KEGG   Rattus norvegicus (rat): 308995
Entry
308995            CDS       T01003                                 

Gene name
Itgal
Definition
(RefSeq) integrin alpha-L precursor
  KO
K05718  integrin alpha L
Organism
rno  Rattus norvegicus (rat)
Pathway
rno04015  Rap1 signaling pathway
rno04514  Cell adhesion molecules
rno04613  Neutrophil extracellular trap formation
rno04650  Natural killer cell mediated cytotoxicity
rno04670  Leukocyte transendothelial migration
rno04810  Regulation of actin cytoskeleton
rno05144  Malaria
rno05150  Staphylococcus aureus infection
rno05166  Human T-cell leukemia virus 1 infection
rno05169  Epstein-Barr virus infection
rno05323  Rheumatoid arthritis
rno05416  Viral myocarditis
Brite
KEGG Orthology (KO) [BR:rno00001]
 09130 Environmental Information Processing
  09132 Signal transduction
   04015 Rap1 signaling pathway
    308995 (Itgal)
  09133 Signaling molecules and interaction
   04514 Cell adhesion molecules
    308995 (Itgal)
 09140 Cellular Processes
  09142 Cell motility
   04810 Regulation of actin cytoskeleton
    308995 (Itgal)
 09150 Organismal Systems
  09151 Immune system
   04613 Neutrophil extracellular trap formation
    308995 (Itgal)
   04650 Natural killer cell mediated cytotoxicity
    308995 (Itgal)
   04670 Leukocyte transendothelial migration
    308995 (Itgal)
 09160 Human Diseases
  09172 Infectious disease: viral
   05166 Human T-cell leukemia virus 1 infection
    308995 (Itgal)
   05169 Epstein-Barr virus infection
    308995 (Itgal)
  09171 Infectious disease: bacterial
   05150 Staphylococcus aureus infection
    308995 (Itgal)
  09174 Infectious disease: parasitic
   05144 Malaria
    308995 (Itgal)
  09163 Immune disease
   05323 Rheumatoid arthritis
    308995 (Itgal)
  09166 Cardiovascular disease
   05416 Viral myocarditis
    308995 (Itgal)
 09180 Brite Hierarchies
  09183 Protein families: signaling and cellular processes
   04147 Exosome [BR:rno04147]
    308995 (Itgal)
   04515 Cell adhesion molecules [BR:rno04515]
    308995 (Itgal)
   04090 CD molecules [BR:rno04090]
    308995 (Itgal)
Exosome [BR:rno04147]
 Exosomal proteins
  Exosomal proteins of haemopoietic cells  (B-cell, T-cell, DC-cell, reticulocyte, and mast cell)
   308995 (Itgal)
Cell adhesion molecules [BR:rno04515]
 Integrins
  Integrin alpha subunits
   308995 (Itgal)
CD molecules [BR:rno04090]
 Proteins
  308995 (Itgal)
SSDB
Motif
Pfam: Integrin_alpha2 VWA FG-GAP VWA_2 FG-GAP_3 FG-GAP_2 Integrin_alpha
