KEGG   Macrosteles quadrilineatus (aster leafhopper): 129002800
Entry
129002800         CDS       T09739                                 
Name
(RefSeq) collagen alpha-1(XVIII) chain-like isoform X1
  KO
K06823  collagen type XVIII alpha
Organism
mqu  Macrosteles quadrilineatus (aster leafhopper)
Brite
KEGG Orthology (KO) [BR:mqu00001]
 09180 Brite Hierarchies
  09183 Protein families: signaling and cellular processes
   04147 Exosome [BR:mqu04147]
    129002800
   00535 Proteoglycans [BR:mqu00535]
    129002800
   00536 Glycosaminoglycan binding proteins [BR:mqu00536]
    129002800
Exosome [BR:mqu04147]
 Exosomal proteins
  Exosomal proteins of other body fluids (saliva and urine)
   129002800
Proteoglycans [BR:mqu00535]
 Extracellular matrix (ECM) proteoglycans
  Basement membrane proteoglycans
   129002800
Glycosaminoglycan binding proteins [BR:mqu00536]
 Heparan sulfate / Heparin
  Extracellular matrix molecules
   129002800
SSDB
Motif
Pfam: Endostatin Collagen Collagen_trimer DUF1554
Other DBs
NCBI-GeneID: 129002800
NCBI-ProteinID: XP_054286836
LinkDB
Position
Unknown
AA seq 1152 aa
MTMINIRSEVVVPVVIICCTCIVGVSCASRGQDVDMTEKDLLQAIKIPFDDPTTVFFDYG
LEGFPAMGLRPGSDIKSPYRLYLPERFYPEFSITATAKLSNREGGFLFAVVNPLDTVVEL
GVHLGAAGIGMSNLSLLYTDVNTHYASQTIASFLLPSSFTRWSRFALRVTAEEVTVYYNC
ERYDSIPVKREPQELVFDSASTLYVGQAGPIIKGALDGSIQELKIYGSPGLAELQCENTF
KIDQEGGDAYGEGEEESTGRIDSYPPVLPLPDSSDYSPGRSFKGEKGERGPRGPPGESIR
GPPGPPGPPGPPFSGGGRLSYGTDFSGSGDDGQSYGSQIFGIGDDLTGPPGPPGICSCNL
TEMLNTFSHPDIIPGPPGIPGIDGKQGPPGVPGISGRTGERGAPGPVGEKGDRGDVGPRG
PEGLQGPKGDPGLPGFPGTPGTPGPPGPPGPSEFSNLDPSWKPRSMFKETLMGAGFDSSV
GRPGTPGPKGEPGVDGAPGLKGDRGFPGDKGERGEGGQKGQKGERGHQGPTGVQGFKGEP
GTPGTEGRQGMPGENGRPASKGEKGDSGTPGPPGPPGPPGVVPAGFDLELTGSGLGSAAE
FGMKGEPGPKGEKGEAGDKGDRGELGPSGPSGIPGSVGSPGPAGEKGEPGSQGLTGPLGP
VGSKGEKGERGPPGTAMSGEEGEFITVKGEKGERGKRGRRGKPGPPGPMGPSGKPGPIGE
MGIPGFTGLPGRPGLPGERMIGPKGDKGEPGQVLDVIKGEKGDPGIDGKAGPPGPPGMPA
PGTNTQYLPLPGPPGPPGPPGPPGMPGIGTKGEPGPPGPPAGRHVYGEAVHHPRQGHRGS
LDELKALNNLHGAREKFESSYKTTEAGKDETVRIVPGAVTFKTLQDMATTSLMSPVGTLA
YVIDEETLLVRVNNGWQYLLLGQLVPISQEPDVAPPPSVPVEHPRPPPEASNLVYHNLPM
DSPDISVPEPRVLRLAALNEPWSGALGGQRGADYACYRQARRAGLGGTFRAFLTSRVQDL
ESIVRASDRGLPVVNIKGDVLFDSWKEIFSGDGGYFSQPPRIYAFNGKNIITDINWPQKY
FWHGSRPSGERVPESSCGVWETDDQGKSGLATSLLSERLLGQESLSCSHRFAVLCIEVAS
SSKRRRRSSADE
NT seq 3459 nt   +upstreamnt  +downstreamnt
atgacaatgattaacataaggagtgaagtggtggttcctgtagtgattatctgttgtacc
tgcatagttggtgtgtcgtgtgcttcaagaggccaggatgtggacatgacagaaaaagac
cttctacaggcgatcaagatccccttcgatgatccgaccacggtgttctttgactacggc
ctggaggggttcccggctatgggtcttcgccctggatcagacataaagtcgccctacaga
ctctaccttccagagaggttctacccggagttctcgatcacagcaacggccaagctgtcc
aaccgggagggagggttcctgtttgcagtcgtcaaccctttggatacggtggtcgagctg
ggggtccacctaggagcagcagggataggcatgtcaaacctcagtcttctgtacacggat
gtcaacactcactacgcctcccagaccatcgcctccttcctgctaccctcctcgttcacc
cggtggtccaggttcgccctgagagtcactgctgaggaggtcactgtctactacaactgc
gagaggtacgacagcatccccgtcaaacgagagccccaggagttggtgttcgacagcgcc
