Entry |
|
Symbol |
C3
|
Name |
|
KO |
|
Organism |
sara Sorex araneus (European shrew)
|
Pathway |
sara04080 | Neuroactive ligand-receptor interaction |
sara04610 | Complement and coagulation cascades |
sara04613 | Neutrophil extracellular trap formation |
sara05167 | Kaposi sarcoma-associated herpesvirus infection |
|
Brite |
KEGG Orthology (KO) [BR:sara00001]
09130 Environmental Information Processing
09133 Signaling molecules and interaction
04080 Neuroactive ligand-receptor interaction
101550718 (C3)
09140 Cellular Processes
09141 Transport and catabolism
04145 Phagosome
101550718 (C3)
09150 Organismal Systems
09151 Immune system
04610 Complement and coagulation cascades
101550718 (C3)
04613 Neutrophil extracellular trap formation
101550718 (C3)
09160 Human Diseases
09161 Cancer: overview
05203 Viral carcinogenesis
101550718 (C3)
09172 Infectious disease: viral
05171 Coronavirus disease - COVID-19
101550718 (C3)
05168 Herpes simplex virus 1 infection
101550718 (C3)
05167 Kaposi sarcoma-associated herpesvirus infection
101550718 (C3)
09171 Infectious disease: bacterial
05133 Pertussis
101550718 (C3)
05134 Legionellosis
101550718 (C3)
05150 Staphylococcus aureus infection
101550718 (C3)
05152 Tuberculosis
101550718 (C3)
09174 Infectious disease: parasitic
05140 Leishmaniasis
101550718 (C3)
05142 Chagas disease
101550718 (C3)
09163 Immune disease
05322 Systemic lupus erythematosus
101550718 (C3)
09167 Endocrine and metabolic disease
04936 Alcoholic liver disease
101550718 (C3)
09180 Brite Hierarchies
09181 Protein families: metabolism
01002 Peptidases and inhibitors [BR:sara01002]
101550718 (C3)
09182 Protein families: genetic information processing
04131 Membrane trafficking [BR:sara04131]
101550718 (C3)
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:sara04147]
101550718 (C3)
Peptidases and inhibitors [BR:sara01002]
Peptidase inhibitors
Family I39: alpha2M family
101550718 (C3)
Membrane trafficking [BR:sara04131]
Endocytosis
Phagocytosis
Opsonins
101550718 (C3)
Exosome [BR:sara04147]
Exosomal proteins
Exosomal proteins of other cancer cells
101550718 (C3)
|
SSDB |
|
Motif |
|
Other DBs |
|
LinkDB |
|
Position |
Unknown
|
AA seq |
1504 aa
MAPNSGASCLLLLLLNCLPLVLGDPMYSVITPNILRLENEELVVLEAHDANGDIPVTLSI
YNYPGKTQVLFSEKTVLTKANNHLSAIPVKVPVSDELTKGKGQKFVLVQASFAKKDVEKL
VLVSLQSGYLFIQTDKTIYTPGSTVNYRIFTVDHNLLPVGRSVVYTIQTPDGVAVNEGTK
SSTDYRGMMPLSWNVPELVNMGQWKINAYYKDSPKKVFTAEFEVKEYVLPSFEVQVETEE
KFYYINDPNDLEVTIKARFLYGKDVEGTAFVIFGVQDDDQRISLTQSLSRVVIEDGVGKA
SLSRKVLLDGVQPSDANALVGKSLYVSVTVILQSGSDMVEAESDRIPIVDSPYKIHFTKT
PKYFKPAMPFDLMVSVTNPDGSPAVRVPVVTEGFNNVQSITGEDGVAKLSINTRKTQDPL
TITVRTQKDRIPREKQAVNTMHAQPYKTQGNSNNYLHLSVPRLELQPGEVINVNFHVRTD
PGLENRIKYFTYLIMSKGKLMKVGRQVRQAGQDLVVLQMAINEDFIPSFRLVAYYTLIRA
DGNREVVADSVWVDIKDSCMGTLVVTSSRSEDKQKVYLPKQQLNLKIEGDKGARVGLVAV
