Macrosteles quadrilineatus (aster leafhopper): 128988133
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Entry
128988133 CDS
T09739
Name
(RefSeq) xanthine dehydrogenase-like
KO
K00106
xanthine dehydrogenase/oxidase [EC:
1.17.1.4
1.17.3.2
]
Organism
mqu
Macrosteles quadrilineatus (aster leafhopper)
Pathway
mqu00230
Purine metabolism
mqu00232
Caffeine metabolism
mqu00983
Drug metabolism - other enzymes
mqu01100
Metabolic pathways
mqu01232
Nucleotide metabolism
mqu04146
Peroxisome
Module
mqu_M00958
Adenine ribonucleotide degradation, AMP => Urate
mqu_M00959
Guanine ribonucleotide degradation, GMP => Urate
Brite
KEGG Orthology (KO) [BR:
mqu00001
]
09100 Metabolism
09104 Nucleotide metabolism
00230 Purine metabolism
128988133
09110 Biosynthesis of other secondary metabolites
00232 Caffeine metabolism
128988133
09111 Xenobiotics biodegradation and metabolism
00983 Drug metabolism - other enzymes
128988133
09140 Cellular Processes
09141 Transport and catabolism
04146 Peroxisome
128988133
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:
mqu04147
]
128988133
Enzymes [BR:
mqu01000
]
1. Oxidoreductases
1.17 Acting on CH or CH2 groups
1.17.1 With NAD+ or NADP+ as acceptor
1.17.1.4 xanthine dehydrogenase
128988133
1.17.3 With oxygen as acceptor
1.17.3.2 xanthine oxidase
128988133
Exosome [BR:
mqu04147
]
Exosomal proteins
Exosomal proteins of breast milk
128988133
BRITE hierarchy
SSDB
Ortholog
Paralog
GFIT
Motif
Pfam:
MoCoBD_2
MoCoBD_1
FAD_binding_5
Ald_Xan_dh_C
CO_deh_flav_C
Fer2_2
Fer2
Baculo_PEP_N
Motif
Other DBs
NCBI-GeneID:
128988133
NCBI-ProteinID:
XP_054265328
LinkDB
All DBs
Position
Unknown
AA seq
1360 aa
AA seq
DB search
MVVPQKSSTIIFFVNGKKVEDDNVDPEWTLLHYLRTKLQLTGTKLGCAEGGCGACTVMVS
KYDRTSNRLVHMSVNACLAHVCSMHGLSVTTVEGIGSTRSRIHPVQERIAKAHGSQCGFC
TPGIVMSMYSLLRSLPGKPTMADLETAFQGNLCRCTGYRPIIEGYKTFTEEWEQHQAANG
LQNGGCPMGEKCCKNSKQNGEGCSQVNGSENGYTNGSDIVEDSLFNPREFVPYDPSQEPI
FPPELKVSDTLDNQYLVVQGPRVTWYRPTNLSELLELKAKYPAAKIVNGNTEIGVEVKFK
NCLYPVLIQPSLVMEMSEMRQSDSGLWVGASVTLSNLETTLRGHITDLPEYKTRVFQAIV
EMLHWFAGKQIRNVAAVGGNIMTGSPISDLNPIFMAAGCELELVSQGGKRVVQLNSSFWT
GYRRNIVKPEEILLAIHIPFTTENQYFAAYKQAKRREDDIAVVNAAFNLQLTSQSHVVDM
EMAFGGMAPTTVSAPNTAAALKDKPWTSATIEAAFSTLMTELSLDPGAPGGLVSYRCSLT
LSLLFKFYLKVTQKLESKNVAVEKLPDSYKSAINGFESVHPKSSQYFQLVPSTQSKTDLV
GRPIVHRSAFKQATGEAIYCDDMPLWQDQVYLALVFSSRAHAKILSIDPSAALALPGVHA
FYCSDDLPAKNNHFGPIAKDDFVFADKEVMCVGQVVGAVVADTQQLAQRAAKLVKVEYED
LQPVIITIEDAIRENSYFSPAPMKLRYGDVDAAFATADHILEGEVRLGAQEQFYLETQAC
