Eucyclogobius newberryi (tidewater goby): 140351496
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Entry
140351496 CDS
T10929
Name
(RefSeq) B-cadherin-like
KO
K05689
cadherin 1, type 1, E-cadherin
Organism
eny Eucyclogobius newberryi (tidewater goby)
Pathway
eny04371
Apelin signaling pathway
eny04514
Cell adhesion molecules
eny04520
Adherens junction
eny05100
Bacterial invasion of epithelial cells
Brite
KEGG Orthology (KO) [BR:
eny00001
]
09130 Environmental Information Processing
09132 Signal transduction
04371 Apelin signaling pathway
140351496
09133 Signaling molecules and interaction
04514 Cell adhesion molecules
140351496
09140 Cellular Processes
09144 Cellular community - eukaryotes
04520 Adherens junction
140351496
09160 Human Diseases
09171 Infectious disease: bacterial
05100 Bacterial invasion of epithelial cells
140351496
09180 Brite Hierarchies
09182 Protein families: genetic information processing
03036 Chromosome and associated proteins [BR:
eny03036
]
140351496
09183 Protein families: signaling and cellular processes
04515 Cell adhesion molecules [BR:
eny04515
]
140351496
04090 CD molecules [BR:
eny04090
]
140351496
Chromosome and associated proteins [BR:
eny03036
]
Eukaryotic type
Centrosome formation proteins
Other centrosome associated proteins
140351496
Cell adhesion molecules [BR:
eny04515
]
Cadherins
Major cadherins
140351496
CD molecules [BR:
eny04090
]
Proteins
140351496
BRITE hierarchy
SSDB
Ortholog
Paralog
GFIT
Motif
Pfam:
Cadherin
CADH_Y-type_LIR
Cadherin_pro
Cadherin_4
SIT
Motif
Other DBs
NCBI-GeneID:
140351496
NCBI-ProteinID:
XP_072293448
LinkDB
All DBs
Position
Unknown
AA seq
914 aa
AA seq
DB search
MGTVTLALLGALLVVLQTSTTEGPSCSPGFSSDSFLFRVGRRQLHSGMKLGKVEFSDCSD
RRRFVFHSEDSRFSVQSDGALTVKRHVSLHDGHRHFSVHSWDSNGNKFTALVRVQHQEHH
QGDQNQGHHHGDGHPQGNHEKHHARGQREVDLPPVAQVPVQDVSSRQKREAARNEESFPK
DLKRRKRQSAGIDVMFPENDQGPFPKRVTRVRYTKPGVVHFSITGPGADQTPEGLFTMDK
TSGIIYVTQPLDREATDHYTLMVHTVAEGSGQTEEHAVIEVIVTDMNDNRPVFTKDTYFG
ELAESSPLNYNILQVTATDADQEGTTNALIQYKILDQEPKFPTPDMFTINPVNGFIQVNA
QGLDREKNTKYTLEIQAADMEGNGLTGETKVILTVTDSNNNAPAYEQTQYTATVAENEKG
AMVVKMLVTDKDDAHTLAWNAKFTIVDGNVNGRFSVETGPNKQEGIISTAKGLDFEKSQT
HTLLVAVENEVPFAMKLPTATATVVVTVADVNEAPIFEPTVKQVSKREDLDLESEVVQYT
AYDPDTARNQKVMRYRIVSDPAGWLNVAKDTGQVTVKSPMDRESVFVKNDIYTALIGAYD
NDEVPATGTGTLQIKLEDVNDNAPSVDERDIKVCNKEPAPHLLSVTDKDGPGFSAPFRVE
LQGTSTANWIARMNDSKIGIVLLLTTDLDPGFYDVQLQVYDAQGENQVSTVKAQVCSCKG
PDVMCEGRAPIGPLLPIILKVLGGILLLLMMVLLLLHFTRRKREDQTEPLLQEDDIRDYI
HYDNEEGGGEDDQTFNLSVLHLGLDNRPEVFRNDVAPNFLPAPQYCPRLANLDKIGNFMD
DNMKAADKDLTAPYDSLLAFNYEGDSSEAGSLSSLNSSSSGDQDFDYLHEWGPRFKKLTD
MYGGDEDEDEDDMI
NT seq
2745 nt
NT seq
+upstream
nt +downstream
nt
atggggacggtcacgcttgcgttgttgggcgctctgctcgtcgtcttacagacctcgacc
acagaaggtccatcatgttctcctggtttctcctctgactcgttcctcttcagagtcggc
