Sardina pilchardus (sardine): 134071644
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Entry
134071644 CDS
T10667
Symbol
tfr1a
Name
(RefSeq) transferrin receptor 1a
KO
K06503
transferrin receptor
Organism
spil Sardina pilchardus (sardine)
Pathway
spil03273
Virion - Lassa virus and SFTS virus
spil04144
Endocytosis
spil04145
Phagosome
spil04216
Ferroptosis
spil04350
TGF-beta signaling pathway
Brite
KEGG Orthology (KO) [BR:
spil00001
]
09120 Genetic Information Processing
09125 Information processing in viruses
03273 Virion - Lassa virus and SFTS virus
134071644 (tfr1a)
09130 Environmental Information Processing
09132 Signal transduction
04350 TGF-beta signaling pathway
134071644 (tfr1a)
09140 Cellular Processes
09141 Transport and catabolism
04144 Endocytosis
134071644 (tfr1a)
04145 Phagosome
134071644 (tfr1a)
09143 Cell growth and death
04216 Ferroptosis
134071644 (tfr1a)
09180 Brite Hierarchies
09181 Protein families: metabolism
01002 Peptidases and inhibitors [BR:
spil01002
]
134071644 (tfr1a)
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:
spil04147
]
134071644 (tfr1a)
04090 CD molecules [BR:
spil04090
]
134071644 (tfr1a)
Peptidases and inhibitors [BR:
spil01002
]
Metallo peptidases
Family M28: aminopeptidase Y family
134071644 (tfr1a)
Exosome [BR:
spil04147
]
Exosomal proteins
Exosomal proteins of haemopoietic cells (B-cell, T-cell, DC-cell, reticulocyte, and mast cell)
134071644 (tfr1a)
Exosomal proteins of colorectal cancer cells
134071644 (tfr1a)
CD molecules [BR:
spil04090
]
Proteins
134071644 (tfr1a)
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
Peptidase_M28
PA
TFR_dimer
DUF4731
Motif
Other DBs
NCBI-GeneID:
134071644
NCBI-ProteinID:
XP_062384430
LinkDB
All DBs
Position
2:complement(34930967..34945416)
Genome browser
AA seq
786 aa
AA seq
DB search
MDQARTTISKIFNGEPRSYTRFSLTQNMEGGDSQVEMKLAPEVEEEVGTNGVGEHLNHQS
QSPYRRKPSRTPKNIFYLIAVTLLIFIIGYLIGYLVHRKQDKSSPTCDQTDDQAVAGRVA
DDEDSSWTGSYTPQLDWSDVKKLFGDKLTVSQIEASLREFASNDHRAGSPGDEDLANKVL
QRFRENNLKTWDDKHYVTLQVPPTSASNSLTFRGQNLGPLQGYLAYSASGSAEGSVLYAY
YGRVEDFEDLEDNGVGVSGRIVLVRAGGRISFAEKVANAANMNASAVLIYPDPADYAFSE
GTHLFGHVHLGSGDPYTPGFPSFNHTQFPPARSSGLPNIIAQTITASMAKSIMGKMGGRT
APRSWIDGGLSGVLYKLGEDSDTATVQVNNALANTRIHNVFGVIKGVTDPDRYVVIGAQR
DAWGPGFAKSTVGTALLVELAKTISYMVREGRFVPRRSFVFASWTAGEYGNIGATEWLES
YLPSLSMKAYSYISLDGVVAGTTETFKASASPLMNGLILDTMKEVYTVHDPRKTIFAQVG
EPKWEGVVLEDMDMSNPAYPFTTFSGIPSVSFRFSAGQAKGVYPFYNTLLDTRENLNSAT
YGNVAKVARAAGQVAGHMALRLVHDHLIRLSVEQYDQIIRKRVIQINGKVNVLLQNGRLP
ANFTPQWLISAMGSYGRGARSIYSAIENSDLEDTEHCRLLNDRLMRVEANLLSPYVSPID
