KEGG   Poecilia latipinna (sailfin molly): 106954791
Entry
106954791         CDS       T08005                                 
Name
(RefSeq) CAP-Gly domain-containing linker protein 1-like isoform X1
  KO
K10421  CAP-Gly domain-containing linker protein 1
Organism
plai  Poecilia latipinna (sailfin molly)
Pathway
plai04150  mTOR signaling pathway
Brite
KEGG Orthology (KO) [BR:plai00001]
 09130 Environmental Information Processing
  09132 Signal transduction
   04150 mTOR signaling pathway
    106954791
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   03036 Chromosome and associated proteins [BR:plai03036]
    106954791
  09183 Protein families: signaling and cellular processes
   04812 Cytoskeleton proteins [BR:plai04812]
    106954791
Chromosome and associated proteins [BR:plai03036]
 Eukaryotic type
  Centrosome formation proteins
   Microtubules and associated factors
    Microtubule-associated proteins
     106954791
Cytoskeleton proteins [BR:plai04812]
 Eukaryotic cytoskeleton proteins
  Microtubules
   Tubulin-binding proteins
    Cytoplasmic linker proteins (CLIPs)
     106954791
SSDB
Motif
Pfam: CAP_GLY CLIP1_ZNF Cep57_CLD_2
Other DBs
NCBI-GeneID: 106954791
NCBI-ProteinID: XP_014900042
LinkDB
Position
Unknown
AA seq 917 aa
MDKQGPVTTPGKSSGLKPPSKIARPSAVPSRTSPSSGAPKPVPPEKSLSGVTSPTQDVHT
DFKIGDRVWVNGSKPGYVQFVGGTQFAPGLWAGIVLDESIGKNDGSVAGVRYFQCEDGRG
IFTRSSKLSRTPLPEKEANGGQASPVQAAHATSKAAPAVAAPSAPVTSVKASGVLNRTVN
STESVSNLSDPDSLQKIRQELRLGDRVLVGGTKAGVVRFLGETDFAKGEWCGVELDEPLG
KNDGAVAGNRYFQCLPRYGLFAPVHKVTRIGFPCTTPTKAKNSLRSSTFKRSPSASSVSS
LSSATSSISGKPSRAGLLTETSVRYARKISSTTALQEALKEKQQHIEQLLAERDLERCEV
AKATSRAGEVVQELTMLRKGRDQYALEMEAKLDQLRSMVEAADRDKVELLNQLEEEKRKV
EDLQFRVEEACITKGDLETQTRLEHAHIKELEQSLLFEKTKAEKLQRDLEDTRVATVSER
SRIMELEREVADFKLRLRASQQKEDAVSLSQQQVGSLNTQVKCQEKQISELSVDLERKQK
ELQSALQDRTSLQQQLSSLRCKLEIAEEENRAIAKTMKELENTMEQSKKDFQTQRREMEL
KSQLTKATEKLDRMNVSLVQMTIEKKALESQLDTLKQQNSKYQEELSLSKERSSAESLRI
GILCKEIKELKLASQKSQRLDERNVDHNGQQPDMKTRHTQEKNGDADLQKSTGALISDKD
RELETLRNEIAVLRRENAMAKTLQSAVETLEKDKAQLQSRVCALEQRLMGSQTSDSEGTE
APPSGNPVLQQLREEKEFAEGQINFLNSVIVDLQRKNEELKIKLKKLVLSEFNGNDGTDG
FEEAVPKRKKKSAPRLFCDICDCFDLHDTEDCPTQAQSPDSIPHTTYHGNPSEERPYCDI
CEVFGHNTESCNDDQTF
NT seq 2754 nt   +upstreamnt  +downstreamnt
atggacaaacagggccccgtcactacaccaggcaaatcaagtgggctaaagcctcccagt
aaaatagcccgtccatccgcagtaccatctaggacgtccccgtcatctggtgctccaaag
ccagttcctcctgaaaagtccttgtcaggtgtgacctccccaacacaagatgtgcacacg
gactttaagatcggcgacagggtctgggtgaacggcagcaagcccggctatgttcagttt
gtcggaggcacccagtttgctcctggactgtgggcgggcatcgtcctggacgagtccatc
