Mycetomoellerius zeteki: 108724566
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Entry
108724566 CDS
T11078
Symbol
Mp
Name
(RefSeq) collagen alpha-1(XVIII) chain
KO
K06823
collagen type XVIII alpha
Organism
mzt Mycetomoellerius zeteki
Brite
KEGG Orthology (KO) [BR:
mzt00001
]
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:
mzt04147
]
108724566 (Mp)
00535 Proteoglycans [BR:
mzt00535
]
108724566 (Mp)
00536 Glycosaminoglycan binding proteins [BR:
mzt00536
]
108724566 (Mp)
Exosome [BR:
mzt04147
]
Exosomal proteins
Exosomal proteins of other body fluids (saliva and urine)
108724566 (Mp)
Proteoglycans [BR:
mzt00535
]
Extracellular matrix (ECM) proteoglycans
Basement membrane proteoglycans
108724566 (Mp)
Glycosaminoglycan binding proteins [BR:
mzt00536
]
Heparan sulfate / Heparin
Extracellular matrix molecules
108724566 (Mp)
BRITE hierarchy
SSDB
Ortholog
Paralog
GFIT
Motif
Pfam:
Endostatin
Collagen
Collagen_trimer
DUF1554
Motif
Other DBs
NCBI-GeneID:
108724566
NCBI-ProteinID:
XP_018306503
LinkDB
All DBs
Position
Unknown
AA seq
952 aa
AA seq
DB search
MAMVISPRSKIVTLSLLIGIITLVALIITGVIGIWSGKSEKTNGTGTKMVSSKLQQITGY
AAMQHFSADEEIVSGDYDVSLIDGSGDAEYLNKIGRDADEDKSEESNPPPFITPPPPNPD
YKGPKGEKGDKGDKGESVRGPPGPPGPPGRDEDWLMKIPQGPPGQKGDPGTCTCNATALM
SSFTMPKMIQGPKGEPGVPGQEGKQGLMGLTGAAGPPGERGLHGPSGAKGDKGDIGIAGP
EGSQGQKGEPGRDGIPGEKGAQGPPGPPGKGEFSGYDPEGITMRPGLPGQKGEPGISGNP
GPKGEAGIPGSKGIKGEPGYKGVKGDHGKDGPRGIQGFKGEPGAPGAPGLPGAPGENGRP
AEKGDKGDTGPEGKLGPPGPPGPPGVGGSGGINVGDLGFGTKGDKGDSGARGYKGDKGTK
GEKGNKGDAGPAGIPGINGIQGPQGDKGEPGKDGVSGLPGIPGAKGERGERGPPGATTVA
NSGDYITIKGEKGAEGKRGRRGRPGPPGPVGPPGKPGNMGEIGLPGWMGRSGTPGIPGSI
GPMGPKGEKGEPGAPSPYGVSVGIKGDKGDDGFPGIPGQPGREGQRGPPGPPGPPGIPSK
GNYYPVPGPPGPPGPPGPPGLSLIGQKGEPGIGRSHVFGERDYYPPRQGARSSLDELKAL
RELKQLKELKEQLGVVTAATRGPLESTTKIVPGAVTFQNTEAMTKMSSVSPVGTLAYIID
EQALLVRVNNGWQYIALGSLLPITTPAPPTTSPPPANPPFEASNLINQIPVKADGTGLRM
AALNEPFTGDMHGIRGADYACYRQARRAGLRGTFRAFLSSRVQNVDSIVRLGDRDLPIVN
IKGDVLFNSWKEMFNGNGAYFSQNPRIYSFNGKNILTDFAWSEKVAWHGSHKLGDRAMDT
YCDAWHSSSSDRYGLGSPLTGGRLLEQVRYSCDNKFALLCIEVTSELETEEI
NT seq
2859 nt
NT seq
+upstream
nt +downstream
nt
atggcgatggtaatatcgccccgtagcaaaatcgtgacactgtctttgctgattggtatc
atcaccctagtggcacttattataacgggcgtaatcggcatctggagcgggaagagcgag
aagacaaacggcacggggacgaagatggtcagcagcaaactccagcaaatcaccgggtat
gccgcgatgcaacacttttcagcagatgaagaaatcgtttctggtgattacgatgtcagt
ttaatcgacggttccggcgatgctgaatacttaaataagatcggtcgagatgcggacgaa
gacaaaagcgaggagagtaacccaccgccattcatcacgcccccgcctccgaatccagat
tataaaggtccgaaaggtgaaaagggtgacaaaggggacaagggcgagagtgtcagaggt