Other DBs
NCBI-GeneID: 308995
NCBI-ProteinID: NP_001029170
RGD: 631424
Ensembl: ENSRNOG00000017980
UniProt: Q3T1L6
Position
1
AA seq 1160 aa
MSFRIPGPRLLLLGLQLFVNAWSYNLDTRHAQSFLTQAGRHFGYQVLQFGDGVVVGAPGE
GNSTGNLYHCHPSSGSCQPVHLGSNHTSKYLGMTMVTDAAKGSLLACDPGLSRTCDQNPY
LSGLCYLFSQSLGKPILQNRPAYQECMKGNVDLVFLFDGSQSLDKKDFEKIVDFMKDVMR
KLSNTSYQFAAVQFSTECKTEFTFLDYIKLNKNPDVLLGNVTPMFLLTNTFRAINYVVTH
VFKEESGARPDATKVLVIITDGEASDNGNIDAAQDITRYIIGIGKHFSTTQKQEKLHIFA
SKPVEEFVKILDTFEKLKDLFTDLQRKIYAIEGTSKQDLASFNMELSSSGISADLSKGHA
VVGAVGAKDWAGGFLDLHEDLEGATFVGQEPLTSDERGGYLGYTVAWLTSRSSRPLLAAG
APRYQHVGQVLLFQAPEAGGHWNQTQKIEGTQIGSYFGGELCSVDLHQDGETDLLLIGAP
LFYGEQRGGRVSVYQRRRSLFEMVSELQGDPGYPLGRFGAAISALTDINGDGLTDVAVGA
PLEEQGAVYIFNGKPGGFSSQSSQRIPGTQVSPGVRWFGRSIHGVKDLGGDRLADVVVGA
EGQVIVLSSRPVVDIVTELSFSPDEIPVHEVECSYSASQEQKEGVKLKVCFQIRPLTSQF
QGRLLANLSYTLQLDGHRTRSRGLFPGGSRELGGNTFVTPDRSCMDFHFHFPICIQDLIS
PINVSLNFSLLEEEGSPRDQKGGRDMQPILRPSIHAVTKEIPFEKNCGEDKKCEADLALS
PPARSGVLRLMSSASLAVEWTLRNLGEDAYWVRLDLDFPRGLSFRKVEMLQPHSQIPVSC
EELTEESSLLTKTLKCNVSSPIFKAGKQMTLQVMFNTLLNSSWGDFVELNGTVHCENENS
SLGKDNSATTRIPVLYPVNILTEDQENSTLYISFTPKGPKTQQVQHIYKVRIQPSAYDHN
MPALEALVEVPQPHSEGPIAHTWTVHTDPLVTCHCEDLKKPTREAEPCLPGVQFRCPIVF
RQETFIRVAGTVELSEKIKASSTLSLCSSLSVSFNSSKHFHLYGSKASKAQVLMKVDMIY
EKEMLHLYVLSGIGGLLLLSLIFLALYKVGFFKRKLKEKMEADGGVPNGSPGEDADPLAV
PGEETKDMGCLEPLRESDKD
NT seq 3483 nt   +upstreamnt  +downstreamnt
atgagtttccggatccctggccccagacttctgctattggggctccagctgtttgtgaat
gcctggagctacaacctggacacgcggcatgcgcagagcttcttgacacaagctggaaga
cattttgggtaccaggtcttgcagtttggagatggggttgtcgtgggagctccaggagag
gggaacagcacaggaaacctctatcactgtcacccaagcagcggctcctgccagccagtc
cacctaggttctaaccatacctccaaatacttgggaatgaccatggtgacagatgctgcc
aagggaagccttttggcctgtgatcctggactgtctcggacctgtgatcagaacccctac
ctcagtgggctgtgctacttattttcccagagcctggggaaacctatattacaaaatcgt
cctgcttatcaggaatgtatgaagggcaatgtcgacctagtgtttctgttcgatggctca
cagagcttggataaaaaggactttgaaaaaatcgtggacttcatgaaggatgtgatgagg
aaactcagcaacacttcctaccagtttgctgctgttcagttttccacagagtgcaaaaca
gaatttactttcttggactacatcaagctaaacaagaatcctgatgttctgctaggcaac
gtgacgcccatgttcttgctgaccaataccttccgtgccatcaactacgtggtgacacac
gtgttcaaagaagagtctggtgccaggccagatgctaccaaggtgcttgtcatcattaca
gacggggaagcaagtgacaatggcaacatcgatgcagcccaagacataacccgctatatc
atcgggattggcaagcatttttcaaccacacaaaagcaggagaaactccacatatttgcc
tcaaaacctgtagaggaatttgtcaagattctggacacatttgagaagctgaaggatctg
tttactgatctgcagaggaagatttatgccattgagggcacaagcaaacaggacctggca
tcctttaatatggaactctcctccagcgggatcagcgcagacctcagcaagggccatgcg