SPFRHILLGSGQHTLSALVENLDALKSTSEPGDVDRLLNQFAQATWTIQSCANALAGEVW
DMDNNI
NT seq
2361 nt
NT seq
+upstream
nt +downstream
nt
atggaccaagccaggacaacgatatctaaaattttcaacggggagccacgctcatacacc
cgtttcagccttacccaaaatatggagggtggagacagccaggtggagatgaaactcgcc
ccagaggtggaggaggaagtgggaaccaacggggtgggggaacacctcaaccaccagagt
cagtcgccctacagacgaaagccgtcacgcacccctaaaaatatcttttatctgattgca
gtcactctactcatctttatcattggatatcttattggatacctggtgcatcggaagcag
gataagtcctcaccaacttgtgatcagactgatgatcaggcggtagctggacgtgtggct
gatgatgaagattcaagttggactggatcatatacacctcaactggattggagcgacgtt
aaaaagctgtttggagacaagctgacagttagccagattgaggccagtctgagggagttt
gccagtaatgaccacagggctgggtctccaggtgacgaggacctggccaacaaagtgctg
cagaggttccgggagaacaacctgaagacctgggatgataagcactatgtgacgctgcag
gttccacctacctctgcttccaacagtctcacgttccgtggccagaacttgggtcctcta
caaggttacctggcctacagtgccagcggatctgcggagggtagtgttttgtatgcttac
tatggacgggtggaagactttgaagacctggaagataatggtgttggtgtgagtggaagg
attgttctggtcagagctggtgggcgtataagctttgctgaaaaggtggctaatgctgca
aacatgaatgcaagcgctgtcctgatctaccctgatccagcagattatgccttcagtgaa
ggaactcatctgtttggccatgtgcatcttggttcaggagatccctacacaccaggcttc
ccctcattcaaccacactcagttcccacctgcacgctcgtctggcttgcccaacatcata
gcccagaccatcactgcgtcaatggccaaatctattatggggaagatggggggacggact
gctcctcgcagctggattgacggtgggctgtctggagtgctgtacaaactgggagaggac
agcgatactgcaactgtgcaagtgaacaatgccctggccaatacaaggattcacaacgtg
tttggtgtcatcaagggtgtcaccgatccagaccgctacgttgtgataggagctcagagg
gacgcatggggccctggctttgccaagtcaactgtgggcactgctttgttggtggaactg
gccaagaccatcagctacatggtcagagaaggcagattcgtgcccagaagaagttttgtc
tttgccagctggacagctggtgaatatggtaacattggcgccaccgagtggttggagagt
tatttgccatctctgagtatgaaggcttactcttacatcagtctggatggagtcgtagca
ggcactactgagactttcaaagcaagtgcaagccccttgatgaatggtctaattttagac
acaatgaaggaggtgtacactgttcatgaccctagaaaaacaatcttcgcacaagtggga
gagcccaaatgggaaggagtagtgctggaggatatggacatgtcaaaccctgcctatcca
ttcacaaccttctccggtattccatcggtctccttccggttcagtgcaggccaggccaaa
ggggtgtaccctttctacaataccctgctggacactagagaaaacctgaactcggccacg
tatggaaacgtggcaaaggtggctcgggctgcggggcaggtggctggtcacatggccttg
aggctcgtccacgaccatctgatcaggttgagtgttgagcagtatgatcagatcattcgt
aaacgcgtcatccagatcaacggcaaagtcaacgtactgctgcagaatggccgtctcccc
gccaacttcaccccgcagtggctcatctccgccatgggctcctatggacgtggcgcacgt
agtatctacagcgccattgagaacagtgatctcgaggacacagagcattgccgcctgctg
aatgaccgtctgatgcgggtggaggccaatctcctgtccccatatgtttctcccatagac
agcccattccgccatatcttgctcggctcaggccagcacacgctcagcgcccttgtggag
aacctggacgccctgaagagtacctcagagccgggtgacgtcgaccggctgctgaaccag
ttcgcccaagccacctggaccatccagagctgcgccaacgccctggcaggggaggtgtgg
gacatggacaacaacatttag
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