Xiphophorus maculatus (southern platyfish): 102231940
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Entry
102231940 CDS
T02923
Name
(RefSeq) CAP-Gly domain-containing linker protein 1-like isoform X1
KO
K10421
CAP-Gly domain-containing linker protein 1
Organism
xma
Xiphophorus maculatus (southern platyfish)
Pathway
xma04150
mTOR signaling pathway
Brite
KEGG Orthology (KO) [BR:
xma00001
]
09130 Environmental Information Processing
09132 Signal transduction
04150 mTOR signaling pathway
102231940
09180 Brite Hierarchies
09182 Protein families: genetic information processing
03036 Chromosome and associated proteins [BR:
xma03036
]
102231940
09183 Protein families: signaling and cellular processes
04812 Cytoskeleton proteins [BR:
xma04812
]
102231940
Chromosome and associated proteins [BR:
xma03036
]
Eukaryotic type
Centrosome formation proteins
Microtubules and associated factors
Microtubule-associated proteins
102231940
Cytoskeleton proteins [BR:
xma04812
]
Eukaryotic cytoskeleton proteins
Microtubules
Tubulin-binding proteins
Cytoplasmic linker proteins (CLIPs)
102231940
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
CAP_GLY
CLIP1_ZNF
Cep57_CLD_2
Motif
Other DBs
NCBI-GeneID:
102231940
NCBI-ProteinID:
XP_014325516
LinkDB
All DBs
Position
8:complement(24372471..24409739)
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AA seq
920 aa
AA seq
DB search
MDKQGPVTTPGKSSGLKPPSKIARPSAVPTRTSPSSGASKPVPPEKSLSGVTSPTQDVHT
DFKIGDRVWVNGSKPGYVQFVGGTQFAPGQWAGIVLDESIGKNDGSVAGVRYFQCENGRG
IFTRSSKLSRTPLPEKEANGGQASPVQAAHATSKATPAVAAPSAPVTGVKASGVLNRTVN
STESVSNLSDPDSLKKIRQELRLGDRVLVGGTKAGVVRFLGETDFAKGEWCGVELDEPLG
KNDGAVAGTRYFQCLSRYGLFAPVHKVTRIGFPCTTPTKAKNSLRTSTFKRSPSASSVSS
LSSATSSISGKPSRAGLLTETSVRYARKISSTTALQEALKEKQQHIEQLLAERDLERCEV
AKATSRAGEVVQELAMLRKGRDQYALEMEAKLDQLRSMVEAADRDKVELLNQLEEEKRKV
EDLQFRVEEACITKGDLETQTRLEHAHIKELEQSLLFEKTKAEKLQRDLEDTRVATVSER
SRIMELEREVADFKLRLRASQQKEDAVSLSQLQVGSLNTQVKCQEKQISELSVDLERKQK
ELQSALQDRTSLQQQLSSLRCKLEVAEEENRAIAKTMKELENTVEQSKKDFQTQSREMEL
KSQLTKTTEKLDRTNVSLVQMTIEKKALESQLDTLKHQNSKYQEELSLSKERSGAESLRI
GILCKEIKELKLASQKSQRLDERNVDRNGQQPDMKTREALSNQDKKGDAALQKSTGALIS
DKDRELETLRSEIAMLRGENAMAKTLQSAVETLEKDKAQLQSRVCTLEQRLMGSQTSDSE
GKEAPPSGDPVLQQLREEKEFAEGQINFLNSVIVDLQRKNEELKIKLKKLVLSEFNGNDG
TDGFEEAVPKRKKKSAPRLFCDICDCFDLHDTEDCPTQAQSPDSVPHTAYHGNPADERPY
CDICEVFGHATESCNDDQTF
NT seq
2763 nt
NT seq
+upstream
nt +downstream
nt
atggacaaacagggccccgtcactacaccaggcaaatcaagtgggctaaagcctcccagt
aaaatagcccgtccatctgcagtaccaactaggacctcaccgtcatctggagcttcaaag
ccagttcctcctgaaaagtccttgtcaggtgtgacctccccaacacaagatgtccacacg
gactttaagattggcgacagggtctgggtgaacggcagcaagcccggctacgttcagttt
