KEGG   Ailuropoda melanoleuca (giant panda): 100475917Help
Entry
100475917         CDS       T01329                                 

Gene name
THBS3
Definition
thrombospondin 3
Orthology
K04659  
thrombospondin 2/3/4/5
Organism
aml  Ailuropoda melanoleuca (giant panda)
Pathway
Phagosome
PI3K-Akt signaling pathway
Focal adhesion
ECM-receptor interaction
Malaria
Brite
KEGG Orthology (KO) [BR:aml00001]
 Environmental Information Processing
  Signal transduction
   04151 PI3K-Akt signaling pathway
    100475917 (THBS3)
  Signaling molecules and interaction
   04512 ECM-receptor interaction
    100475917 (THBS3)
 Cellular Processes
  Transport and catabolism
   04145 Phagosome
    100475917 (THBS3)
  Cell communication
   04510 Focal adhesion
    100475917 (THBS3)
 Human Diseases
  Infectious diseases
   05144 Malaria
    100475917 (THBS3)
Exosome [BR:aml04147]
 Exosomal proteins
  Exosomal proteins of other body fluids (saliva and urine)
   100475917 (THBS3)
  Exosomal proteins of colorectal cancer cells
   100475917 (THBS3)
  Exosomal proteins of bladder cancer cells
   100475917 (THBS3)
Heparan sulfate/heparin binding proteins [BR:aml00536]
 Extracellular matrix molecules (General comment) Storage depot, cell adhesion and motility, ECM/barrier formation
  100475917 (THBS3)
BRITE hierarchy
SSDB OrthologParalogGFIT
Motif Motif
Other DBs
NCBI-GI: 
NCBI-GeneID: 
Position
Un
AA seq 956 aa AA seqDB search
METQELRGALALLLLCTFASASQDLQVIDLLTVGESRQMTAVAEKIRAALLTAGDIYLLS
TFRLPPKQGGVLFGLYSRQDNTRWLEASVVGKINKVLVRYQREDGRVHAVNLQQAGLADG
RTHTALLRLRGPARPSPALQLYVDCKLGDQHAGLPALAPIPPAEVDGLEIRTGQKAYLRM
QGFVESMKMILGGSMARVGALSECPFQGDESIHNAVTNALHSILGEQTKALVTQLTLFNQ
ILVELRDDIRDQVKEMSLIRNTIMECQVCGFHEQRSHCSPNPCFRGVDCMEVYEYPGYRC
GPCPPGLQGNGTHCTDINECAHADPCFPGASCVNTMPGFHCEACPRGYKGTRVSGVGIDY
ARASKQVCNDVDECNDGNNGGCDPNSICTNTVGSFKCGPCRLGFLGNQSQGCLPARTCHS
PAHSPCHVHAHCLFERNGAVSCSCNVGWAGNGNVCGTDTDIDGYPDQALPCMDNNKHCKQ
DNCLLTPNSGQEDADNDGVGDQCDDDADGDGIKNVEDNCRLFPNKDQQNSDTDSFGDACD
NCPNVPNNDQKDTDGNGEGDACDNDVDGDGIPNGLDNCPKVPNPLQTDRDEDGVGDACDS
CPEMSNPTQTDADSDLVGDVCDTNEDSDGDGHQDTKDNCPQLPNSSQLDSDNDGLGDECD
GDDDNDGVPDYVPPGPDNCRLVPNPNQKDSDGNGVGDVCEDDFDNDAVLDPLDVCPESAE
VTLTDFRAYQTVVLDPEGDAQIDPNWVVLNQGMEIVQTMNSDPGLAVGYTAFNGVDFEGT
FHVNTVTDDDYAGFLFSYQDSGRFYVVMWKQTEQTYWQATPFRAVAQPGLQLKAVTSVSG
PGEHLRNALWHTGHTPDQVRLLWTDPRNVGWRDKTSYRWQLLHRPQVGYIRVKLYEGPQL
VADSGVVIDTAMRGGRLGVFCFSQENIIWSNLQYRCNDTVPEDFEPFRRQLLQGRL
NT seq 2871 nt NT seq  +upstreamnt  +downstreamnt
atggagacgcaggaacttcggggggccctggctcttctcctcctttgcactttcgcatct
gccagtcaggacctgcaggtgattgacctgctgaccgtgggcgagtctcggcagatgaca
gctgtagcagagaagatccgggcagccctgctcactgcgggagacatctacctcttgtcc
accttccgcctgcccccgaagcagggtggtgtcctctttggcctctactctcgccaggac
