Ornithorhynchus anatinus (platypus): 100080433
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Entry
100080433 CDS
T01045
Symbol
ITGA3
Name
(RefSeq) integrin alpha-3 isoform X1
KO
K06482
integrin alpha 3
Organism
oaa
Ornithorhynchus anatinus (platypus)
Pathway
oaa04151
PI3K-Akt signaling pathway
oaa04510
Focal adhesion
oaa04512
ECM-receptor interaction
oaa04640
Hematopoietic cell lineage
oaa04810
Regulation of actin cytoskeleton
oaa04820
Cytoskeleton in muscle cells
oaa05165
Human papillomavirus infection
oaa05200
Pathways in cancer
oaa05222
Small cell lung cancer
oaa05410
Hypertrophic cardiomyopathy
oaa05412
Arrhythmogenic right ventricular cardiomyopathy
oaa05414
Dilated cardiomyopathy
Brite
KEGG Orthology (KO) [BR:
oaa00001
]
09130 Environmental Information Processing
09132 Signal transduction
04151 PI3K-Akt signaling pathway
100080433 (ITGA3)
09133 Signaling molecules and interaction
04512 ECM-receptor interaction
100080433 (ITGA3)
09140 Cellular Processes
09144 Cellular community - eukaryotes
04510 Focal adhesion
100080433 (ITGA3)
09142 Cell motility
04820 Cytoskeleton in muscle cells
100080433 (ITGA3)
04810 Regulation of actin cytoskeleton
100080433 (ITGA3)
09150 Organismal Systems
09151 Immune system
04640 Hematopoietic cell lineage
100080433 (ITGA3)
09160 Human Diseases
09161 Cancer: overview
05200 Pathways in cancer
100080433 (ITGA3)
09162 Cancer: specific types
05222 Small cell lung cancer
100080433 (ITGA3)
09172 Infectious disease: viral
05165 Human papillomavirus infection
100080433 (ITGA3)
09166 Cardiovascular disease
05410 Hypertrophic cardiomyopathy
100080433 (ITGA3)
05412 Arrhythmogenic right ventricular cardiomyopathy
100080433 (ITGA3)
05414 Dilated cardiomyopathy
100080433 (ITGA3)
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:
oaa04147
]
100080433 (ITGA3)
04515 Cell adhesion molecules [BR:
oaa04515
]
100080433 (ITGA3)
04090 CD molecules [BR:
oaa04090
]
100080433 (ITGA3)
Exosome [BR:
oaa04147
]
Exosomal proteins
Exosomal proteins of haemopoietic cells (B-cell, T-cell, DC-cell, reticulocyte, and mast cell)
100080433 (ITGA3)
Cell adhesion molecules [BR:
oaa04515
]
Integrins
Integrin alpha subunits
100080433 (ITGA3)
CD molecules [BR:
oaa04090
]
Proteins
100080433 (ITGA3)
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
Integrin_A_Ig_3
Integrin_A_Ig_1
FG-GAP
Integrin_A_Ig_2
FG-GAP_3
FG-GAP_2
Motif
Other DBs
NCBI-GeneID:
100080433
NCBI-ProteinID:
XP_028930745
Ensembl:
ENSOANG00000000624
UniProt:
F7EW96
LinkDB
All DBs
Position
11:59580565..59622454
Genome browser
AA seq
1059 aa
AA seq
DB search
MAARAPALCASRLVLCAALCGAASAFNLDTRFLVLKEGRTAAGLFGYSVALHRQTERQNR
YLLLAGAPRDLAPPDGNTNHTGAVYLCPLSSKTDDCERVDIHETRDPQQHIIEDMWLGVT
VASQGPAGRVLVCAHRYTKVLWSGTEDQRRMVGKCYVRGNDLGLDLGDEWQTYHNEMCNS
NTDYLDTGMCQLGTSGGFTENSVYFGAPGAYNWQGTNYMIQRKDWDLSESSYANEKEQGN
IYIGYTVQVGSAILHPQDLTIVSGAPRHRHAGAVFLMSHKVGKDLERRQVLEGQQVGAYF
GSSIALTDLNNDGWQDLVIGAPYYFERKKEEGGAVYVFTNEGGTFAPEPTQTLHGPSGSA
FGFSVASIGDVNQDGFQDIAVGAPFEGSGRVYIFHSSSTGLHQKAQQVISGEELGVPGLS
TFGYSLSGQLDVDNNSYPDLLVGSLAERIVLLRARPVINILNKTLTVKPTLLDPARCTPT
SCLQVELCFSYNQSAGSSNYRRNITLAYTLEADRDRRPTRVRFAQSLSAVQHGFFSMPES
RCHNLQLLLVDNIRDKLHPITLSMNYSLLERDMKPRLGPRSLDPYPVLNQAQPRENHTEI
QFQKECGLDNICKSNLQLKAAFVTEHMQPLARIGGIQVFQYSRDVRKLFMSINVTNEPST
AHNGEDAHEALLNLTIPSALLLSSVRPAGACHANETILCELGNPLKRKQKMELLIAFEVV
GITLHTRDIVAQLQLSTSSYQKDLSPVTVTLQVDYTLQASLSMTTYRLQSYFGGTVMGEA
AMRNVTDVGSPLKLEFQVSPAREGLAALGSLVLGWEWPYEVNNGKWLLYPTAITIRGNGS
LRCHPPGNLINPLNLTFPGATLNRRRNRRELEPGGPSPPAITLAAAKKAKSETLLTCANA
