Entry |
|
Symbol |
ITGA1
|
Name |
(RefSeq) LOW QUALITY PROTEIN: integrin alpha-1
|
KO |
|
Organism |
dnm Dasypus novemcinctus (nine-banded armadillo)
|
Pathway |
dnm04810 | Regulation of actin cytoskeleton |
dnm05412 | Arrhythmogenic right ventricular cardiomyopathy |
|
Brite |
KEGG Orthology (KO) [BR:dnm00001]
09130 Environmental Information Processing
09132 Signal transduction
04151 PI3K-Akt signaling pathway
101414193 (ITGA1)
09133 Signaling molecules and interaction
04512 ECM-receptor interaction
101414193 (ITGA1)
09140 Cellular Processes
09144 Cellular community - eukaryotes
04510 Focal adhesion
101414193 (ITGA1)
09142 Cell motility
04820 Cytoskeleton in muscle cells
101414193 (ITGA1)
04810 Regulation of actin cytoskeleton
101414193 (ITGA1)
09150 Organismal Systems
09151 Immune system
04640 Hematopoietic cell lineage
101414193 (ITGA1)
09160 Human Diseases
09172 Infectious disease: viral
05165 Human papillomavirus infection
101414193 (ITGA1)
09166 Cardiovascular disease
05410 Hypertrophic cardiomyopathy
101414193 (ITGA1)
05412 Arrhythmogenic right ventricular cardiomyopathy
101414193 (ITGA1)
05414 Dilated cardiomyopathy
101414193 (ITGA1)
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:dnm04147]
101414193 (ITGA1)
04515 Cell adhesion molecules [BR:dnm04515]
101414193 (ITGA1)
04090 CD molecules [BR:dnm04090]
101414193 (ITGA1)
Exosome [BR:dnm04147]
Exosomal proteins
Exosomal proteins of other body fluids (saliva and urine)
101414193 (ITGA1)
Cell adhesion molecules [BR:dnm04515]
Integrins
Integrin alpha subunits
101414193 (ITGA1)
CD molecules [BR:dnm04090]
Proteins
101414193 (ITGA1)
|
SSDB |
|
Motif |
|
Other DBs |
|
LinkDB |
|
Position |
Unknown
|
AA seq |
1178 aa
MAPRRRASPGVAVACSWLLTVLGFCVSFNVDVKNSMTFSGPVEDMFGYTVQQYENEEGKW
VLIGSPLVGQPRNRTGDVYKCPVGRSESLPCIKLDLPVNTSIPNVTEVKENMTFGSTLVT
NPNGGFLACGPLYAYRCGHLHYTTGICSDVSPTFQVVNSFAPVQECGTQLDIVIVLDGSN
SIYPWESVTAFLKDLLERMDIGPKQTQVGIVQYGENVTHEFNLNKYSSTEEVLIAAKKIV
QRGGRQTMTALGIDRARKEAFTEARGARRGVKKIMVIVTDGESHDNHRLSKVIQDCEDEN
IQRFAIAILGSYNRGNLSTEKFVEEIKSIASEPTEKHFFNVSDELALVTIVEALGERIFA
LEATADQSASSFEMEMSQTGFSAHYSQDWVMLGAVGAYDWNGTVIMQKANQIVIPQNTTF
NVKSTKKNEPLASYLGYMVNSATVSGHVLYIAGQPRYKHTGQVIIYRMEDGDIKILQTLN
GEQIGSYFGSVLTTVDIDKDSNTDILLVGAPMYMGTEKEEQGKVYVYALNQTRFEYQMSL
EPIKQICCSSLKHNSCTKANKNEPCGARFGTAIAAVKDLNLDGFNDIVIGAPLEDDHAGA
VYIYHGSGKTIRKEYAQRIPSGGDGETLKFFGQSIHGEMDLNGDGLTDVTIGGLGGAALF
WSRDVAVVKVTMDFEPKKVNIXKKNCRVEGKETVCINAMVCFDVKLKSKEDTIYEADMQY
RVTLDSLRQISRSFFSGTQERRILRNITVRDSECTKHSFYMLDKHDFRDSVRITLDFNLT
DPENGPVLDDSLPNSIHEYIPFAKDCGNKEKCITDLALNVSSTGKDPLIVKSHNDKFNVS
LTVKNKKDSAYNTRTIVYYSPNLIFSGVEAIQKDSCESNHNITCKVGYPFLRRGEVVTFK
ILFQFNTSYLMKNVAIHLSATSDSEEPPEVLSDNEVNIAIPVKYEVGLQFSRSASESHIL
IAANETVPENINSTEDFGNEINISYLITRSGVFPMPELTLSVSFPNLTSNDYPVLYLTGW
SSSDNANCRPSSLQDPFGINSEKKRSIPKSDHIKEGTILDCSTCKFATITCNLIPSDMSK
LNISVILWKPTFIKTRFSSLNLTVRAKLKSENTSLVLSSDNEERELAIQISKVGLPGRVP
LWVILLSAFAGLLLLMLLILALWKIGFFKRPLKKKMEK |
NT seq |
3537 nt +upstreamnt +downstreamnt
atggccccccgtcgccgtgccagcccaggggtcgctgtcgcctgcagctggcttctcacc
gttttaggcttctgcgtatcattcaatgttgatgtgaaaaattcaatgactttcagcggc
ccagtggaggacatgtttggatatactgttcagcaatatgaaaatgaagaaggaaaatgg
gtgcttattggttctcctttagttggccaacccaggaatagaaccggtgatgtctataag
tgtccagttgggagaagtgaatcattaccttgcataaaattggatctaccagttaataca