gtcggaggcacgcagtttgctcccggacagtgggcgggcatcgtcctggacgagtcaatc
ggaaagaacgacgggtcggtagcgggcgtgcgctacttccagtgtgagaatgggcggggc
attttcacacgatcttccaagctatccaggacgccgctgccggagaaggaggccaacgga
gggcaggccagcccggtacaagcagcccacgcaacaagcaaggctacaccggctgtcgct
gcccctagtgctccagtcaccggtgtaaaggccagtggtgtcctgaaccgtacggttaat
tccaccgagtctgtgtccaacctgtctgaccccgactccctgaagaagatcagacaggag
ctgaggctgggagaccgcgttttggttggtggaacaaaggcgggagtggtgcggtttcta
ggagaaacagacttcgcgaagggagagtggtgtggcgtggagctggacgaacctctgggc
aagaatgacggagctgtagctgggaccaggtattttcagtgcttgtccaggtatggcctg
tttgcgcccgtccataaggtgacacggattggcttcccctgcaccacacccaccaaggcg
aagaactccctcaggacttccactttcaagaggagtccgagcgcgtcctccgtcagctcc
ctcagctcggcaacctcctccatcagcggcaaacccagccgggcgggactgctgacagaa
acatctgtgcggtacgctcgcaagatttcgagcaccacggcgctgcaggaggccctgaag
gagaagcagcagcacattgaacagctgctggcagagagggacctggagaggtgcgaggtc
gccaaggcaaccagccgcgccggagaggtggtgcaggagctggctatgctgaggaaaggg
cgggatcagtacgcactggagatggaggccaagctggatcagttgcgttctatggtggag
gccgctgatcgagacaaggtggagctactcaaccaactagaggaggagaagaggaaagtg
gaggacctgcagtttcgtgtagaggaggcatgcatcaccaaaggagacctcgagacgcag
accaggctggagcatgcccacataaaggagcttgagcagagcctgctctttgaaaagacc
aaagctgaaaaactccagagggatttagaggacactagggttgccacggtgtctgagcgc
tccaggatcatggagctggagagggaggtggcggacttcaagctcagactgcgggcgtcc
cagcagaaggaggatgccgtgtctctgtcgcagctgcaggttggcagtctcaacacccag
gttaagtgccaggagaagcagatcagtgagctgagcgtcgacctggagcgcaaacagaag
gagcttcagtctgcgctgcaagacaggacgtctttacagcagcagctgtccagtctgaga
tgcaagctggaggttgctgaggaggagaacagggccatagcaaagaccatgaaagagctg
gagaacaccgtggagcagtcaaagaaggacttccaaacccagagcagagaaatggagctg
aagtcccagctgacaaagactacggagaagctggacagaacgaacgtgtccttagtgcag
atgactatagagaagaaagctctggagtcgcagctcgacactttgaaacatcagaactcc
aaataccaggaggagctgagcctgtcgaaggagcgcagcggcgccgagagcctgcggatc
ggcatcctctgcaaggaaatcaaggagctgaagctggcctcccagaagtctcagcgcctg
gacgagcgcaatgtggaccgcaacggtcaacagccagacatgaagaccagagaagctctt
tcaaatcaagacaagaagggagatgcggctcttcagaaatccacgggagctttaatctca
gacaaagacagagaactggaaactctgaggagcgagattgccatgctgcgcggagagaac
gccatggccaagacgctgcagtcggctgtggagacgttggagaaggacaaagctcagctg
cagagtcgagtttgcactctagaacaaaggctgatgggaagccaaacctcagactctgag
ggcaaggaggctcccccatcaggcgatcctgtcctgcagcagctgagagaagagaaagag
ttcgctgagggacagatcaacttcctgaacagcgtgatcgtggacctgcagaggaagaac
gaggagctgaagatcaagttgaagaagctggtcttgtcggagttcaacggaaacgacggc
acagacgggttcgaggaagcggtaccaaagcgtaaaaagaagtcggctcctcgactgttc
tgcgacatctgcgactgcttcgacctccacgacacggaggactgccccacgcaggcgcag
agccccgactccgtacctcacaccgcctaccacggcaacccggccgacgagcggccctac
tgcgacatctgcgaggtcttcggccacgccaccgagtcgtgtaacgacgaccagactttc
tga
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