Entry |
|
Name |
(RefSeq) conserved hypothetical protein
|
KO |
K18584 | actin-related protein 3 |
|
Organism |
ssl Sclerotinia sclerotiorum
|
Pathway |
ssl05100 | Bacterial invasion of epithelial cells |
|
Brite |
KEGG Orthology (KO) [BR:ssl00001]
09140 Cellular Processes
09141 Transport and catabolism
04144 Endocytosis
SS1G_13423
04138 Autophagy - yeast
SS1G_13423
09160 Human Diseases
09171 Infectious disease: bacterial
05100 Bacterial invasion of epithelial cells
SS1G_13423
09180 Brite Hierarchies
09182 Protein families: genetic information processing
04131 Membrane trafficking [BR:ssl04131]
SS1G_13423
09183 Protein families: signaling and cellular processes
04812 Cytoskeleton proteins [BR:ssl04812]
SS1G_13423
04147 Exosome [BR:ssl04147]
SS1G_13423
Membrane trafficking [BR:ssl04131]
Others
Actin-binding proteins
Arp2/3 complex
SS1G_13423
Cytoskeleton proteins [BR:ssl04812]
Eukaryotic cytoskeleton proteins
Actin filaments / Microfilaments
Actin-binding proteins
Arp2/3 complex
SS1G_13423
Exosome [BR:ssl04147]
Exosomal proteins
Exosomal proteins of haemopoietic cells (B-cell, T-cell, DC-cell, reticulocyte, and mast cell)
SS1G_13423
Exosomal proteins of other body fluids (saliva and urine)
SS1G_13423
Exosomal proteins of bladder cancer cells
SS1G_13423
|
SSDB |
|
Motif |
|
Other DBs |
|
LinkDB |
|
Position |
Unknown
|
AA seq |
396 aa
MASHTPAVVMDNGTGYSKLGFAGNDSPSFVFPTAIATKGAAAAGAGSGSGRPAVGNKPSY
LTGGAGPGGHLSMKRGTEDLDFFIGDEALAAASGPGPYGKILPLNPPENRENTAEIMFES
FNCAGLYIAVQAVLALAASWTSSKVSDRSLTGTVIDSGDGVTHVIPVAEGYVIGSSIKSI
PIAGRDITYFVQSLLRDRGEPDSSLKTAGEIKENYCYVCPDIVKEFARFDRDPGRFEKHT
VTQPGGRKVTVDVGYERFLAPEIFFNPEIYSSDFLTPLPTVVDGVIQSSPIDVRRGLYKN
IVLSGGSTLYKDFGRRLQRDIKHLVDDRIRASEARSGGARSGGLEVQVISHKRQRHGPWF
GGSLLGQTPEFRSYCHTKAGPSIVRRFALLGGPGGS |
NT seq |
1191 nt +upstreamnt +downstreamnt
atggcttctcatactccggccgttgtcatggacaacggtaccggatactccaagcttggt
tttgctggcaatgattctccatccttcgttttccctaccgccatagcgacaaaaggtgcc
gcagcagcaggtgcgggttcaggatctggccgccctgcagttggcaacaaaccttcgtat
cttacgggtggtgctgggccaggaggacatctctcaatgaaacgtggaactgaagacctg
gacttctttatcggagacgaggcattagcagccgcaagtggaccaggaccatatggaaag
attctgccactcaatccacccgagaaccgtgaaaataccgccgaaattatgttcgaatcc
ttcaactgtgccggtctttacattgccgtccaagctgtgctcgcattggctgcgtcgtgg
acttcatcaaaagtttctgatcgatccttaaccggaactgtaatcgattctggagacggt
gtgacccacgtaattcccgttgcagagggttatgttattggatcatcaatcaaatctata
cctatcgccggtcgagacattacatacttcgttcaatcgttactccgagacagaggtgaa
ccggactcttccttgaagactgctggtgagattaaagagaactactgttatgtctgccca
gatattgtgaaggaatttgctcgtttcgatcgcgatcctggaagatttgagaagcataca
gtgacgcaaccaggtggacgcaaagtcaccgttgatgttggttacgaacgtttccttgca
cctgaaatcttcttcaacccagaaatttactcgtccgatttcttgactccacttccaacg
gttgtggatggcgttatccaatcttcccctatcgatgttcgtcgtggactctataagaat
attgtgttatctggaggaagtacattatacaaagatttcggtcgcagattacaacgtgat
atcaaacacttggtggatgacagaattagagccagtgaagctcgaagcggtggtgccaga
agtggaggtttggaggttcaagtcatttcgcataagagacagcgacacggtccatggttc
ggtggtagtcttttgggtcaaacccctgaatttagatcttattgtcacaccaaagcaggt
ccaagcattgttagaagattcgccttgttgggaggaccaggaggatcataa |