tcaattcccaatgtcacagaagtaaaagagaacatgacatttggatcaactttagtcacc
aacccaaatggaggatttctggcatgtggacccttatatgcctatagatgtggacacttg
cattatacaactggaatctgttctgatgtcagccccacatttcaagtcgtgaactccttt
gcccctgtacaagaatgtggcactcaactggacatagtcatagtgcttgatggctccaac
agtatttatccctgggaaagtgttactgcttttttaaaagaccttcttgaaagaatggat
attggtcctaaacagacacaggttggaattgtacagtatggagaaaacgttacccatgaa
ttcaacctcaataagtattcatcaacagaagaggtactcattgcagcaaagaaaatagtc
cagagaggtggccgccagactatgacagctctcggaatagacagagcaaggaaagaagct
ttcacagaagcccggggtgcccgaagaggggttaaaaaaatcatggttattgtgactgat
ggtgagtcccacgacaaccaccgactgagtaaggtcatccaagactgtgaagatgaaaac
atacagaggttcgccattgctattcttggcagctataaccgtggaaatttaagcactgag
aaatttgtggaggaaataaaatcaattgcaagtgaacccactgaaaagcatttcttcaat
gtctctgatgaattggctctagtcactattgttgaagctctgggagaaagaatatttgcc
ctggaagctacagctgaccagtcagcatcttcatttgaaatggaaatgtctcagactggc
ttcagtgctcattattcacaggactgggtcatgcttggagcagtaggagcctatgattgg
aatgggacagtcatcatgcagaaggctaatcaaattgtaatcccccaaaacaccacattt
aacgttaagtccaccaaaaagaatgaacctcttgcttcttatttaggttacatggtaaac
tctgccactgtttctggacatgtgctctacattgctggacagccacggtacaaacacaca
ggacaggtcatcatctacaggatggaagatggagacatcaagattctccagacacttaat
ggagaacagatcggttcctactttggcagtgttttaacaacagttgacattgacaaagat
tcaaatactgacattcttctggttggggctcccatgtacatgggaacagagaaagaggaa
caaggaaaagtgtatgtgtacgctctgaatcagacgaggtttgaatatcaaatgagcctg
gaacccattaagcagatttgctgttcatctctgaagcacaattcctgcacaaaggcaaac
aaaaatgagccgtgcggggctcgttttggaacagctattgctgctgtaaaagatctaaat
cttgatggatttaatgacattgtaataggcgctccactggaagatgatcatgcgggcgca
gtgtacatttatcatggaagtggcaagaccataaggaaagagtatgcacaacgtattcca
tcaggaggggatggcgagacactgaaattttttggccagtctatacatggagaaatggat
ttaaacggtgacggtctgactgatgtgactatcgggggccttggtggtgctgccctcttc
tggtcccgagatgtggctgtagttaaagtgaccatggattttgaaccaaagaaagtgaat
attncaaagaagaactgtcgggttgagggaaaggaaacagtatgcataaatgctatggtg
tgttttgatgtgaaattaaagtccaaagaagacactatttatgaagctgatatgcagtac
cgtgtcacactagattcactaagacagatatcacgaagttttttctctggaactcaagag
agaagaatcctaagaaacatcacagttcgagactcagaatgcactaagcactccttctac
atgttggacaagcatgactttcgggactctgtgaggataactttggattttaatctaact
gatccagaaaatggcccagttcttgatgattctctaccaaactcaatacatgaatatatt
ccctttgctaaagattgtggaaacaaggaaaaatgtatcacagacctcgccctgaatgtc
tcctcaacaggaaaagatccacttattgtgaagtcccacaatgataagttcaacgttagc
ctaacagtcaaaaataaaaaggatagtgcctataacaccagaacaattgtgtattattct
ccaaatcttattttttcaggagttgaggctatccaaaaagacagttgtgaatccaaccat
aatatcacatgcaaagttggatatccattcctgagaagaggagaagtggtaactttcaaa
atattatttcagtttaatacatcttatctcatgaaaaatgtggccattcatttaagtgca
acaagtgacagcgaagaacctcctgaagtcctttctgataacgaagtaaacattgctatc
ccagtaaaatatgaagttggactgcagttttccaggtctgcaagtgaaagtcatattttg
attgcggccaatgagacagtccctgaaaatattaattctactgaggactttggaaatgaa
attaacatatcctacttgattacaagaagtggagtttttccaatgccagaacttacattg
tcagtttcattccccaacttgacatcaaatgattatcctgtgctgtacttaactggatgg
tcatcttcagataatgcaaactgcagacccagtagccttcaggatcctttcggaatcaac
tctgagaagaaaagatctatacccaaatctgatcatatcaaagaaggcacaattctggac
tgcagtacatgtaaatttgctaccatcacatgtaatctgattccttctgatatgagcaaa
ctgaatatttcagttatcctgtggaaaccaacttttataaaaacacgtttttccagctta
aatcttactgtaagggcgaaacttaagagtgaaaatacgtcattggttttaagtagtgat
aatgaagaaagagagcttgctattcaaatatccaaagttgggctaccaggcagagtacca
ttatgggttatcctgttgagtgcttttgctggattactgctgttaatgctactcatctta
gcactgtggaagattggattcttcaaaagaccactaaaaaagaaaatggagaaatga |