Entry |
|
Symbol |
ITGB3
|
Name |
|
KO |
|
Organism |
npr Nanorana parkeri (Xizang Plateau frog)
|
Pathway |
npr04810 | Regulation of actin cytoskeleton |
npr05168 | Herpes simplex virus 1 infection |
|
Brite |
KEGG Orthology (KO) [BR:npr00001]
09120 Genetic Information Processing
09125 Information processing in viruses
03266 Virion - Herpesvirus
108797421 (ITGB3)
09130 Environmental Information Processing
09133 Signaling molecules and interaction
04081 Hormone signaling
108797421 (ITGB3)
04512 ECM-receptor interaction
108797421 (ITGB3)
09140 Cellular Processes
09141 Transport and catabolism
04145 Phagosome
108797421 (ITGB3)
04148 Efferocytosis
108797421 (ITGB3)
09144 Cellular community - eukaryotes
04510 Focal adhesion
108797421 (ITGB3)
09142 Cell motility
04820 Cytoskeleton in muscle cells
108797421 (ITGB3)
04810 Regulation of actin cytoskeleton
108797421 (ITGB3)
09160 Human Diseases
09172 Infectious disease: viral
05168 Herpes simplex virus 1 infection
108797421 (ITGB3)
09180 Brite Hierarchies
09182 Protein families: genetic information processing
04131 Membrane trafficking [BR:npr04131]
108797421 (ITGB3)
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:npr04147]
108797421 (ITGB3)
04515 Cell adhesion molecules [BR:npr04515]
108797421 (ITGB3)
04090 CD molecules [BR:npr04090]
108797421 (ITGB3)
Membrane trafficking [BR:npr04131]
Endocytosis
Phagocytosis
Integrins (complement receptors)
108797421 (ITGB3)
Exosome [BR:npr04147]
Exosomal proteins
Exosomal proteins of haemopoietic cells (B-cell, T-cell, DC-cell, reticulocyte, and mast cell)
108797421 (ITGB3)
Cell adhesion molecules [BR:npr04515]
Integrins
Integrin beta subunits
108797421 (ITGB3)
CD molecules [BR:npr04090]
Proteins
108797421 (ITGB3)
|
SSDB |
|
Motif |
|
Other DBs |
|
LinkDB |
|
Position |
Unknown
|
AA seq |
780 aa
MVSVTFRGFLTFFLITTASCASICSTRGVSSCKQCLAVSPSCAWCSQADYGKGNPRCDEV
SALRQNNCDPNNIEYPASKVNILINRPLSDKGSEGDITQMTPQKIELFLRPDDSRIFTIQ
VRQVEDYPLDIYYLMDLSYSMKDDLETVRTLGTQLAERMHKVTSNLRIGFGAFVDKPMSP
YMYMSPPEVIANPCLEIGTTCKPTFGYHHILTLTDKVERFNQEVAKQDVSRNRDAPEGGF
DAIMQAAVCDERIGWRNESSHLLVFTTDARTHIALDGRLAGIVHPNDGQCHLGDKNSYTL
STFLDYPSIGLMTEKLSQKNINLVFAVTKEVTDLYKEYSELIPGTTVGTLSKDSGNVIQL
IVDSYETIRSRVELEVRDLPEELSLSFNATCTNNEVTPGLKSCSGLKIGDTVTFSIEAKV
RGCPAERVKTFNIKPVGFKDSLTVTVHFQCDCECQKNDEPNSDSCNMGNGTLSCGICQCY
SGWLGPHCECSEEQYDPSQQDRCSQKDKGVICSRRGECVCGQCICHTNDFGKVWGKYCEC
DDFSCLRYKGEMCSGHGQCNCGDCICESDWTGDYCNCTTRTDTCMSSSGLLCSGRGVCVC
GKCDCTQPGSYGDTCEKCPTCPDACTFKKGCVECKKFERGPWMNESLCKRICRDEIVPVQ
ELVDNGKDAVNCTYKDENDCVVRFQYHEDSSGKSVLYVINEEECPQGPDILVVLMSVMGA
