPSATTLFTKGHLAKLDLSDGTSLYAKLVVGADGGKSRVRELAGFKTTGWSYSQNAIICTVEHNKENYCAWQRFLTTGPIALLPIGDNFSNIVWTMNPKDASDCKSMNEDDFVKILNHALDYGYGPHPKSISSGSVDMFSWFRGDATLSAKECFEVPPRVVKLASERMVFPLSLKHANNYVSKRVVLIGDAAHTVHPLAGQGVNLGFGDASTLSRIIAEGIAVGADIGEVSLLKKYEAERKPANIVMMAVLDGFQKAYSVDFGPLNILRAAAFHGAQYISPLKRNIISYASGEQRLPLPLPLFT