Eleginops maclovinus (Patagonian blennie): 134867710
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Entry
134867710 CDS
T09869
Name
(RefSeq) claudin-10-like isoform X1
KO
K06087
claudin
Organism
emac
Eleginops maclovinus (Patagonian blennie)
Pathway
emac03272
Virion - Hepatitis viruses
emac04382
Cornified envelope formation
emac04514
Cell adhesion molecules
emac04530
Tight junction
Brite
KEGG Orthology (KO) [BR:
emac00001
]
09120 Genetic Information Processing
09125 Information processing in viruses
03272 Virion - Hepatitis viruses
134867710
09130 Environmental Information Processing
09133 Signaling molecules and interaction
04514 Cell adhesion molecules
134867710
09140 Cellular Processes
09144 Cellular community - eukaryotes
04530 Tight junction
134867710
09150 Organismal Systems
09158 Development and regeneration
04382 Cornified envelope formation
134867710
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
03037 Cilium and associated proteins [BR:
emac03037
]
134867710
04147 Exosome [BR:
emac04147
]
134867710
04515 Cell adhesion molecules [BR:
emac04515
]
134867710
Cilium and associated proteins [BR:
emac03037
]
Other cilia and associated proteins
Stereociliary proteins
134867710
Exosome [BR:
emac04147
]
Exosomal proteins
Exosomal proteins of ovarian cancer cells
134867710
Exosomal proteins of colorectal cancer cells
134867710
Cell adhesion molecules [BR:
emac04515
]
Immunoglobulin superfamily
L1 family
134867710
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
PMP22_Claudin
Claudin_2
Motif
Other DBs
NCBI-GeneID:
134867710
NCBI-ProteinID:
XP_063744558
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All DBs
Position
7:complement(10452741..10456971)
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AA seq
237 aa
AA seq
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MSSLQILAFLSGLAGLGATIAATVSNEWRATSRASSVITATWVLQGLWNNCAGNAIGALH
CRPHHTFFKLEGYIQACRGLMISAICLGFFGSTFALVGMKCTKIGGTDNNKARIACFAGV
NFLLSGICSLSSCSLYAHRITSEFFDPMFIAQKYELGAALFIGWSGSILCILGGTMLCFS
IAGSFTKSHSQANYIYKGTASHISSYPRGQAKPVNPRPPPDYSNSSRMQHFDKNVYV
NT seq
714 nt
NT seq
+upstream
nt +downstream
nt
atgtcaagcttgcagatcctggcttttctcagcggcctggccgggctgggggccactatc
gctgccacagtgtccaacgaatggagggctaccagccgagcatcctcagtcatcacagca
acatgggtgctccagggtctttggaacaactgtgctggaaatgccattggagcgcttcac
tgcagaccacatcatacttttttcaagctggaaggctatatccaagcttgcagaggactg
atgatttcagccatctgtttgggattctttggttccacatttgctcttgttggaatgaaa
tgcaccaaaatcggaggaacagacaacaacaaagccaggattgcctgctttgctggagta
aatttccttttaagtggcatctgctcactttcatcatgctccctctatgctcatcggatt
acatcagagttttttgacccaatgtttattgcacagaagtatgaacttggagctgctctc
tttattggctggtcaggttctatcctctgtatcctcggaggcaccatgctctgtttctcc
atcgcaggttctttcaccaaaagccacagtcaggcaaactatatttacaaaggtactgct
tctcatatctcctcctacccgagagggcaggcaaagcctgtaaacccgaggccaccccca
gactacagcaactcctccaggatgcagcactttgataagaatgtttatgtttga
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