KEGG   Ailuropoda melanoleuca (giant panda): 100477542Help
Entry
100477542         CDS       T01329                                 

Gene name
TGM2
Definition
(RefSeq) transglutaminase 2
  KO
K05625  
transglutaminase 2 [EC:2.3.2.13]
Organism
aml  Ailuropoda melanoleuca (giant panda)
Pathway
Huntington's disease
Brite
KEGG Orthology (KO) [BR:aml00001]
 Human Diseases
  Neurodegenerative diseases
   05016 Huntington's disease
    100477542 (TGM2)
Enzymes [BR:aml01000]
 2. Transferases
  2.3  Acyltransferases
   2.3.2  Aminoacyltransferases
    2.3.2.13  protein-glutamine gamma-glutamyltransferase
     100477542 (TGM2)
Cell adhesion molecules and their ligands [BR:aml04516]
 2. Integrin Family
  Beta1 integrins
   VLA-4
    ITGB1; integrin beta 1 [KO:K05719]
     100477542 (TGM2)
   VLA-5
     100477542 (TGM2)
   VLA-9
     100477542 (TGM2)
BRITE hierarchy
SSDB OrthologParalogGFIT
Motif Motif
Other DBs
NCBI-GeneID: 
NCBI-ProteinID: 
Ensembl: 
LinkDB All DBs
Position
Un
AA seq 687 aa AA seqDB search
MAEDLVLEKCDLELEVNGRDHHTADLCRDRLVVRRGQPFWLTLHFEGRSYEASVDSLTFS
AVTGPAPSEEAGTKARFPLASAVEEGAWTAVAMDQQDGVLSLQLGTPANAPIGLYRLSLE
ASTGYQGSSFVLGHFTLLFNTWCPADAVYLDSEEERQEYVLTQQGFIYQGSVKWIKSIPW
NFGQFEDGILDICLTLLDMNPKFLKDACRDCSRRSSPVYMARVVSAMVNCNDDQGVLLGR
WDNNYKDGVSPMFWIGSVDILRRWKTSGCQRVKYGQCWVFAAVACTVLRCLGIPTRVVTN
FNSAHDQNSNLLIEYVYDKFGEIQRDKSEMIWNYHCWAESWMSRPDLQQGYDGWQALDPT
PQEKSEGTYCCGPVPVRAIKEGDLSTKYDAPFVFAEVNADVVNWIVQEDGSMCKSTNNSQ
TVGMKISTKSVGRDEREDITHTYKYPEGSPEEREAFKRANHLNKLTDKVETGVAMRIRVA
QSMSMGSDFDVFAYITNNTAESLTCRLLLLARTVSYNGVLGPECGTKDLLNLSLEPFSEK
SIPLRILYEKYCECLTESNLIKVRGLLMEPAANNYLLAERDIYLENPEIKIRILGEPKQN
RKLVAEASLRNPLTMPLLGCTFTMEGAGLTEEQKIMDVPDPVEAGEEVKVRVDLRPCHVG
RHKLVVNFESDKLKAVKGFRNIIIGPA
NT seq 2064 nt NT seq  +upstreamnt  +downstreamnt
atggccgaggatctggttctggagaaatgtgacctggagctggaggtcaatggccgtgac
caccacacagctgacctgtgccgggacaggctggtggtgcggcggggccagcccttctgg
ctgaccctgcacttcgagggccgaagctacgaggccagcgtggacagcctcaccttcagt
gcagtgaccggcccagcccccagcgaggaggccgggaccaaggcccgcttcccgctggcc
agtgctgtggaggagggcgcctggacggccgtggcgatggaccagcaggacggcgtcctc
tcgctgcagctcggcaccccggcgaacgcccccatcggcctgtaccgcctcagcctggag
gcctccacgggctaccagggctccagctttgtgctgggccacttcactctgctcttcaac
acctggtgcccagcggatgccgtgtacctggactcggaggaggagcggcaggagtacgtg
ctcacccagcagggcttcatctaccagggctcggtcaagtggatcaaaagcataccttgg
aactttgggcagtttgaagacgggatcctggatatttgcttgacgctcctggacatgaac
cccaagttcctgaaggacgcctgccgtgactgctcccgccgcagcagtcctgtctacatg
gcccgggtcgtgagcgccatggtcaactgcaacgatgaccagggtgtgctgctgggacgc
tgggacaacaattacaaggatggcgtcagccccatgttctggatcggcagtgtggacatc
ctgaggcgctggaagacctcgggctgtcagcgtgtcaagtacggccagtgctgggtcttc
gctgctgtggcctgcacagtgctgcggtgccttggcatccccacccgagtggtgaccaac
tttaactcggcccatgaccagaacagcaacctgctcatcgagtatgtctatgacaagttt
ggggagatccagagagacaaaagcgagatgatctggaactaccactgttgggcagagtca
tggatgagcaggccggacctgcagcagggctacgacgggtggcaggccctggaccccacg
ccccaggagaagagtgaagggacgtactgctgtggcccggttccggttcgcgccatcaag
gagggcgacctgagcaccaagtacgatgcaccttttgtctttgctgaggtcaatgccgac
gtggtgaactggatcgtgcaggaggatgggtccatgtgcaagtccaccaacaactcccag
accgtggggatgaagatcagcacaaaaagcgtgggccgtgatgagcgggaggacatcacc
cacacctacaagtacccggaggggtctccggaggagagagaagccttcaaaagggccaac
cacctgaacaagctgactgataaagtggagacgggggtggccatgcggatccgcgtggcc
cagagcatgagcatgggtagtgactttgacgtctttgcctacatcaccaacaatacggcc
gagagcctcacctgccgcctcctgctgctcgcccgcaccgtcagctacaacggggtcctg
gggcccgagtgtggcaccaaggacctgctcaatctttccctggagcccttctccgagaag
agcattccccttcgaatcctctatgagaagtactgtgagtgtctgaccgagtcgaacctt
atcaaggtgcggggcctcctcatggagccggccgccaacaactacctgctggccgagagg
gacatctatctggagaacccagaaatcaagatccggatcctgggagagcccaagcagaac
cgcaagctggtggctgaggcgtccctgcggaaccccctcaccatgcccctgttaggctgc
accttcaccatggagggggctggcctgactgaggagcagaagatcatggacgtcccggac
cccgtggaggcgggggaggaggtcaaggtgagagtggacctgcggccatgccacgtgggc
cgccataagctggtggtgaattttgagagcgacaagctgaaggccgtgaaaggcttcagg
aacatcatcattggtcctgcctga

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