IVIPKGEDDEMEIISSTQHPTEIQGEVANMLGVTSNKIVVKVKRIGGGFGGKESRSSMIA
LPCALAATKLGKPVRCMLDRDEDMISTGQRHPFLGRYKVAFTSQGKITACEIKLYCNAGM
SYDLSMAVMGRAMMHFQNAYHIPNVMVYGYVCKTNLVTNTAFRGFGGPQGMFIGETMMRQ
VAAYLNKDPFQICSLNLYKEGDRTHYTQELKYCTLDRCWSEVVNDSDYNRRKAEVEKFNK
ENRWKKRGIAVVPTMFGVAYTEQFLNQSGALVMIYTDGSVLLSHGGMEMGQGLHTKMIQV
ASRALGIPASLIHISETSTDKVPNTGATAASSGSDLNGMAIIDACNKLNERLKPYKAAKP
EGQWKDWVLSAWFDRVSLAATGFYSTPDIKYDFEKNEGLAFNYMAYGAGVSEVEIDCLTG
DHIVLRTDLVMDVGESLNPAIDVGQVEGAFMQGYGLFTIEETVHSPQGALLSRGPGAYKI
PGFGDIPAEFNVALLKGAPNPRAVYSSKAVGEPPLFLASSVFFAIREAVAAARAEVGFQG
YFRLDSPATAARIRMSCADHIAQKFPDAPEGKYKPWNVIL
NT seq
4083 nt
NT seq
+upstream
nt +downstream
nt
atggtagtgccccaaaaatcatccactattattttctttgtcaatgggaagaaggttgaa
gatgataatgtagatccagaatggacattacttcattacctacgcaccaaattgcagctg
acaggtaccaagctaggatgtgctgagggaggttgtggagcctgtactgtcatggtgtcc
aagtacgaccggacatcaaatagactggtgcacatgtcagtaaatgcatgtttggcgcac
gtgtgctccatgcatggactgtctgtcaccacagtggaagggataggcagcacacgctct
aggatacatcctgtacaggaacgtatcgccaaggcccatggctcccagtgtgggttctgc
actcctggcattgtcatgtccatgtactctctcctgcgcagtctaccagggaaacctacc
atggcagaccttgagacagcttttcaaggtaacctttgccgctgcacgggttaccgtcca
atcattgaaggatacaagacattcacagaggaatgggagcaacatcaggcagctaatggg
ctacagaatggtggctgtccgatgggagagaaatgttgcaaaaactcaaaacaaaacgga
gaaggctgtagccaagtgaatggttctgaaaatggttatacaaacggatcagacatcgtg
gaagacagtttattcaacccgagagagtttgttccttacgacccaagtcaagaaccaatc
ttccctcctgagttaaaggtttcggacacattggacaaccagtatttggtggtccagggt
cccagagtgacttggtacagaccaactaatctcagcgaactgctggagctgaaagctaaa
tacccggcggctaagattgtcaatggaaacactgagattggggtggaggttaagttcaag
aactgtctgtaccctgtgctgatccagcctagtctggtgatggagatgtcagagatgaga
cagagtgattcaggactgtgggtcggcgctagtgtcacactcagcaacctagagacaact
ctacgcggacacatcactgatctaccagaatacaagacaagagtatttcaagcaattgtt
gaaatgctgcactggtttgctggaaaacaaattcgaaatgtggcggctgtaggaggaaat
ataatgacagggagtcccatttctgatctcaacccaattttcatggctgccggatgcgaa
ctggaactagttagccaaggaggcaaaagagtcgtccagttgaatagctcattctggact
ggatacaggagaaacattgttaaacctgaggagatcttactggccatccacataccattc
actactgagaaccagtactttgcagcctacaagcaggccaagaggagagaagacgacatt
gctgttgtcaacgcagctttcaatctccagctgacctcccagagtcatgttgtagacatg
gagatggcttttggtggaatggctccaaccacagtgtctgctcccaatactgccgctgcc
ttgaaggacaagccctggacctctgccactatagaagcagcattctctaccctcatgaca
gaactgtccctagacccaggagcccctggtggtcttgtgtcttatagatgttccctgact
ctcagcttactcttcaagttttacctgaaagtaactcagaaattggaaagtaagaatgtc
gctgtagaaaaactgccggactcttacaaaagcgccatcaatggatttgaaagtgttcat