DKGVFVLNKKNKFTQSKIWDIVEKADIGCTPGSGKDYAGVFADAGLSLKTDKGLQTAHRT
DPECPKVAARRRRSVQLMEKRTDKAGQYKDKELRRCCEDGMRVNPMGHSCERRIKYILHG
RKCSDAFLDCCRYITRLRQELARQRPLGLARSDLDEDIIPAEDIISRSQFPESWLWVTIE
MLDGPEKHGVSTKYMKEFLKDSITTWEILAVSLSKTKGICVADPFEVTVMKDFFIDLRLP
YSVVRNEQVEIRAILYNYQPSDSLKVRVELLYNPAFCSMATNKKRHQQTLVIPAASSVAV
PFVIVPLQIGLHEVEVKAAVFNHYLADGVRKTLKVVPEGIRVNRTVAVRTLNPEIRGQNG
EQREEIHALDLSDQVPDTELETSILLQGNPVAQMTEDAIDSERLNHLIVTPSGCGEQNMM
YMTPTVIAVYYLDSTEQWAKYPLEKRTQTVELIKKGYTQQLTYRQKNSAFSAFQSRPSST
WLTAYVVKVFSLASKLIPVDAEVLCGAVKWLILEKQKPDGIFQEDAPVLAQQMTGGVGNE
AEKDMSLTAFVLIALVEARDICQEQVNSLEQSINKAGNFLEANYLRLKRPYSTAIAGYAL
SLLGKLEDPYLTKFLDTATDKNHWEEEPGQNLYNVEATSYALLALLEIKDFDSVPPVARW
LNEQRYYGGVGYGSTQATFMVFQALARYQQQVPDHKDLDLDVAINLPSRSSQIKHRIVWD
SASLLRSAETKKNEDFTVTAKGKGEGTLSVVTMYYAKVKDKVACKNFDLRISVRPAPPEL
KKPQDALSSLSLNICTRYLGVTDAAMSILDISMMTGFSPDVDDLNLLSRGVDRYISKYEL
NKAFSAKNTLIIYLDSVSIKYIIGKDTWVELWPKEDDCQEEKNEKLCEDLASFTNSLMVF
GCPN |
NT seq |
4515 nt +upstreamnt +downstreamnt
atggcacctaactcaggtgccagctgtctgctgctgctgctactgaactgcctccccctc
gtgctgggggaccccatgtactccgtaatcacccccaacatcctgaggctggagaatgag
gagctggtggtgctggaggcccatgacgccaacggggacattcccgtcacacttagcatc
tacaactaccccggcaaaacgcaagtgctgtttagtgagaaaactgtgctgaccaaggcc
aacaaccacctgagcgccatacctgtgaaggtcccagtgagcgatgagctgaccaaaggg
aaggggcagaagtttgtgctggtgcaggcaagcttcgccaagaaggacgtggagaaactg
gtgctggtcagccttcagagtgggtacctcttcatccagacagacaagaccatctacacc
ccaggcagtacagtcaactatcggatcttcaccgtggaccacaacctgttgccagtgggc
cggtctgttgtctacaccatccagaccccggatggagttgccgtcaatgagggcaccaag
tcttccaccgattatagagggatgatgcctctgtcgtggaacgttccagagctggttaat
atgggacagtggaagatcaacgcttactacaaggattcgcccaagaaggttttcaccgcg
gagttcgaggtgaaggagtatgtgttgcccagtttcgaagtccaagtggagactgaagag
aaattctactacatcaatgaccctaatgacctggaggtcaccatcaaggccaggttcctg
tatgggaaggatgtggaaggaaccgcctttgtcatcttcggcgtgcaggacgacgaccag
agaatctcactgacccagtccctctcccgagttgtgattgaggacggcgtcgggaaggcc
agtctctcccggaaggtcttgctggacggggtgcaaccctcggatgccaacgctctggtg
ggaaagtccttgtacgtgtcagtcaccgtcatcctgcagtcaggcagcgacatggtggag
gcagagagtgaccggatccccatcgtcgactccccttacaagatccacttcaccaagacc
cccaagtacttcaagcctgccatgccctttgacctcatggtgtccgtgaccaaccctgac
ggctcccccgcggttcgcgtgcccgtggtgacagaaggattcaataacgtgcagtctatc
actggggaagacggtgtggccaagctgagcatcaacacgcgcaagactcaggaccccctg
accatcaccgtgcgcacacagaaggacagaatccccagggaaaagcaagcggtgaacacc
atgcacgcccagccctacaagacccaaggcaactccaacaattacctccacctctcggtg
ccccgcttggagctccagcccggggaggtgatcaatgtcaatttccatgtgcgcacggac
cccggcctggaaaacaggataaaatacttcacctacctgatcatgagcaaggggaagctg
atgaaggtgggccggcaagtgcgacaggccggccaggatctggtggtgctgcagatggcc
atcaatgaagacttcatcccctccttccgcctggtggcctattacaccctcattcgggcc
gacgggaacagggaggtggtggctgattccgtgtgggtggacatcaaggactcatgcatg
ggcaccctggtggtgacaagtagcaggagtgaggacaagcagaaggtgtatctgccgaag
cagcagttgaacctcaagatagagggagacaaaggggcccgcgtggggctggtggccgtg
