KEGG   Homo sapiens (human): 115Help
Entry
115               CDS       T01001                                 

Gene name
ADCY9, AC9
Definition
adenylate cyclase 9 (EC:4.6.1.1)
Orthology
K08049  
adenylate cyclase 9 [EC:4.6.1.1]
Organism
hsa  Homo sapiens (human)
Pathway
Purine metabolism
Rap1 signaling pathway
Calcium signaling pathway
Chemokine signaling pathway
Oocyte meiosis
Adrenergic signaling in cardiomyocytes
Vascular smooth muscle contraction
Gap junction
Circadian entrainment
Retrograde endocannabinoid signaling
Glutamatergic synapse
Cholinergic synapse
GABAergic synapse
Inflammatory mediator regulation of TRP channels
Insulin secretion
GnRH signaling pathway
Ovarian steroidogenesis
Progesterone-mediated oocyte maturation
Estrogen signaling pathway
Melanogenesis
Thyroid hormone synthesis
Oxytocin signaling pathway
Endocrine and other factor-regulated calcium reabsorption
Vasopressin-regulated water reabsorption
Salivary secretion
Gastric acid secretion
Pancreatic secretion
Bile secretion
Morphine addiction
Vibrio cholerae infection
HTLV-I infection
Dilated cardiomyopathy
Drug target
Other: 
Class
Metabolism; Nucleotide metabolism; Purine metabolism [PATH:hsa00230]
Environmental Information Processing; Signal transduction; Rap1 signaling pathway [PATH:hsa04015]
Environmental Information Processing; Signal transduction; Calcium signaling pathway [PATH:hsa04020]
Cellular Processes; Cell growth and death; Oocyte meiosis [PATH:hsa04114]
Cellular Processes; Cell communication; Gap junction [PATH:hsa04540]
Organismal Systems; Immune system; Chemokine signaling pathway [PATH:hsa04062]
Organismal Systems; Endocrine system; Insulin secretion [PATH:hsa04911]
Organismal Systems; Endocrine system; GnRH signaling pathway [PATH:hsa04912]
Organismal Systems; Endocrine system; Ovarian Steroidogenesis [PATH:hsa04913]
Organismal Systems; Endocrine system; Estrogen signaling pathway [PATH:hsa04915]
Organismal Systems; Endocrine system; Progesterone-mediated oocyte maturation [PATH:hsa04914]
Organismal Systems; Endocrine system; Oxytocin signaling pathway [PATH:hsa04921]
Organismal Systems; Endocrine system; Thyroid hormone synthesis [PATH:hsa04918]
Organismal Systems; Endocrine system; Melanogenesis [PATH:hsa04916]
Organismal Systems; Circulatory system; Adrenergic signaling in cardiomyocytes [PATH:hsa04261]
Organismal Systems; Circulatory system; Vascular smooth muscle contraction [PATH:hsa04270]
Organismal Systems; Digestive system; Salivary secretion [PATH:hsa04970]
Organismal Systems; Digestive system; Gastric acid secretion [PATH:hsa04971]
Organismal Systems; Digestive system; Pancreatic secretion [PATH:hsa04972]
Organismal Systems; Digestive system; Bile secretion [PATH:hsa04976]
Organismal Systems; Excretory system; Vasopressin-regulated water reabsorption [PATH:hsa04962]
Organismal Systems; Excretory system; Endocrine and other factor-regulated calcium reabsorption [PATH:hsa04961]
Organismal Systems; Nervous system; Glutamatergic synapse [PATH:hsa04724]
Organismal Systems; Nervous system; GABAergic synapse [PATH:hsa04727]
Organismal Systems; Nervous system; Cholinergic synapse [PATH:hsa04725]
Organismal Systems; Nervous system; Retrograde endocannabinoid signaling [PATH:hsa04723]
Organismal Systems; Sensory system; Inflammatory mediator regulation of TRP channels [PATH:hsa04750]
Organismal Systems; Environmental adaptation; Circadian entrainment [PATH:hsa04713]
Human Diseases; Substance dependence; Morphine addiction [PATH:hsa05032]
Human Diseases; Cardiovascular diseases; Dilated cardiomyopathy (DCM) [PATH:hsa05414]