LARCVWFECPIPDAWVLSNVTVWARVWNSTFIEDYSDFDRVRVEGWATLFLRSSVSSINM
DNKTVRFSVDIDSELTEELPAEIDLWLVLVAVGAGLLLLGLIVLLLWKFDFFKRTQYYRI
MPKYHAVRIREEERYRPPGGPPPNKRQWVTNWQDPGRYY
NT seq
3180 nt
NT seq
+upstream
nt +downstream
nt
atggcagcccgcgcccctgccctttgcgcttcgcgcctggtcctctgcgccgccctttgc
ggggccgcctccgccttcaacctggacacccggttcctggtgctgaaggagggccggacg
gccgctggcctcttcggatactccgtggccctccaccggcagaccgagcgacagaaccgc
tacctgcttctggctggtgccccccgagacctagcaccccccgatggaaatacgaaccac
acgggcgccgtctacctctgccccctcagctccaagacagatgactgcgagcgtgtggac
attcacgagaccagggacccccagcagcacatcattgaggacatgtggctgggggtgaca
gtggccagtcagggccccgccggacgagtgttggtctgtgcccaccggtacaccaaggtg
ctgtggtccggcacggaggaccagcgccgcatggtgggcaagtgctacgtgcggggcaat
gacctggggctggacctgggtgacgagtggcagacataccacaacgagatgtgcaacagc
aacaccgactacctggatacgggcatgtgccagctgggcaccagcggaggcttcaccgaa
aactccgtgtactttggggccccaggtgcctacaactggcaaggaacaaattacatgatc
cagaggaaagactgggatctgtccgagtccagctacgcgaatgaaaaagaacagggcaac
atctatattgggtacacggtacaggtgggcagtgccatcctgcacccccaggacctcacc
atcgtgtcaggagccccccgccaccgccacgcaggagctgtcttcctgatgagccacaag
gtgggcaaggacctagagaggcggcaggtcctggaagggcagcaggtcggggcttacttt
ggcagctccattgccctgacggacctcaacaacgatgggtggcaggacctcgtgattgga
gccccctactactttgagcgaaagaaggaggagggtggagccgtctacgtcttcacgaat
gaggggggcacctttgccccagagcccacccagaccctccatggccccagcggttccgcc
tttggtttctccgtggccagcattggggacgtcaaccaagatggcttccaggacatcgcc
gtgggcgccccttttgaaggctctggtcgcgtgtacatcttccacagcagctccaccggc
ctccaccagaaggcccagcaggtgatcagcggggaggagctgggggtcccgggtctctcc
actttcggctactccctgagcgggcagctagatgtggacaacaactcatacccggacctg
ctagtaggcagcctggccgagaggatcgtgctactgcgggcccgccccgtcatcaacatc
ctcaacaagaccctgacggtgaagcccaccctcctggaccctgccaggtgcacccccacg
tcttgcctgcaggtagagctgtgcttctcctacaaccagagcgcggggagctccaactac
cgacggaacatcaccctggcctacaccctggaggcggatcgagaccgcaggcccacccgg
gtccgctttgcccagagcctctctgccgtccagcacggcttcttctccatgcccgagagc
cgctgccacaacctgcagctcctgttggtggacaacatccgcgacaagctccaccccatc
acgctgtccatgaactactctctgctggagcgggacatgaagcccaggctgggaccccgc
tccctggacccctaccctgtcctcaaccaggcccagccccgcgagaaccacactgagatt
caattccagaaggagtgtgggctggacaacatctgcaaaagcaatttacagctcaaggcg
gcctttgtcactgagcacatgcagccactcgccaggatcggcgggatccaggtgttccag
tacagccgggacgtgaggaagctgttcatgagcatcaacgtcactaatgagcccagcact
gcacacaacggggaagacgcccacgaggccctgctcaacctcaccatcccctctgccctg
ctgctctcctccgtgcgccctgctggtgcctgccatgccaatgagacaatcttgtgcgag
ctgggaaaccccttgaagaggaagcagaagatggagctgctgattgcctttgaggtggtg
gggatcactctgcacacccgggatatcgtggcccagctgcagctctccacctccagctac
cagaaggacctctcccccgtgacggtgaccctgcaggtggactataccctccaagcctca
ctcagcatgaccacctaccggctgcagagctattttgggggcacggtgatgggggaagca
gccatgcggaacgtgacggatgtggggagccctctgaagctggagttccaggtgagcccg
gccagggagggcctggctgctctgggcagcctggtcctgggctgggagtggccttacgag
gtgaacaatggaaaatggctcctgtaccctacggcgatcactatccgcggcaacgggagc
cttcggtgccaccctccgggcaacctcatcaaccccctcaacctcacgttccccggagcc
accctgaaccgtcgccgaaaccggagggagctggagcctgggggaccgagcccgcccgcc
atcactctggccgctgccaagaaagccaagtccgaaacactgctgacttgtgccaatgcc
cttgcccgctgcgtctggttcgaatgccccattccggatgcctgggtcctgtccaacgtg
accgtttgggcccgggtttggaacagcaccttcatcgaggattacagtgactttgaccgg
gtcagggtagagggctgggccaccttgttcctgcgaagcagcgtttcctccatcaacatg
gacaacaagactgtccgattctctgtggacattgactcggagctgacggaggagttgccg
gccgagattgacctgtggctggtgctggtagccgtgggggccggtctgctgctcctgggc
ctcatcgtccttctgctctggaagttcgacttcttcaagaggacccagtattaccgcatc
atgcccaagtaccacgcggtgcgtatccgtgaggaggagcggtaccggccccccgggggg
ccgccccccaacaagaggcagtgggtcacaaactggcaggatccgggtcgatactactga
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