Xiphophorus couchianus (Monterrey platyfish): 114151183
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Entry
114151183 CDS
T05908
Name
(RefSeq) eosinophil peroxidase-like
KO
K00431
thyroid peroxidase [EC:
1.11.1.8
]
Organism
xco
Xiphophorus couchianus (Monterrey platyfish)
Pathway
xco00350
Tyrosine metabolism
xco01100
Metabolic pathways
Module
xco_M00043
Thyroid hormone biosynthesis, tyrosine => triiodothyronine/thyroxine
Brite
KEGG Orthology (KO) [BR:
xco00001
]
09100 Metabolism
09105 Amino acid metabolism
00350 Tyrosine metabolism
114151183
Enzymes [BR:
xco01000
]
1. Oxidoreductases
1.11 Acting on a peroxide as acceptor
1.11.1 Peroxidases
1.11.1.8 iodide peroxidase
114151183
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Gene cluster
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Motif
Pfam:
An_peroxidase
EGF_CA
Sushi
EGF_3
Motif
Other DBs
NCBI-GeneID:
114151183
NCBI-ProteinID:
XP_027884028
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Position
2:11608462..11618578
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AA seq
878 aa
AA seq
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MSASLVGLALVLLAFPEHAVMSTPFGNSSETAYLGSAYIHQALQRAIELTDAAYAHTSER
VKKSYTEGALKPSDLLAQFKQIETRTRTHIRAAELLDNTVELIREMVYTNTMVQPKPYEL
LSEGDVENLLQMTGCSAELHTLSCQTGCMSERYRSITGECNNRQHPRWGAANIPYSRWLP
PEYEDVWGTPRGWDPEHTYHNVSLPPVRLVSQEVLFTHNDKISVDSTLSHLLVDWGQWID
HDMVLTPQSPSTSVFKTGADCTRSCSRDSPCFPIQIPLSDPRSGVQSCMPFFRSAPSCDN
GVLPPRQREQLNAITSFVDASMVYGSSPGLASALRNQSSPLGSMALNSRYWDEELPYMPF
LSRVQAHLDPCGPRNSSTVWASSRSALRENTTSCFHAGDSRVNEHLGLIVLHTLFLREHN
RLVKELHQLNPHWSPETLYQEARKIIGAIHQILTWEHYLPRVLGESAMSQLMPRYQRYDP
DVDPSIANTFATAAFRFAHVTVQPVVNRLGPDYTFNPEYPPLPLHHSLFASWRVIQEGGI
DPVLRGMLLSPAKLQTAGQMMVEELTERLFQAQGGMPLDLGALNLQRSRDHGLPGYSSWR
QFCNLSVPNTMSDLAEILGNFTLAHKFELLYGTPHNIDVWVGAISEPALPGGRVGPLLSC
LLTRQFRALRDGDRFWWERNGVFTRTQRTHLHNVSLSRIICDNSHISRVPVDPFSRTESP
EDMLACSHPLIPHLDLGPWKEPHTDPVCGPIPRIHSGYSLLCNFTILYQCRVGFRLLGSA
SISCDAESQKWSSPPPTCQDINECEELISSCPQHLECFNTAGSFVCSEPSRLSAVSIVAA
VIVVMVGAAGLVLLLICYRRYFPKSEELISAECRQEKS
NT seq
2637 nt
NT seq
+upstream
nt +downstream
nt
atgtcagcatctctagttggacttgctcttgtcctgctcgcctttccggagcacgctgtg
atgagtacaccatttggcaacagctcagaaactgcatatttgggttcagcatacatccat
caggctcttcagagagccattgagctgacggatgctgcctatgcccacacgtctgagagg
gtgaagaagtcttatactgaaggtgccctcaaacccagtgacctactggcccagtttaaa
cagattgaaaccagaacccggactcacattcgagctgctgagctgctggacaacacagtg
gagctgatccgagagatggtctacaccaacacgatggtgcagcccaagccgtatgagctt
ttgagtgaaggagacgtggagaatctgctgcagatgaccggttgctctgctgagctgcac
accctcagctgtcagacaggctgcatgtctgagcgctacaggtccatcacaggcgaatgc
aacaacagacaacatccaagatggggtgctgcaaacatcccatattcccgctggctgcct
ccagaatatgaggatgtgtgggggacgcccagaggctgggaccctgaacacacctaccat
aacgtcagcctccctcctgtgagactcgtgtcacaagaagtgctgtttactcacaacgat
aaaatctctgtggactccactctgtcccacctgctggtggactggggtcagtggatagac
cacgacatggtgctgacccctcagagccccagcacatccgtcttcaagacgggcgctgac
tgcacccgcagctgcagccgggactcgccctgcttccccattcagatcccgctatccgat
cctcgcagcggcgtccagagctgtatgcccttcttccgttctgctcccagctgtgataat
ggagtcctgcctcctcgccagcgggagcagctcaacgccatcacctcctttgtagacgcc
agcatggtgtacggcagctcccccggcttggcctctgctctcaggaaccagtcgtctcct
ctgggctccatggccctcaactcccggtactgggatgaggagttgccgtacatgccgttc
ctgtcccgggtgcaggctcacctggacccctgcggtccccgtaactcctccaccgtgtgg
gcgtcgagcagatcggcactcagggagaacaccacttcatgctttcatgctggggattca
agagtcaatgaacatctgggactgattgtgctgcacacactctttctgagagagcacaac
cggctggtgaaggagctgcaccagctcaaccctcactggagtccagagaccctctatcag
gaagcgaggaagatcatcggagccatccaccagatcctaacctgggagcactacctgcca
cgggtgcttggtgagagcgccatgtcccagctgatgccccgctaccagaggtatgatcca
gatgttgacccaagcatcgccaacacgtttgctacggcggcgttccgttttgctcacgtc
actgttcagccagtagtgaaccgtctgggtccagattacacctttaacccagagtatccc
cctctgcctctgcatcactcactgtttgcttcatggagggtcatacaggaaggtggtatc
gacccagtgctgcgaggcatgctgctgtctcccgccaagctgcagactgcaggtcagatg
atggtggaggaactcacagaaaggctgtttcaggcacagggggggatgcctctggacctc
ggggccctgaacctgcagaggagccgggaccacggcctgcctgggtacagctcatggcgc
cagttctgtaatctttctgttcccaacacgatgtcagatctggccgaaattttggggaac
ttcactttggctcataaatttgagcttttatacggaacaccgcacaatatcgatgtttgg
gtcggggccatatctgagccggctctgcccggaggacgagtgggaccgctcctgtcctgc
ctcctgaccagacagttcagagcactgagagacggggacaggttctggtgggagagaaat
ggagttttcaccagaacccagaggacacacctgcacaacgtctccctgtcccgcatcatt
tgtgacaacagccacatcagccgtgtccctgtggacccgttttcacgcaccgagagccct
gaagacatgctggcctgttcccacccactcatcccccatctcgacctcggcccttggaaa
gagcctcacacagatcccgtctgtggcccgatacccaggattcactctggctactctctg
ctctgcaacttcacgatcctttatcagtgtcgggttggattcaggctgctgggctctgca
tccatcagctgtgatgcagagagccagaagtggagctctccgcctccaacgtgtcaagat
atcaatgagtgtgaggagctgatttcttcttgtccacaacatctggaatgctttaacaca
gcaggttccttcgtttgctcagagccctcccgcctgtctgctgtctccatcgtggctgca
gtgatagtggtgatggttggtgcagccggcctggtgctgctcctgatctgttatcgaaga
tatttcccaaagtctgaagagttgatctctgctgaatgtaggcaggagaagagttga
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