gggaagaacgacgggtcggtagcaggcgtgcgctacttccagtgtgaggatgggcggggc
attttcacacgatcgtccaagctatccaggacgccgctgccggagaaggaggccaacgga
gggcaggccagcccggtacaagcagcccatgcaacaagcaaggctgcaccggctgtcgct
gcccctagtgctccagtcaccagtgtaaaggccagtggtgtcctgaaccgtacggttaat
tccaccgagtctgtgtccaacctgtcggaccccgactccctgcagaagatcagacaggag
ctgaggctaggagaccgcgttttggtcggtggaacaaaggcgggggtggtgcggtttcta
ggagaaacagactttgcgaagggagagtggtgtggcgtggagctggacgaacctctgggc
aagaatgacggagctgtagctgggaataggtattttcagtgcttgcccaggtacggcttg
tttgctcccgtccacaaagtgacacggattggcttcccctgcaccacgcccaccaaggcg
aagaactcactcaggagttccactttcaagagaagtccgagcgcgtcctccgtcagctcc
ctcagctcggcaacctcctccatcagcggcaaacccagccgggcgggactgctgacagaa
acatctgtgcggtacgctcggaagatttcgagcaccacggcgctgcaggaggcgctgaag
gagaagcagcagcacattgaacagctgctggcagagagggacctggagaggtgcgaggtc
gccaaggcaaccagccgcgccggagaggttgtgcaggagctgactatgctgaggaaaggg
cgggatcagtacgcactggagatggaggccaagctggatcagttgcgttctatggtggag
gccgctgatcgagacaaggtggagctactcaaccaactagaggaggagaagaggaaagtg
gaggacctgcagtttcgtgtagaggaggcatgcatcaccaaaggagaccttgagacgcag
accaggctggagcatgcccacataaaggagcttgagcagagcctgctctttgaaaagacc
aaagctgaaaaactccagagggatttagaggacactagggttgccacggtgtctgagcgc
tccaggatcatggagctggagagggaggtggcggacttcaagctcagactgcgggcgtcc
cagcagaaggaggacgccgtgtctctgtcgcagcagcaggttggcagtcttaacacccag
gttaagtgccaggagaagcagatcagtgagctgagcgttgacctggagcgcaaacagaag
gagcttcagtctgcactgcaagacaggacgtctttacagcagcagctgtccagtctgaga
tgcaagctggagattgctgaggaggagaacagggccatagcaaagaccatgaaagagctg
gagaataccatggagcagtcaaagaaggacttccaaacccagcgcagagagatggagctg
aagtcccagctgacaaaggcaacggagaagctggacagaatgaacgtgtccttagtgcag
atgactatagagaagaaagctctggagtcacagctcgacactttgaaacagcagaactcc
aaataccaggaggagctgagcctgtcgaaggagcgcagcagcgccgagagcctgcggatc
ggcatcctctgcaaggaaatcaaggagctgaagctggcctcccagaagtctcagcgtctg
gacgagcgcaatgtggaccacaacggtcaacagccagacatgaagaccagacatactcaa
gagaagaatggagatgcggatcttcagaaatccacgggagctttaatctcagacaaagac
agagaactggaaactctgaggaacgagattgccgtgctacgcagagagaacgctatggcc
aagacgctgcagtcggctgtggagacgctggagaaggacaaagctcagctgcagagtcga
gtttgcgctctagagcaaaggctgatgggaagccaaacctcagactccgagggcacagag
gctcccccatcaggcaatcctgtcctgcagcagctgagagaagagaaagagttcgctgag
ggacagatcaacttcctgaacagcgtgatcgtggacctgcagaggaagaacgaggagctg
aagatcaagttgaagaagctggtcttgtcagagttcaacggaaacgacggcacagacggg
tttgaggaagcggtaccaaagcgtaaaaagaagtcggctcctcgtcttttctgcgacatc
tgcgactgctttgacctccacgacacagaggactgtcccacgcaggcgcagagccccgac
tccatacctcacaccacctaccacggcaacccgtccgaagagcggccctactgcgacatc
tgcgaggtgttcggccacaacaccgagtcgtgtaacgacgaccagaccttctga

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