KEGG   Antennarius striatus (striated frogfish): 137614098
Entry
137614098         CDS       T10427                                 
Symbol
tfr1b
Name
(RefSeq) transferrin receptor 1b
  KO
K06503  transferrin receptor
Organism
astr  Antennarius striatus (striated frogfish)
Pathway
astr03273  Virion - Lassa virus and SFTS virus
astr04144  Endocytosis
astr04145  Phagosome
astr04216  Ferroptosis
astr04350  TGF-beta signaling pathway
Brite
KEGG Orthology (KO) [BR:astr00001]
 09120 Genetic Information Processing
  09125 Information processing in viruses
   03273 Virion - Lassa virus and SFTS virus
    137614098 (tfr1b)
 09130 Environmental Information Processing
  09132 Signal transduction
   04350 TGF-beta signaling pathway
    137614098 (tfr1b)
 09140 Cellular Processes
  09141 Transport and catabolism
   04144 Endocytosis
    137614098 (tfr1b)
   04145 Phagosome
    137614098 (tfr1b)
  09143 Cell growth and death
   04216 Ferroptosis
    137614098 (tfr1b)
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01002 Peptidases and inhibitors [BR:astr01002]
    137614098 (tfr1b)
  09183 Protein families: signaling and cellular processes
   04147 Exosome [BR:astr04147]
    137614098 (tfr1b)
   04090 CD molecules [BR:astr04090]
    137614098 (tfr1b)
Peptidases and inhibitors [BR:astr01002]
 Metallo peptidases
  Family M28: aminopeptidase Y family
   137614098 (tfr1b)
Exosome [BR:astr04147]
 Exosomal proteins
  Exosomal proteins of haemopoietic cells  (B-cell, T-cell, DC-cell, reticulocyte, and mast cell)
   137614098 (tfr1b)
  Exosomal proteins of colorectal cancer cells
   137614098 (tfr1b)
CD molecules [BR:astr04090]
 Proteins
  137614098 (tfr1b)
SSDB
Motif
Pfam: Peptidase_M28 PA TFR_dimer Herpes_pp38
Other DBs
NCBI-GeneID: 137614098
NCBI-ProteinID: XP_068199728
LinkDB
Position
20:2744005..2752153
AA seq 776 aa
MDRIRSWFNQVTMSERYSRFMLQPVEDGENHVEVKLSDDATEVEDNDGGSPRFRPAPLRQ
GRRNLCYLVLGSLLIFFTGCLIGYVSHRTSDVAPDNCSAAAAAATGANAVATGAAAASSD
VKPTSRLDVVPTFPSAPPEVQLAWKDITQLLKQKLTSEAFDKTLSDFDLRSRSAGSQEDV
HLANRLIEEFKKLDMSPWSDNHYVQLQKPDRERPNRVTFGTSVFEPTGYLAYSAQGKVRG
KLVYGNYGRKEDLDVLKSNNVEVGGNVLLLRAGKISFAEQVDNAAKKGASAVLIFPDSDD
YKYDMSTPLYGQVHLGSGDPYTPGFPSFNHTQFPPTKSSGLPEIPAQTITANMARTLLGG
IGGPEPDASSGFTGGLKSLTYRLGGVENVTVEVNNVLVNTEVHNVFGVIQGFIDPDRYVV
LGAQRDAWGQGYAKATIGTAVLLELAKAVRKMVEEDGFRPRRSLIFASWSAGEYGSVGAT
EWLEGYMSSIDRNVVTYISLDGLVMGLGGVMASASPLLYSLLESTMKETQNPFGSGSVYD
LMGRAKWESNTLRPMSIDDPSYPFLTFSGIPSISFHFITPNTEAYTYYGTDLDSKDHLDY
KTNHRTNEMTALAAQFAGSMALRLVHDRLLRLDVRRYSIELSRGVGQVYQHVRQHIQAGR
LKGVDPNWLFRARGAFQRAAANLNNDKDNTDLEDVEACRVLNNRMMRVEHTLLSPYVTPT