gacaagggcgtgttcgtgctaaataagaagaacaagttcactcaaagcaagatctgggac
atcgtggagaaggcggacatcggctgcacccccggcagcgggaaggactatgcgggggtc
ttcgcggatgcagggctgtccctcaagaccgacaaaggcctccagacggcccacaggaca
gatcccgagtgccccaaagtggccgcccgccgccggcgctccgtgcagctcatggagaag
aggacggacaaagccggccagtacaaggacaaggagctgcggcgctgctgtgaggacggc
atgcgggtgaaccccatgggccacagctgcgagcgccgcatcaaatacatcctgcatggc
cgcaagtgctcggacgccttcctcgactgctgccgctacatcacccgcctgcgccaggag
ctggcgcgccagaggcccctgggcctggcccgcagcgacctggacgaagacataatcccg
gcagaggatattatttctcgatcccagttcccagagagttggctgtgggtcacaattgag
atgttggatggaccagagaaacatggagtctccactaagtatatgaaagaatttttgaaa
gactccatcaccacctgggagatactggctgtgagtctgtcaaaaactaaagggatctgc
gtggccgacccctttgaggtcaccgtgatgaaggacttcttcatcgacctacggctcccc
tactcggtggtgcgcaacgagcaggtggaaatccgggccattctttacaactaccagcca
tctgactcactcaaggtaagagtggagctgctctacaatccagccttctgcagcatggcc
accaacaagaagcgccaccaacagaccctggttatcccggccgcatcctcggtggctgtc
ccttttgtcatcgtgcccctgcagattggcctccatgaggtggaggtcaaagctgctgtc
ttcaaccactaccttgctgatggtgtcaggaagaccctgaaggttgtgccggaaggaatc
agagtcaacagaactgtggccgttcgtacgctgaatccggaaatccggggccaaaatggc
gagcagagagaggagatccacgccctagatctcagcgatcaagtcccagatactgagctg
gagaccagcatccttctacaagggaaccccgtggcccagatgacggaggatgctatcgac
tcggagcggctaaatcacctcatcgtcaccccctctggctgcggtgagcagaacatgatg
tacatgacacccaccgtcatcgctgtgtattacctggacagcacggagcagtgggccaag
taccctctggagaagcggacgcaaaccgtagaactcatcaagaaaggctatacccagcag
ctgacctacagacagaaaaactcagcgttttctgcctttcagagccgaccttctagcacc
tggctgaccgcctatgtggtcaaggtcttctctctggcctccaagctcatacccgtggac
gccgaggtcttatgcggggctgtcaaatggctgatcctggagaagcagaagccagatggg
attttccaggaggatgcgcctgtgttagcgcaacaaatgactggtggcgtcgggaatgaa
gcggagaaagacatgtccctcaccgcctttgttctcatcgctctggtggaagctagggac
atttgtcaggaacaggtcaatagtttggaacagagcataaataaggcagggaattttctg
gaagccaactacctgaggttgaagagaccgtacagcacggccattgctggctacgccttg
tctctcctgggcaaattggaggatccgtatctgaccaaatttctggacacggccacagac
aagaaccactgggaggaggagccgggccagaatctctacaacgtggaggccacgtcttac
gcgctgctggcactactggaaatcaaggactttgattcggtgccccccgtggcgcgctgg
cttaatgagcagagatactacggcggggttggctatggctccacccaggccaccttcatg
gtgttccaagccttagccaggtaccagcagcaggtgcctgaccacaaggacctggacttg
gacgtggccatcaacctgcccagccgcagctcccaaataaagcaccgcatcgtctgggac
tctgccagtctcctgcgctccgcggagacgaagaaaaatgaggattttaccgtcacggcc
aagggcaaaggcgaagggaccttgtcggtggtcacgatgtactatgccaaggtcaaggac
aaggtcgcctgtaagaatttcgacctcaggatttccgtcagaccagcccctcctgaactc
aagaagccccaggacgctttgagcagtctgtccctcaacatctgcacccggtacctggga
gtaacggatgcagccatgtccatcctggacatatccatgatgaccggcttctctccagat
gttgatgacctgaacctgctgagcagaggcgtggaccgctatatctccaagtacgagttg
aacaaggcgttctccgccaaaaacacactcatcatctacctggactcggtaagcatcaaa
tacatcatcgggaaagacacgtgggtagagctgtggcccaaggaagacgattgccaggag
gagaagaacgagaagctatgtgaggatttggcctccttcaccaacagcctgatggtcttt
ggctgccccaactga |