Entry
Name
(RefSeq) thioredoxin reductase 3 isoform X1
KO
Organism
mthb Macaca thibetana thibetana (Pere David's macaque)
Pathway
Brite
KEGG Orthology (KO) [BR:mthb00001 ]
09100 Metabolism
09106 Metabolism of other amino acids
00450 Selenocompound metabolism
126949123
09160 Human Diseases
09161 Cancer: overview
05200 Pathways in cancer
126949123
09162 Cancer: specific types
05225 Hepatocellular carcinoma
126949123
Enzymes [BR:mthb01000 ]
1. Oxidoreductases
1.8 Acting on a sulfur group of donors
1.8.1 With NAD+ or NADP+ as acceptor
1.8.1.9 thioredoxin-disulfide reductase (NADPH)
126949123
BRITE hierarchy
SSDB
Ortholog Paralog Gene cluster GFIT
Motif
Motif
Other DBs
LinkDB
All DBs
Position
2:148148897..148229563
Genome browser
AA seq
573 aa AA seq DB search
MIFSKSYCPHSTRVKELFSSLGVECNVLELDQVDDGAKVQEVLSEITNQKTVPNVFVNKV
HVGGCDQTFQAYQSGLLQKLLQEDSAYDYDLIIVGGGSGGLSCAKEAAILGKKVMVLDFV
VPSPQGTSWGLGGTCVNVGCIPKKLMHQAALLGQALCDSRKFGWEYNQQVKHNWETMTKA
IQNHISSLNWGYRLSLREKAVAYVNSYGEFVEHHKIKATNKKGQETYYTAAQFVIATGER
PRYLGIQGDKEYCITSDDLFSLPYCPGKTLVVGASYVALECAGFLAGFGLDVTVMVRSIL
LRGFDQEMAEKVGSYMEQHGVKFLRKFIPVMIEQLEKGSPGKLKVLAKSTEGTETIEGVY
NTVLLAIGRDSCTRKMGLEKIGVKINEKSGKIPVNDVEQTSVPYVYAVGDVSEGKPELTP
VAIQSGKLLARRLFGASLEKCDYINVPTTVFTPLEYGCCGLAEEKAIEVYKKENLEIYHT
LFWPLEWTVAGRENNTCYAKIICNKLDHDRVIGFHILGPNAGEVTQGFAAAMKCGLTKQL
LDDTIGIHPTCGEVFTTLEITKSSGLDITQKGC
NT seq
1722 nt NT seq +upstream nt +downstream nt
atgatcttcagcaagagctactgtccccacagtactcgggtgaaagaactcttttcttct
ttgggagtcgaatgtaacgtcttggaacttgatcaagttgatgatggggccaaggttcaa
gaagtgctgtcagaaatcactaatcagaaaactgtgcccaatgtttttgtgaataaagtg
catgtaggtggatgtgaccaaactttccaggcatatcagagtggtttgttacagaagctc
cttcaggaagattcagcatatgattatgatctcatcattgttggtggtggttctggcggc
ctttcatgtgcgaaggaagctgccattttgggaaagaaagttatggtgctagactttgtt
gtcccgtcacctcagggcacatcctggggtcttggtggcacttgtgtaaatgtaggttgt
attcctaagaaattgatgcatcaggctgcccttttggggcaggcattgtgtgactcgagg
aaatttggctgggagtataatcaacaagtgaagcacaactgggagacgatgacaaaagcg
attcagaaccacatcagctctctaaactggggctacaggttgtctctgagggaaaaggct
gtggcctatgtcaattcctatggagaatttgttgaacatcataaaataaaggcaaccaat
aaaaaaggacaggagacttattatactgctgcacagtttgtcatagcaacgggtgaaagg
ccacgatatttaggaatccaaggagataaagaatactgtattactagtgatgaccttttt
tctctgccttactgccctggcaaaacattagtggtgggtgcctcttatgtcgccctggag
tgtgcagggtttctggctggctttggcctagatgtcacagttatggtacgctcaatcctt
ctccgtggcttcgaccaagaaatggcagaaaaagtgggttcctacatggaacagcatggt
gtgaagttcctacggaaattcatacctgtgatgattgaacagttggagaaaggttcacct
ggaaagctgaaagtattggctaaatccacggaaggaacagaaacaattgaaggagtctat
aacacagttttgttagctattggtcgtgactcctgtacaaggaaaatgggcttggagaag
attggtgtcaaaattaatgagaagagtggaaaaatacctgtaaatgatgtggaacagacc
agtgtgccatatgtctatgctgttggggatgtttcggagggtaagccagagctcactcct
gtcgccatacagtcaggcaagctgctagctcggagactttttggggcctctttagaaaag
tgtgattatattaatgttccgactacggtgtttactcctctggagtatggttgctgcgga
ttagctgaagaaaaagctattgaagtatataaaaaagagaatctagaaatatatcatact
ttgttctggcctcttgaatggacagtagctggcagagagaacaacacttgttacgcaaag
ataatctgcaataaattagaccatgatcgggtgataggatttcatattcttggaccaaat
gccggtgaggttacccaaggatttgcagctgcaatgaaatgtgggctcacaaaacagcta
cttgatgacaccattggaattcaccccacatgtggggaggtgttcacgactttggaaatc
acaaagtcgtcgggactagacatcactcagaaaggttgctga