ETPFRHVLHGRGPHTMASIAASDDMEQLHIQLALVTWTLQGCANAMVGEIWEITGM
NT seq 2331 nt   +upstreamnt  +downstreamnt
atggatcgaatccggtcttggtttaaccaagtgacgatgagtgagcgctacagcaggttc
atgctgcagccggtggaggatggagagaatcacgtcgaggtcaaactgtctgacgacgcc
acagaggtcgaggacaacgatggggggtctccaagattcaggccggcgcctctgcgtcag
ggccgtcgtaacctctgctacctggtcctgggatccctgctgatattttttactggctgc
ctgattggctacgtcagccaccgtacgtctgacgtggcgccagataactgcagcgccgca
gctgcagccgcaaccggagcgaatgcagtcgcaactggagctgcagctgcgagcagtgat
gtgaaacccacaagtcggttggatgttgttccgacgttcccctcagcaccccctgaagtt
cagctggcgtggaaggacatcacccaactcctgaagcagaagctcaccagcgaggccttt
gacaaaaccctgagcgactttgacctgcgcagtcgctcagcaggaagtcaggaagacgtg
catctggcaaaccgcctcattgaggaattcaagaagctggacatgagcccctggagcgac
aaccactatgttcaactgcaaaagcctgacagggagcgtcccaaccgtgtcacctttggt
acgagtgtcttcgagccaacggggtatctggcctacagcgctcaagggaaagttcggggg
aagctggtgtacggaaactacggccgcaaggaggatctggatgttctgaagagcaacaac
gtggaagtgggaggcaacgttttgctgctgcgagctggaaagatcagctttgcggagcag
gtggataacgctgccaagaaaggtgcttctgctgttttaatcttccccgacagcgacgat
tacaaatacgatatgagcactccgctctatggacaagtccatctgggttcaggggacccc
tatactccgggcttcccttccttcaatcatacccagtttcccccaactaaatcatccggc
ctcccagaaatcccagcgcagaccattactgccaatatggctagaactctcctcggggga
attggcggtcccgaaccggacgcgagcagcggcttcacgggcggtttaaaatcgctcacc
tacagattgggaggcgtggagaacgtcaccgtggaggtgaacaacgtgttggtcaacaca
gaggtccacaacgtgttcggagtcatccaaggattcatcgatcccgatcgctacgtcgtc
ctgggagctcaaagagacgcttggggtcaaggctacgccaaagccaccatcggcaccgcc
gtgctgctggagctggccaaagctgtccggaagatggtcgaggaagacggcttcaggccc
aggaggagtctgatctttgcgagctggagtgctggagagtacggaagtgttggcgccacc
gagtggttggagggttacatgtcgtctatcgataggaacgttgtcacctacatcagcctg
gacggactggtgatgggtcttgggggtgtgatggcttctgccagcccactgctttacagc
ctcctggagagcaccatgaaagagacgcagaacccgttcggctccggcagcgtgtacgac
ctgatgggacgggcgaaatgggaatcaaacacgctgaggccgatgtcgatagacgacccc
tcctacccgttcctgaccttctctgggattccctccatctctttccacttcatcactcca
aacactgaggcctacacgtactacggcaccgacctggacagcaaggatcacctggactac
aaaaccaaccacagaaccaacgaaatgacggcgttggcggcgcagtttgccggctccatg
gctctgcgtctggtccacgaccgcctgctccgactggacgtgaggcgctacagcatcgag
ctatcccggggggtggggcaggtgtaccagcacgtccggcagcacatacaggccggccga
cttaagggggtggaccccaactggctgttccgagctcgaggcgcgttccagcgagccgcc
gccaacctcaacaacgacaaagacaacacggacctggaggacgtggaggcgtgtcgcgtc
ctgaacaacaggatgatgagggtggagcacaccctcctctctccgtacgtgacccccacc
gagacgcccttccgtcacgtccttcatggtcgcggcccccacacgatggcatcaattgcc
gcgagcgacgacatggagcagctgcacatccagctagctctggtcacctggaccctccag
ggctgcgccaacgccatggtgggggaaatctgggagatcactggaatgtaa

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