Alligator sinensis (Chinese alligator): 102370706
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Entry
102370706 CDS
T02922
Symbol
ADORA2A
Name
(RefSeq) adenosine receptor A2a
KO
K04266
adenosine receptor A2a
Organism
asn
Alligator sinensis (Chinese alligator)
Pathway
asn04020
Calcium signaling pathway
asn04080
Neuroactive ligand-receptor interaction
asn04082
Neuroactive ligand signaling
asn04270
Vascular smooth muscle contraction
Brite
KEGG Orthology (KO) [BR:
asn00001
]
09130 Environmental Information Processing
09132 Signal transduction
04020 Calcium signaling pathway
102370706 (ADORA2A)
09133 Signaling molecules and interaction
04080 Neuroactive ligand-receptor interaction
102370706 (ADORA2A)
04082 Neuroactive ligand signaling
102370706 (ADORA2A)
09150 Organismal Systems
09153 Circulatory system
04270 Vascular smooth muscle contraction
102370706 (ADORA2A)
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
04030 G protein-coupled receptors [BR:
asn04030
]
102370706 (ADORA2A)
G protein-coupled receptors [BR:
asn04030
]
Rhodopsin family
Base and nucleoside
Adenosine
102370706 (ADORA2A)
BRITE hierarchy
SSDB
Ortholog
Paralog
GFIT
Motif
Pfam:
7tm_1
7TM_GPCR_Srsx
7tm_4
GPR_Gpa2_C
7TM_GPCR_Srx
Motif
Other DBs
NCBI-GeneID:
102370706
NCBI-ProteinID:
XP_006019985
UniProt:
A0A1U7RH71
LinkDB
All DBs
Position
Unknown
AA seq
436 aa
AA seq
DB search
MLVHGNKDFLADVVYIILELVIAVLAILGNVLVCWAVYLNSNLQNVTNYFVVSLAAADIA
VGVLAIPFAITISTGFCAFFYGCLFIACFVLVLTQSSIFSLLAIAIDRIIAIRIPLRYNG
LVTGSRAKGIIAICWVLSFIIGLTPMLGWNKCSQSKGQDTNNSSPNNCSNRMVACLFETV
VTMEYMVYYNFFACVLLPLLIMFGIYLKIFMAARRQLKQMENKMVHGERSRSTLQKEVHA
AKSLAIIVGLFAICWLPLHIINCFTLFCPGCTRAPLWLMYVAIILSHANSVVNPLIYAYR
IREFRHTFRKIISQHILGRKEQFKTGTASSRTSTHGGDGENASIRISEYALNVYTNGEIH
RDPEKQDLSKCKAGLEWHQNGSALDMETNGHIPHSCKNGDLSEACKNMELLSEELIETSV
SYSDLESSTFAAADVS
NT seq
1311 nt
NT seq
+upstream
nt +downstream
nt
atgctagtacatgggaataaagacttccttgcggatgtagtttacatcatcctggaactg
gtcattgccgtgctggccatcttggggaatgtcctggtctgctgggccgtctatctgaat
agcaacctccagaatgtcaccaactactttgtggtgtccttagctgcagccgacattgca
gtgggcgtgctggccatcccctttgccatcaccatcagcactggcttctgtgccttcttc
tatggatgcctcttcattgcctgctttgtcctggttttgactcagagttccatcttcagc
ctcctggctattgccattgacaggatcattgctatccggatacccctcaggtacaatggt
ttggtgactggctcacgtgccaagggtatcattgccatctgctgggtcttgtccttcatc
attggcctgacacccatgctgggctggaacaaatgttcccagagtaaaggtcaggatacc
aataactcgtctccaaacaactgtagcaacaggatggtggcttgtctctttgagactgtg
gtcaccatggaatacatggtctactacaacttttttgcctgcgtgttgttgcccctcctc
atcatgtttggcatctatttaaaaatcttcatggcagcccggcggcagctgaagcagatg
gagaacaagatggtgcatggggaacgctcacggtccactttgcagaaggaggtccatgca
gccaagtctttagccatcattgttggactttttgccatctgctggcttccactccacatt
ataaactgcttcactcttttttgcccaggttgtacccgtgctcccctctggctgatgtac
gtggccattatcttgtcccatgccaactccgtagtgaacccgttgatctatgcctatcgg
atccgggagttccgacacaccttccggaaaattatcagtcagcatatcctgggtaggaag
gagcagtttaagaccggtactgccagctctcggacttcaactcatggtggggatggggag
aatgccagcataaggatcagtgaatatgccctgaatgtatacaccaatggggagatccac
agagaccctgaaaagcaggacctgagcaaatgcaaggcaggtttggaatggcaccagaat
gggagtgcattggacatggaaacaaatgggcatatcccacattcttgcaaaaacggggac
ctctcagaggcatgtaagaacatggagctgcttagtgaagagctgattgagacatccgtc
tcttactctgatctggagagttcaacctttgcagcagctgatgtttcctga
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