tccaccctgtatgtcggtcaggcggggccgatcatcaaaggagctttggacggatccata
caagaactgaaaatctacggatcaccaggcctggcggagctgcagtgtgaaaacacattc
aagatagaccaagaaggaggagacgcgtatggcgaaggagaagaagagagtacgggtaga
atagactcataccctcctgtactacccctaccagatagctcagactacagtcctggaagg
agttttaaaggggagaaaggagaacgaggaccacggggacccccaggagaatcgatacga
gggccccccggccctccaggcccaccaggccccccattttctgggggaggtcgactttcc
tacggaacagacttcagtggctcgggagatgacgggcaatcgtatggatcacagatattc
ggtatcggagatgatctgacgggtccccctggacctcctgggatatgttcctgtaacctg
acagagatgttgaacaccttcagtcatccagacatcatcccaggacctccgggcatccca
gggatagatggcaagcagggtccacctggggttccgggcatctctggaagaacaggagag
aggggagctccaggtcctgttggagagaagggagacagaggagacgtggggccgagaggt
cctgagggactacaggggcctaagggagaccctggattacccggatttcctggaacgccc
gggacgccaggcccaccgggtccaccaggtccttcagagttttccaatctggatcctagc
tggaagccgagatctatgttcaaggaaactctgatgggtgctggcttcgattcgtccgtt
ggtcgacctggaacacctggaccaaaaggggaaccgggagtggacggggctccaggactg
aagggtgacagggggttcccgggggataagggagaaagaggagagggaggacaaaaggga
caaaaaggagagcgaggacatcagggacctacaggggtacagggcttcaagggagaacca
ggcactccgggtacagaggggaggcaagggatgcctggcgaaaacggtcgtcctgccagc
aaaggagaaaaaggtgattcaggcaccccaggacccccaggtccccccggtccgccagga
gttgttcctgcaggatttgatctggaactgacaggatctggcctgggatctgctgcagaa
ttcggtatgaaaggggagccaggaccaaaaggagagaagggtgaggctggtgataaggga
gacagaggagagctgggcccgagtggtccatctggaatacctggatctgttggatctccg
ggtccggcaggtgagaaaggtgaaccaggatctcaaggactcacaggtcctcttggacct
gtgggatccaaaggggagaaaggagagcgaggacctccaggtacagcgatgtcaggagag
gagggagagtttatcacagtcaagggagaaaaaggggaaagaggcaaaaggggaagaaga
gggaaaccaggacctccagggccgatgggtccttcgggaaaaccaggtcctattggggag
atgggtattcctgggtttacggggctccctggtagaccaggattgccaggagaaagaatg
ataggccctaaaggagataaaggtgaacctggacaagtattagacgtgataaaaggtgag
aaaggagaccctggcatagatgggaaggcgggacccccaggccctcctggaatgccggcc
cccgggacaaacacgcaatacctccctctaccaggcccacccgggcccccaggaccccct
ggacctcctgggatgccggggattggcacgaagggagagcctggacccccaggtcctcct
gcaggcagacatgtgtacggagaagcggtccatcatcctagacaaggacaccgtggaagt
ttagacgaactcaaggctcttaacaatctccacggcgcgagagaaaagtttgaaagttcc
tacaaaacgacggaggcaggaaaggacgaaactgtaaggatagtgcctggagcagtcacc
ttcaaaacattacaggacatggccacgacctcactaatgtcaccagtgggaacgctagca
tatgttatagatgaagaaactctcctggtgagggtgaataacggctggcagtatcttttg
ctaggacagctggtgcctatcagtcaggagcctgacgttgcgcctccaccctccgtcccc
gtggaacatcccagacctccccctgaggcgtccaacctcgtataccacaacctgcctatg
gacagccctgacatcagtgtgcccgagcctagagtgctgcgtctagctgccctcaacgag
ccctggtccggcgccttgggcggacagcgaggcgcagactacgcctgttacagacaggcg
cggagggcggggttgggcggaaccttcagggcgttcctgacgtccagggtgcaggacctg
gagtctatagtccgtgcctccgacaggggcctgccagtcgtcaacatcaagggagatgtt
cttttcgactcgtggaaggagattttctcaggagatggcggatacttttcccagcctcct
agaatatacgccttcaatggcaaaaatattattacggatataaattggccccagaagtac
ttctggcacgggtcgcgcccctccggcgagagagtaccggagtcttcctgcggtgtttgg
gagaccgacgaccaaggcaagtctggactagcgacatcgctgctatcagagagactgcta
ggccaggagtcgctatcgtgtagtcacaggttcgccgtgctgtgtatagaggtcgcaagc
agctccaagcgacgacgccgttctagtgcggacgaataa

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