gttgttggagccgttggggctaaggattgggctgggggctttctggacctgcatgaagac
ctggagggtgccacatttgttgggcaggaaccgctgacctcagatgagagaggaggttat
ctgggttacactgtggcctggctgacctcccggagctctagaccactgctggcagcagga
gctccgcggtaccagcatgtgggacaagtgctgcttttccaagccccagaagctggagga
cattggaaccagactcagaagatagaagggactcagatcggatcttactttggtggggag
ctatgtagcgttgacctgcaccaagatggcgagacagatctgctgctgattggagcgccc
ctcttctacggggagcagagaggaggccgagtgtccgtttaccagagaagacggtcactg
ttcgaaatggtctcagagctgcagggtgacccaggctacccgcttggtcggtttggagct
gccataagtgccctgacagacatcaatggggatgggctgactgatgtggccgtgggagcc
cctctggaggagcagggggctgtgtatatcttcaatgggaagcctggtgggttcagttcc
cagtcaagtcagcgtataccaggaacccaggtgtccccgggagtccggtggtttggacgc
tccatccatggggtgaaggaccttggaggggacaggctggcagatgtggttgtaggagct
gagggccaggtgattgtgctgagctcgaggccggtggtggatattgtcactgagctgtcc
ttctccccagacgaaatcccagtgcatgaggtggagtgctcctactcagccagtcaggag
cagaaggaaggcgtcaagctcaaggtgtgcttccagatccgcccccttacgtctcagttt
caaggtcgcctgcttgccaacctcagctacaccctgcagctggacggccatcggacgagg
agccgaggtctgttcccaggaggaagccgtgagctcggcggaaacacatttgtcacccca
gataggtcctgcatggacttccacttccacttcccaatctgcattcaagacctcatctcc
cctatcaatgtctctctgaatttctctcttttggaggaagaaggatcaccaagggaccaa
aaggggggcagggacatgcagcccatcctgagaccttcgatccatgcagtcactaaggag
atcccctttgagaagaactgtggtgaggataagaagtgtgaggcagacctggccctgtca
cctcctgccagatccggagtcctgcgtctgatgtcctctgccagccttgctgtggagtgg
acactgaggaacttgggagaagacgcttactgggtgcgactggacctggacttcccccgg
ggcctctccttccgaaaagtggagatgcttcagccacacagccaaatacctgtgagctgc
gaggagctcaccgaggagtcgagtctcctgactaagaccctgaaatgcaatgtgagctct
cccatcttcaaagcaggcaaacagatgaccctccaggtgatgtttaacacgctactcaac
agttcctggggagattttgtcgagctgaacggcactgtgcactgtgagaacgagaactca
agcctcgggaaggacaactcagccaccacccgcattcctgtcctgtaccctgtcaacatc
cttactgaggaccaggagaactccacactctatatcagtttcacccctaaaggtcccaag
actcaacaagtccagcatatctacaaggtgaggattcagccttctgcctatgaccacaac
atgcccgcactggaggccttggttgaggtgccgcagcctcacagcgagggccccatcgca
cacacatggactgtgcatacggatccccttgtcacttgccactgtgaggacctgaagaag
ccaaccagggaagctgagccctgtctgcctggagtccagttccgctgcccaattgtcttc
aggcaagagaccttcatccgagtggccgggactgtggaactctcagagaaaatcaaggcc
tcctccacactcagcctctgcagctcgctctcagtctccttcaacagcagcaagcatttc
catttgtatggtagcaaggcctccaaggcccaggtcctcatgaaggttgacatgatctat
gagaaggagatgcttcacctgtacgtgctcagcggcattggggggctattgctactgtcc
ctgattttcctagcgctctacaaggttggtttcttcaaacggaagctgaaggagaagatg
gaggcggatggaggtgttccaaatggaagccctggcgaagacgctgaccctctggcagta
cctggggaagagaccaaagatatgggctgtctagagcccctccgtgagagtgacaaggac
taa

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