Enhydra lutris kenyoni (northern sea otter): 111154942
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Entry
111154942 CDS
T05871
Name
(RefSeq) LOW QUALITY PROTEIN: serotransferrin-like
KO
K14736
transferrin
Organism
elk
Enhydra lutris kenyoni (northern sea otter)
Pathway
elk04066
HIF-1 signaling pathway
elk04216
Ferroptosis
elk04350
TGF-beta signaling pathway
elk04978
Mineral absorption
Brite
KEGG Orthology (KO) [BR:
elk00001
]
09130 Environmental Information Processing
09132 Signal transduction
04350 TGF-beta signaling pathway
111154942
04066 HIF-1 signaling pathway
111154942
09140 Cellular Processes
09143 Cell growth and death
04216 Ferroptosis
111154942
09150 Organismal Systems
09154 Digestive system
04978 Mineral absorption
111154942
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:
elk04147
]
111154942
Exosome [BR:
elk04147
]
Exosomal proteins
Exosomal proteins of other body fluids (saliva and urine)
111154942
Exosomal proteins of colorectal cancer cells
111154942
BRITE hierarchy
SSDB
Ortholog
Paralog
GFIT
Motif
Pfam:
Transferrin
SRPRB
Arf
Phosphonate-bd
MMR_HSR1
GTP_EFTU
Roc
FeoB_N
Ras
Gtr1_RagA
TIP49
AAA_22
Motif
Other DBs
NCBI-GeneID:
111154942
NCBI-ProteinID:
XP_022370610
UniProt:
A0A2Y9KMU7
LinkDB
All DBs
Position
Unknown
AA seq
1000 aa
AA seq
DB search
MRLAVPTLLACAVLGLCLAVSPERTVRWCTVSNHEASKCSSFMENMKTVLENGPFVSCVK
KTSYLECIKAIWANEADAVTLDAGLVFEAGLNPYNLKPVVAEFYESEGDQKTQYYAVALV
KKSSNFNLNELEGKKSCHTGLGRSAGWNIPMGLLYWKLPEPRDSLQKDRTAFPKLCQLCA
GKGTDKCACSNHEPYFGYSGAFKCLMDDAGDVAFVKHSTVFENLPNEADRDEYRLLCPDT
LQRMTVDKYKDCHLARVPSHAVVARSVGGKEDLIWELLNQAQEYYGKDKSKAFQLFGSPL
GKDLLFKDSAQGLFRIPSKMDTWLYLGYDYVTALRNLREDVRPDTPRDECKKVKWCAIGH
HERVKCDEWSVNSEGKIECETAESTEDCIAKIAKGEADAMSLDGGFIYIAGQCGLVPVLA
ENYKVTSCQGPRGVNTFFFGVFLVGYKAVAVVKASADASLTWNNLQGKKSCHTAVERTAG
WNIPMGLLYSRINHCEFDKFFQEGCAPGSMRNSSLCALCIGSASGPGKECLPNNHERYYG
YTGAFRCLVEKGDVAFVKDQTVMQNTEGRNTEDWAKNLKEKDFQLLCPDGSRKSVSNADN
CFLAKAPNHAVVSRKDKASCVSKTLLDQQVMFGGNGNDCSGKFCLFHSKTKDLLFRDDTK
CLAKLPESTTYESYLGAAYVTAVANLRQCSTSKEIXIEDYHSRDAPLRTPAQSLGPRGFR
GAGXPRTSAMASADTRRVANGGSVGGAFQPHLDYLRQELQQRDPTLLSAVVALLAVLLTL
VFWKFIRSRRSSQRAVLLVGLCDSGKTLLFVRLLTGLYRDTQTSITDSSAVYRVNNTRAT
SLTLIDLPGHESLRLQFLERFKASARAVVFVVDSAAFQREVKDVAEFLYQVLIDSMSLKN
TPSFLIACNKQDITMAKSAKLIQQQLEKELNTLRVTRSAAPSTLDSSSTAPAQLGKKGKE
FEFSQLSLKVEFLECSAKGGRGDMGSADIQDLEKWLAKIA
NT seq
3003 nt
NT seq
+upstream
nt +downstream
nt
atgaggcttgctgtccccaccctgctggcctgcgcggtcctggggctgtgtctggctgtc
tcccctgagagaactgtgagatggtgcacggtctcaaatcatgaggccagtaagtgttcc
agtttcatggaaaatatgaaaactgtccttgaaaatggtccttttgtcagctgtgtgaag
aaaacctcctaccttgagtgcatcaaggccatttgggcaaatgaagcagatgctgtgaca
ctggatgcaggcttggtgtttgaggcgggcctgaatccctacaacctaaagcctgtagtg
gcagagttctatgagtcagaaggggatcaaaaaacccagtattatgctgtggctttggtg