cctccagggcctcctggtccgcctggtcgcgacgaggattggctaatgaagataccacag
ggaccacctggtcagaagggagaccccggcacttgcacctgcaacgccacggccttaatg
tcttcctttacgatgccaaagatgatacaagggccgaagggcgagccaggagtacccgga
caagagggcaaacagggcttaatgggtctcacgggtgcggcaggaccgccaggagaaaga
ggactgcatggtccgtccggggctaaaggtgacaagggtgatattggaatagcgggaccg
gaaggttctcaaggtcaaaagggcgaaccgggtcgagatggaatacccggtgaaaagggt
gcgcaaggtccgccggggccgcctggaaaaggagaattttctggctatgacccggaaggt
atcacaatgagaccaggacttcccggacaaaagggtgagccaggcatttcaggaaatccc
ggtcctaaaggcgaagctggaatacctggatccaaaggcatcaaaggcgaacctggatac
aaaggtgttaagggcgatcatggaaaagatggtcccagaggaattcagggtttcaaaggt
gaacctggcgcacccggtgcacctggattacccggcgcacctggagaaaatgggcgaccg
gcagaaaaaggtgataagggcgatacagggcctgaaggaaaattgggacctccaggacca
cccggtccacccggtgtgggcggttccggtggtataaatgtgggagatctaggatttggc
acaaaaggggataagggcgatagtggagcgcggggatacaagggcgataagggcacaaag
ggcgaaaagggcaataagggtgacgccgggccagctggtattcccggaataaatggtatt
caagggcctcaaggagataaaggcgaaccgggtaaagacggagtatcaggattacccggt
atacctggcgctaaaggcgaaagaggtgaaagaggtcctcctggagccactaccgtcgcc
aattccggagactatatcaccatcaaaggtgagaaaggcgccgaaggaaaacggggtaga
agaggacgacctggaccgcctggtcctgtgggtcctcccggaaagccaggaaatatggga
gaaatcggtctaccaggatggatgggtcgttctgggactcctggaattccgggaagtatc
ggaccaatgggacccaagggagaaaaaggggaacctggcgcaccgagtccttacggtgtt
tctgtcggtatcaaaggcgacaaaggagacgacggttttcccggaattcctggacagccg
ggaagagagggccaaagaggacctccaggacctcccggacctcctggaataccatctaaa
ggaaactattatccagttccaggacctccgggtcctcccggacctcctggtccgcccggt
ttgtctttaatcggacagaaaggagaacccggaatcggtagaagtcacgttttcggagaa
agagattattacccccctaggcaaggagccagaagtagtctagacgaattgaaagctcta
cgtgaactcaagcaactgaaagaactgaaagagcaattaggtgttgttactgccgctaca
aggggacctttagaaagtacaacgaaaattgtgccaggagctgttacgttccaaaataca
gaagccatgacaaaaatgtctagtgttagtccagttgggaccctggcttacatcatagac
gaacaagctttactagtcagagttaataatggatggcaatacattgcacttggatcactt
ttgcctatcacaacgccagcaccaccaacgacatcaccaccgccagcaaaccctcctttt
gaagcatccaacttaattaaccagatacccgtgaaagccgacggaacaggattgaggatg
gctgcgttgaatgagccgttcactggagatatgcacggtatacgaggagcagactacgct
tgttatcgacaagcaaggcgagcaggcttgagaggtaccttccgcgcttttctcagctct
cgagttcaaaatgtcgatagcattgtcagattaggagatcgagatcttcctatagttaac
ataaagggcgacgtgctattcaactcttggaaagaaatgttcaatggaaatggggcgtac
ttctctcagaatcccagaatctacagcttcaatggaaagaatatccttactgacttcgcg
tggtccgagaaagttgcgtggcacggttctcacaaacttggtgaccgagccatggacact
tactgcgatgcctggcactcgagcagctcggatcgttatggactaggctcgccgttgacc
ggcggtcgactgttagaacaagtacgatattcgtgcgacaataaattcgcgctgctctgc
atcgaggtgacgagcgagctggaaacagaagaaatctaa
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