ILLVGLLALLIWKLLITIHDRREFAKFEEERTKAKWDTAHNPLYKGATSTFTNITYKGEN |
NT seq |
2343 nt +upstreamnt +downstreamnt
atggtgtctgtcacatttagaggatttctgactttctttctgataactactgcaagctgc
gcctctatctgctctacgagaggagtcagctcctgcaagcaatgcctcgctgtcagccca
tcgtgtgcctggtgctctcaagcggattatggaaaaggaaatccccgctgcgatgaagtg
tcagcactgcggcaaaataactgtgatccaaacaatattgagtacccagctagtaaggtc
aatattctgatcaacaggccgctgagtgacaagggctcagaaggggacatcacccagatg
acacctcagaagatagaacttttcctgagaccagatgattccaggatcttcacaatacaa
gtgcggcaggtggaagactatccactggacatctactaccttatggatctgtcttactct
atgaaagatgatttggaaaccgtccggacgctaggaactcaactagcggagaggatgcac
aaagtaaccagtaatctgcgcattggcttcggggcctttgttgataagcccatgtcacct
tacatgtatatgtctccaccagaggtcatcgcaaacccttgccttgagattggtaccacc
tgcaagcccacatttggctatcatcacattttgaccctcacagacaaggttgagagattt
aatcaagaagttgcaaagcaggatgtatcccgaaaccgtgatgctccagaaggtggcttt
gatgccatcatgcaggctgcagtatgcgatgagaggattggctggaggaacgagtcatcc
cacctgctggttttcaccacggatgccagaacgcacattgccttggatggtcgtcttgca
ggaatcgttcaccccaacgatgggcagtgccatcttggagacaaaaattcttacacattg
tctacttttctggactacccatccattggactcatgactgaaaaactttcccaaaaaaac
atcaatcttgtttttgccgtcactaaagaagtcacagatctctacaaggaatatagtgag
ttaattcctggtacgacagtgggtacattatcgaaagattcaggaaatgttattcagctg
atcgtggattcctatgagacgatccgatccagggtggagctggaagtccgtgatcttcct
gaggagctgtcactctcgttcaatgccacttgtaccaacaatgaggtcacaccaggtcta
aaatcctgctcagggctcaagattggggatactgtgactttttccattgaggccaaagtt
cgaggctgccccgcagagagggtgaaaacatttaacatcaaacctgtgggatttaaagat
tccctgactgtgaccgtacacttccagtgtgactgtgaatgtcagaagaatgatgaacca
aacagcgactcgtgtaatatgggaaacgggaccctcagctgtggaatctgtcaatgttac
tctggctggttgggaccacactgcgagtgctccgaggagcagtatgacccctcacaacaa
gaccgctgcagccaaaaggacaaaggcgtcatctgttcccggagaggagagtgtgtatgc
ggccagtgcatttgtcacaccaatgactttggcaaagtgtgggggaaatactgtgaatgt
gacgacttctcctgtctgaggtacaagggcgagatgtgctcagggcatggacagtgtaac
tgtggtgactgtatctgtgaatctgactggactggcgattactgtaactgcaccacacgc
acagacacctgtatgtccagcagtgggctcttgtgcagtggtaggggggtgtgcgtctgt
ggcaagtgtgactgcacccagcctggctcctatggggacacctgtgaaaaatgtcctacc
tgtcctgatgcctgcacctttaaaaaggggtgtgtggagtgcaagaagtttgagcgtggc
ccttggatgaatgaatctttgtgcaagaggatttgtcgggatgaaattgtacctgtacag
gaacttgttgacaatgggaaggatgctgtgaactgcacttataaggatgagaatgactgt
gtggttaggttccagtaccatgaggactccagtgggaagtctgtgctgtatgttatcaat
gaagaagaatgccctcagggtcctgacatccttgtggttttaatgtctgtcatgggagcc
atcttgctagtgggcttgttagcgctgcttatatggaagctgctcatcaccatccacgac
aggcgtgagtttgccaaattcgaagaggagcgaacaaaggctaagtgggacacagctcac
aaccctctctacaaaggagccacttcgaccttcaccaatataacatacaaaggcgagaac
tga |