aagaagagcagtaacttcaacctgaatgagctcgaaggcaagaagtcctgccatacaggc
cttggcaggtctgctggatggaacatccctatgggcttactttattggaagctgcctgag
ccacgtgactctcttcagaaggatcggacagcctttcccaaactatgtcaactgtgtgca
gggaaagggacagacaagtgtgcctgctctaaccatgaaccatacttcggatactcaggt
gccttcaagtgtctgatggatgacgctggggatgtggcctttgtcaagcattcaacagtg
ttcgaaaacctgccaaatgaagctgatcgggatgagtataggctgctctgcccagacacc
ttgcagaggatgacagtagataaatataaggactgccacctggcccgtgtcccttcccat
gctgttgtggcccgaagtgtggggggcaaggaagacttgatctgggagcttctcaaccag
gcccaggaatattatggcaaagacaaatctaaagccttccagctcttcggctcacctttg
gggaaggacctgctgtttaaggattctgcccaagggcttttcaggattccctctaagatg
gacacctggctgtacctgggttatgactatgtcactgctcttcggaatctaagggaagat
gtgcgcccggataccccaagggatgaatgcaagaaggtgaaatggtgtgccataggtcac
catgagagggtcaagtgtgatgagtggagcgtaaacagtgaagggaaaatagagtgtgaa
acagcagagtccactgaagactgtattgccaagatcgcgaaaggagaggctgatgccatg
agcttggatggaggcttcatctacatagcgggccagtgcggtctggtgcctgtcctggca
gaaaactacaaggttacaagttgtcaggggcccaggggtgttaatactttcttttttggt
gtctttcttgtagggtataaggctgtggctgtagttaaggcatcagcagatgcgagcctc
acctggaacaatctgcaaggcaagaagtcctgccataccgcagtagaaagaaccgcaggc
tggaacatccccatgggcctgctctacagcaggatcaaccactgtgaatttgataaattt
ttccaggaaggctgtgcccctggatctatgcgaaattccagtctttgtgctctgtgcatt
ggctcggcaagtggtccaggaaaggagtgtcttcccaataaccatgagagatactatggc
tacacaggggctttcaggtgtctggtggagaagggagatgtggcctttgtgaaagaccag
acggtcatgcagaacactgaaggaaggaacactgaagattgggctaagaatctgaaggaa
aaagacttccagctgctgtgccctgatggcagtaggaagtctgtgagcaacgctgacaac
tgcttcctagccaaggccccaaatcatgctgtggtctcacggaaagataaggcatcttgt
gttagcaaaacattacttgaccagcaggttatgtttggaggaaatggaaatgactgctcg
ggaaagttttgtttgttccactcgaaaaccaaggaccttctgttcagggatgacacaaaa
tgtttggccaaacttccagaaagcacaacatatgaaagttacttaggagcagcatatgtc
acagctgttgctaacctgagacagtgctccacctcaaaggaaatataaattgaggactac
cactcccgtgatgctccgcttcggacgcctgcgcagagtctagggccacgtggctttcgc
ggcgctggangaccacgaacctcagccatggcttccgcggacacccggcgggtggcgaat
ggcggcagtgtcgggggagccttccagccccacctagactacttgcggcaggagctgcag
cagagggacccgacactgctgtcagccgtggtggcgcttctcgcggtgctgctgacgctg
gtgttctggaagttcatccggagcagaaggagcagtcaaagagctgttcttcttgttggc
ctgtgtgactctgggaaaacattgctttttgtcagattgttaactggcctttacagagac
actcagacatctatcactgacagctctgctgtgtatagagtcaacaataccagggccact
agcctgaccttgattgatctcccaggccatgagagcttgagacttcagttcttagagcgt
tttaaggcttcagccagggctgttgtgtttgttgtggacagtgcagccttccagcgagag
gtgaaagatgtggcagagtttctgtatcaagtcctcatcgacagtatgagtctgaagaac
acaccatcattcttaattgcctgcaataagcaagacattacaatggcaaaatccgcaaag
ttaattcagcagcagcttgagaaagaactcaacactttacgagtcacccgttctgctgcc
cccagcacactggacagttccagcactgcccccgctcagctgggaaagaaaggcaaagaa
tttgagttctcgcagttgtccctcaaagtggagttcctagagtgcagtgccaagggtgga
agaggggacatgggctccgcagacatccaggacctggagaaatggctggcgaaaatcgcc
tga
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