ccaaagagttctcaatactttcaattggttccttcaactcaatccaagacagacttggtt
ggccgtccaatcgtacacagatcagcgttcaagcaagcaacaggtgaggcgatctactgt
gatgacatgcctctctggcaagaccaagtatatctggccctggtgttcagcagcagagca
catgccaagatactcagcatagatccatcagcagctcttgcacttccgggtgtccatgct
ttctactgctctgatgatctgcctgccaaaaacaatcactttgggcccattgccaaggat
gattttgttttcgctgataaggaggtaatgtgtgtaggtcaggtggtaggtgccgtagtg
gcagatacacaacagctggctcagagagctgctaaactggtcaaggtggaatatgaggat
cttcagccagtcatcatcacaattgaggatgccatccgtgagaactcgtacttctctcct
gccccgatgaagttgcgctacggtgacgtagacgcagccttcgcaacagctgatcacatc
ctggagggagaggtgagacttggagctcaggaacagttctatctggagactcaggcttgt
atcgtcatacccaagggagaagacgacgagatggagattatatcctccacacagcatcct
actgaaatacagggagaagttgccaatatgctcggagtgactagcaacaaaatagtggtc
aaagtgaagaggatcggaggagggtttggtggcaaagagtcaagaagctccatgattgct
ctaccttgtgctttggctgccactaaattgggcaaaccagtgcgctgcatgctagacaga
gatgaagacatgatctctacgggacagagacatccgttcttgggccgctacaaagttgca
ttcacttctcaagggaagattacagcttgtgaaatcaagctttactgcaacgctggaatg
tcttacgatctgtccatggctgttatgggacgtgcgatgatgcatttccagaacgcatac
cacattcccaacgtgatggtttacggttacgtgtgcaagaccaacctcgtaaccaacact
gccttccgagggtttggaggacctcaggggatgttcattggggagactatgatgagacaa
gtggctgcctatctcaacaaggaccctttccaaatctgcagcttgaacctgtacaaagaa
ggtgaccgtacccactacacacaggagctcaagtattgtacactggacaggtgttggtca
gaggttgtgaatgactcggactataacagacggaaagccgaagttgaaaagttcaacaag
gagaaccgatggaagaaacgaggaatcgctgttgtaccgactatgttcggtgttgcgtac
actgagcagttcctcaaccaatcaggagctctggttatgatctacactgatggctcagtg
ttgttgtctcatggaggcatggagatgggtcaaggacttcacacaaagatgatccaggta
gccagtagagcccttggtatccctgcgtctctgatccacatctcagaaacttccacagac
aaagttcccaacacaggagctactgcagccagttctggatccgatctcaacggaatggct
atcatcgatgcttgtaacaagttgaatgagagactcaagccttacaaagctgccaagcct
gagggacaatggaaggattgggtgttgtctgcttggtttgacagagtcagtctggcagcc
acgggattctacagtacacccgacatcaagtatgactttgagaagaacgaaggattggct
ttcaactacatggcgtatggagccggggtgtctgaggttgagattgactgtttgactgga
gatcacattgtattacgcacagacttggtgatggatgtaggtgagagtctgaacccagcc
atagacgtcggacaagtggaaggtgctttcatgcagggctacggactgttcaccatagag
gagacagttcactcaccccaaggagctctgttgtcccgagggcctggagcctacaagata
cccggctttggtgatattcctgcagagttcaacgtggcactgcttaaaggagctcccaac
ccacgcgctgtgtattcatcaaaggcagtgggagagccccctctattcctggcgtcgtct
gtgttcttcgccattcgggaggcagtggcagcagccagggcggaggttggtttccaggga
tacttccgtctggactctcccgccactgctgcccggatacgcatgtcctgtgccgaccac
attgctcagaagtttcctgacgctcccgaaggaaagtacaaaccttggaatgtgattttg
taa
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