agaaggcagctccactccggcatgaagctcggcaaagtggagttcagcgactgctcggat
cgaaggaggttcgtgttccacagcgaagactctcgattctctgttcagagcgacggagcg
ctcacggtgaagcgacacgtgtctctgcacgacggccacagacacttctccgtccactcc
tgggactccaacgggaacaagttcaccgccctggtccgagtgcagcaccaggagcatcac
caaggcgaccagaaccaggggcatcaccacggagacgggcatccccagggaaaccacgag
aagcaccacgcccgcggacaaagggaggtagatcttccgcccgtcgctcaggttcctgtt
caagacgtttccagtcgccagaaacgagaagctgcaagaaatgaggagtctttccctaaa
gacctgaagaggaggaagaggcagtcggctggtattgatgtgatgttccctgaaaacgac
caaggccctttcccaaagagagtgactcgggtccgttacaccaaacctggtgtggttcac
ttcagcatcacgggccccggggccgaccagacccctgagggactcttcactatggacaag
acctctgggatcatttatgtgacgcagcctctggacagagaagccactgaccactacact
ctcatggttcatactgttgctgaaggctccggtcagactgaagaacacgcagtgattgaa
gtcattgtgaccgacatgaacgacaaccggccggtctttaccaaagacacgtactttggt
gaattggcagagtcgtcacctctcaattataacatccttcaggtgacggcgaccgacgca
gatcaggaggggactactaatgctcttattcagtacaaaatcctggaccaggagccaaag
tttcccacacctgacatgttcaccatcaaccccgtcaatggcttcatccaagtgaacgct
caaggcctggacagagagaaaaacacaaagtacactctggagatccaggcggccgacatg
gaaggaaatggactcaccggggaaactaaagtcattctgaccgtaaccgacagcaacaac
aacgccccagcctacgagcaaacgcagtacacggccacagtcgctgagaatgagaaaggc
gctatggtggtgaagatgctggtgacggacaaggacgacgcccacactctggcctggaac
gccaaattcaccatcgtcgacggcaacgtaaatgggcggttttccgtggaaaccggcccc
aacaaacaggagggaatcatctccactgcaaagggcctggactttgagaagagtcagact
cacactctgttggtcgccgtggagaatgaggtgcccttcgccatgaagctgcccaccgcc
acggcaaccgttgttgtcacagttgcggatgtaaacgaagctcctatcttcgaacccacc
gtaaagcaggtctccaaacgcgaggacttggatttggaatctgaggtggtccagtacacg
gcctacgacccagacacggcccgcaaccagaaagtcatgcgatatcgtatcgtgagcgac
ccggccggctggctcaacgtggccaaagacactggacaggtcacagtgaagtcgccgatg
gaccgagagtctgtgtttgtgaagaacgacatttatacagctctgatcggcgcctatgac
aacgacgaggttccggccacaggaaccggaactctgcagataaaactggaggacgtgaac
gacaacgccccgtccgtcgatgaacgcgacatcaaggtgtgtaacaaagaaccagctcct
cacctgctgagcgtcaccgacaaagacgggccgggcttctctgccccgttcagagtcgaa
ctccaaggaacgtcaacggccaactggatcgcacgcatgaacgacagcaagatcgggatc
gtcctgctcctgaccacagacctggacccgggtttctacgacgtgcagctgcaagtgtat
gacgctcagggtgagaaccaagtgtccacggtcaaggcccaggtctgctcctgcaaaggt
ccagacgtgatgtgtgagggccgagctccaataggaccacttctgccgatcatcctgaag
gtgctgggcgggatcctgctcctgctcatgatggttctgctgctgctgcacttcactaga
cgcaaacgagaggatcagacagaacctctgcttcaagaagacgacatcagagactatatc
cactacgacaacgaggagggcggaggagaagacgaccagaccttcaacctgagcgttctc
cacctcggcctggacaacagacctgaagtcttcagaaacgacgtggctccaaacttcttg
cccgctccgcagtattgccctcgactggccaatctcgacaagatcgggaacttcatggac
gacaacatgaaggcggcggacaaggacctgacggcgccctacgactcactgctggcgttc
aactacgagggcgacagctcggaggccggctctctctcgtcgctcaactcgtccagctcc
ggcgaccaggacttcgactacctgcacgagtggggcccgcgcttcaagaagctcaccgac
atgtacggaggagacgaggacgaggacgaggacgacatgatctaa
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