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KEGG   Monodelphis domestica (gray short-tailed opossum): 100029653
Entry
100029653         CDS       T01031                                 
Symbol
ADORA2A
Name
(RefSeq) adenosine A2a receptor
  KO
K04266  adenosine receptor A2a
Organism
mdo  Monodelphis domestica (gray short-tailed opossum)
Pathway
mdo04015  Rap1 signaling pathway
mdo04020  Calcium signaling pathway
mdo04024  cAMP signaling pathway
mdo04080  Neuroactive ligand-receptor interaction
mdo04270  Vascular smooth muscle contraction
mdo05012  Parkinson disease
mdo05034  Alcoholism
Brite
KEGG Orthology (KO) [BR:mdo00001]
 09130 Environmental Information Processing
  09132 Signal transduction
   04015 Rap1 signaling pathway
    100029653 (ADORA2A)
   04024 cAMP signaling pathway
    100029653 (ADORA2A)
  09133 Signaling molecules and interaction
   04080 Neuroactive ligand-receptor interaction
    100029653 (ADORA2A)
 09160 Human Diseases
  09164 Neurodegenerative disease
   05012 Parkinson disease
    100029653 (ADORA2A)
  09165 Substance dependence
   05034 Alcoholism
    100029653 (ADORA2A)
 09180 Brite Hierarchies
  09183 Protein families: signaling and cellular processes
   04030 G protein-coupled receptors [BR:mdo04030]
    100029653 (ADORA2A)
G protein-coupled receptors [BR:mdo04030]
 Rhodopsin family
  Base and nucleoside
   Adenosine
    100029653 (ADORA2A)
SSDB
Motif
Pfam: 7tm_1 7TM_GPCR_Srsx 7tm_4 7TM_GPCR_Srx GPR_Gpa2_C
Other DBs
NCBI-GeneID: 100029653
NCBI-ProteinID: XP_001379347
Position
Un
AA seq 330 aa
MAVSWDVVYIAVEVAIAVLAVLGNVLVCWAVFTNTNLQNVTNYFVVSLAAADIAVGLLAI
PFAISISTGFCAAFHGCLFIACFVLVLTQSSIFSLLAIAIDRYIAIRIPLRYNGLVTGAR
AKGVIAVCWVLSFVIGLTPMLGWSHCASAAGNSSEARGCGGGRVPCLFEAVVPMDYMVYY
NFLACVLLPLLLMLAIYLRIFLAARRQLQQMGGGGGGGLPASTLQKEVHAAKSLAIIVGL
FAVCWLPLHIINCFTLFCDRCPHAPPWLMYLAIVLSHTNSVVNPLIYAYRIREFRHTFRK
ILRSHRPPPELGRAGPGLALELPGVSGGRY
NT seq 993 nt   +upstreamnt  +downstreamnt
atggcggtctcctgggacgtggtctacatcgccgtggaggtggccatcgccgtgctggcg
gtcctgggcaacgtgctggtgtgctgggccgtgttcacgaacaccaacctgcagaacgtc
accaactacttcgtggtgtcgctggcggcggccgacatcgccgtggggctgctggccatc
cccttcgccatcagcatcagcaccggcttctgcgccgccttccacggctgcctgttcatc
gcctgcttcgtgctggtcctcacccagagctccatcttcagcctgctggccatcgccatc
gaccgctacatcgccatccgcatcccgctcaggtacaacgggctggtgacgggcgcccgg
gccaagggcgtcatcgcggtgtgctgggtgctgtccttcgtcatcggcctgacgcccatg
ctgggctggagccactgcgcctccgcggctggcaacagctcggaggcgcggggctgcggc
ggcgggcgcgtgccgtgcctcttcgaggccgtcgtccccatggactacatggtctactac
aacttcttggcgtgcgtgctgctgccgctgctgctcatgctggccatctacctgcgcatc
ttcctggcagcgcggcggcagctccagcagatgggcggcggcggcggcggcgggctgccc
gcgtccacgctgcagaaggaggtgcacgccgccaagtctctggccatcatcgtggggctc
ttcgccgtgtgctggctgccgctgcacatcatcaactgcttcacgctcttctgtgacagg
tgcccccacgcgccgccctggctcatgtacctggccatcgtgctctcgcacaccaactcc
gtggtgaacccgctcatctacgcctaccgcatccgcgagttccgccacaccttccgcaag
atcctccgcagccaccggccgccccccgagctgggccgggcaggccccgggctggccctg
gagctcccgggcgtctcgggggggcgctattaa

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