aacacacgatggctggaggcctcagttgtgggcaaaattaacaaagtgctggtgcggtac
cagcgagaagacggcagagtccatgcagtgaacctacagcaagcaggcctggcagacggg
cgcacacacacggctctcctgcggcttcgcggtcctgcccgacccagccctgccctgcag
ctctacgtggactgcaaactgggagaccagcatgctggcctcccagcactggcccccatt
cctccagcagaggtcgacgggctggagattcggactggacagaaggcatatttgaggatg
cagggcttcgtggaatctatgaaaatgattctgggcgggtccatggcccgggtgggagcc
ctgagtgagtgtccattccagggggacgagtccatccacaacgcagtgaccaacgcgctc
cactccattctcggtgagcagaccaaggcgctggtcacgcagctcacccttttcaaccag
atcctggtggagctgcgcgatgatatccgagaccaggtgaaggaaatgtctctaatccga
aacaccatcatggagtgtcaggtgtgcggcttccacgagcagcgttcccactgcagcccc
aacccctgcttccgaggcgtggactgcatggaagtgtacgagtaccccggctaccgctgc
gggccctgcccccccggcctgcaaggcaacggcacccactgcactgacatcaatgagtgt
gctcacgctgacccttgcttccccggggccagctgcgtcaacaccatgcccggcttccac
tgtgaggcctgtcctcgaggatacaaaggcactcgggtgtccggtgtgggcattgactat
gcccgcgccagcaaacaggtctgcaacgacgtggacgagtgcaatgatgggaacaacggc
ggctgtgacccgaactccatctgcaccaatactgtgggctctttcaagtgtggcccctgt
cgcctgggcttcctaggaaaccagagtcagggctgcctcccagcccgcacctgccacagc
ccagctcacagcccctgccatgtccacgcgcactgtctctttgaacgcaacggggcagtg
tcctgctcgtgtaacgtgggctgggccgggaatgggaatgtgtgtgggactgacacagac
atcgatggctacccagaccaggccctgccatgcatggacaacaacaagcattgcaaacag
gacaattgccttttgacacccaattctgggcaggaagatgctgataacgacggagtgggg
gaccagtgtgatgatgatgctgatggcgatgggatcaagaatgtcgaggacaactgtcgg
ctgttccccaacaaggaccagcaaaactctgacacagattcatttggggatgcctgtgac
aactgccctaacgttcccaacaatgaccagaaggacacagacggcaacggggaaggggac
gcgtgtgacaacgatgtggatggggacggcatccccaatggattggacaattgccctaaa
gtccccaatcccctgcagacagacagggatgaggacggggtgggagacgcctgtgacagc
tgccctgaaatgagcaatcctacccagacagatgcagacagcgacctggtgggggatgtc
tgtgacaccaatgaggacagcgatggggatggacatcaggacaccaaggacaactgccca
cagctgccgaatagctcccagctggactcagacaacgatgggcttggagatgagtgtgat
ggggacgatgacaacgacggggtcccagactacgtgcctcccgggcctgataactgtcgc
ctggtacccaatcccaatcagaaggactcagacggcaatggtgttggtgacgtgtgtgag
gatgactttgacaatgacgcggtgctcgaccccctggatgtgtgccccgagagcgcggag
gtgaccctcacggatttccgggcctatcagactgtcgtcttggaccctgagggcgatgct
cagattgatccaaactgggtcgtgctcaaccagggcatggaaatcgttcagaccatgaac
agtgaccccggcctggcagttggatatacagccttcaacggcgtggactttgaaggcacc
ttccatgtgaacacagtgaccgatgatgactacgcaggctttctgttcagctatcaggat
agtggccgtttctacgtggtcatgtggaagcagaccgagcagacctactggcaggccaca
cccttccgagctgttgctcagcccgggctacagctcaaggcagttacgtcagtgtctggc
ccaggagagcacctccggaacgccctgtggcatactggccacacccctgatcaggtacga
ctgctatggactgacccacgaaacgtgggctggcgcgacaagacctcctaccgctggcag
ctgctgcaccggcctcaagttggctacattcgggtgaagctctatgagggtcctcagcta
gtggcggattctggggtggtcattgacacagccatgcgaggagggcgtcttggtgtcttc
tgcttctcccaggaaaacatcatttggtccaatctccaatatcgatgcaacgacacagtg
cccgaggactttgagccattccggaggcagctgctccagggaagactgtga

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