Human Diseases; Infectious diseases; Vibrio cholerae infection [PATH:hsa05110]
Human Diseases; Infectious diseases; HTLV-I infection [PATH:hsa05166]
BRITE hierarchy
SSDB OrthologParalogGFIT
Motif Motif
Other DBs
NCBI-GI: 
NCBI-GeneID: 
OMIM: 
HGNC: 
HPRD: 
Ensembl: 
Vega: 
UniProt: 
Position
16p13.3
AA seq 1353 aa AA seqDB search
MASPPHQQLLHHHSTEVSCDSSGDSNSVRVKINPKQLSSNSHPKHCKYSISSSCSSSGDS
GGVPRRVGGGGRLRRQKKLPQLFERASSRWWDPKFDSVNLEEACLERCFPQTQRRFRYAL
FYIGFACLLWSIYFAVHMRSRLIVMVAPALCFLLVCVGFFLFTFTKLYARHYAWTSLALT
LLVFALTLAAQFQVLTPVSGRGDSSNLTATARPTDTCLSQVGSFSMCIEVLFLLYTVMHL
PLYLSLCLGVAYSVLFETFGYHFRDEACFPSPGAGALHWELLSRGLLHGCIHAIGVHLFV
MSQVRSRSTFLKVGQSIMHGKDLEVEKALKERMIHSVMPRIIADDLMKQGDEESENSVKR
HATSSPKNRKKKSSIQKAPIAFRPFKMQQIEEVSILFADIVGFTKMSANKSAHALVGLLN
DLFGRFDRLCEETKCEKISTLGDCYYCVAGCPEPRADHAYCCIEMGLGMIKAIEQFCQEK
KEMVNMRVGVHTGTVLCGILGMRRFKFDVWSNDVNLANLMEQLGVAGKVHISEATAKYLD
DRYEMEDGKVIERLGQSVVADQLKGLKTYLISGQRAKESRCSCAEALLSGFEVIDGSQVS
SGPRGQGTASSGNVSDLAQTVKTFDNLKTCPSCGITFAPKSEAGAEGGAPQNGCQDEHKN
STKASGGPNPKTQNGLLSPPQEEKLTNSQTSLCEILQEKGRWAGVSLDQSALLPLRFKNI
REKTDAHFVDVIKEDSLMKDYFFKPPINQFSLNFLDQELERSYRTSYQEEVIKNSPVKTF
ASPTFSSLLDVFLSTTVFLTLSTTCFLKYEAATVPPPPAALAVFSAALLLEVLSLAVSIR
MVFFLEDVMACTKRLLEWIAGWLPRHCIGAILVSLPALAVYSHVTSEYETNIHFPVFTGS
AALIAVVHYCNFCQLSSWMRSSLATVVGAGPLLLLYVSLCPDSSVLTSPLDAVQNFSSER
NPCNSSVPRDLRRPASLIGQEVVLVFFLLLLLVWFLNREFEVSYRLHYHGDVEADLHRTK
IQSMRDQADWLLRNIIPYHVAEQLKVSQTYSKNHDSGGVIFASIVNFSEFYEENYEGGKE
CYRVLNELIGDFDELLSKPDYSSIEKIKTIGATYMAASGLNTAQAQDGSHPQEHLQILFE
FAKEMMRVVDDFNNNMLWFNFKLRVGFNHGPLTAGVIGTTKLLYDIWGDTVNIASRMDTT
GVECRIQVSEESYRVLSKMGYDFDYRGTVNVKGKGQMKTYLYPKCTDHRVIPQHQLSISP
DIRVQVDGSIGRSPTDEIANLVPSVQYVDKTSLGSDSSTQAKDAHLSPKRPWKEPVKAEE
RGRFGKAIEKDDCDETGIEEANELTKLNVSKSV
NT seq 4062 nt NT seq  +upstreamnt  +downstreamnt
atggcttccccaccccaccagcagctgctgcatcaccacagcaccgaggtgagctgcgac
tccagcggggacagcaacagcgtgcgcgtcaagatcaaccccaagcagctgtcctccaac
agccaccccaagcactgcaaatacagcatctcctctagctgcagcagctctggggactcc
gggggcgtcccccggcgagtgggcggcggaggccggctgcgcaggcagaagaagctgccc
cagctgttcgagagggcctccagccgctggtgggaccccaagttcgactcggtgaacctg
gaggaggcctgcctggagcgctgcttcccgcagacccagcgccggttccggtatgcgctc
ttctacatcggcttcgcctgccttctgtggagcatctattttgcggtccacatgagatcc
agactgatcgtcatggtcgcccccgcgctgtgcttcctcctggtgtgtgtgggcttcttt
ctgtttaccttcaccaagctgtacgcccggcattacgcgtggacctcgctggctctcacc
ctgctggtgttcgccctgaccctggctgcgcagttccaggtcttgacgcctgtctcagga
cgcggcgacagctccaaccttacggccacagcccggcccacagatacttgcttatctcaa
gtggggagcttctccatgtgcatcgaagtgctctttttgctctataccgtcatgcactta
cctttgtacctgagtttgtgtctgggggtggcctactctgtccttttcgagacctttggc
taccatttccgggatgaagcctgcttcccctcgcccggagccggggccctgcactgggag
ctgctgagcagggggctgctccacggctgcatccacgccatcggggtccacctgttcgtc
atgtcccaggtgaggtccaggagcaccttcctcaaggtggggcaatccattatgcacggg
aaggacctggaagtggaaaaagccctcaaagagaggatgattcattccgtgatgccaaga
atcatagccgatgacttaatgaagcagggagatgaggagagtgagaattctgtcaagagg
catgccacctcgagccccaagaacaggaagaaaaagtcttccatccaaaaagctcctata
gccttccgcccttttaagatgcagcagatcgaagaagtcagtattttatttgcagatatc
gtgggcttcaccaagatgagtgccaacaagtctgcccacgccctggtgggtctcctgaac
gatctgttcggtcgcttcgaccgcctgtgtgaggagaccaagtgtgagaaaatcagcacc
ctgggagactgttactactgcgtggcgggctgtcccgagccccgggccgaccatgcctac
tgctgcatcgagatgggcctgggcatgatcaaggccatcgagcagttctgccaggagaag
aaggagatggtgaacatgagagtcggggtgcacacgggcaccgtcctttgcggcatcctg
ggcatgaggaggtttaaatttgacgtgtggtccaacgatgtgaacctggccaatctcatg
gagcagctgggagtggccggcaaagttcacatttctgaggccaccgcaaaatacttagat
gaccggtacgaaatggaagatgggaaagttattgaacggctgggccagagcgtggttgct
gaccagttgaaaggtttgaagacatacctgatatcgggtcagagagccaaggagtctcgc
tgcagctgtgcagaggccttgctttctggctttgaggtcattgacggctcacaggtgtcc
tcaggccctaggggacaggggacagcgtcatcagggaatgtcagtgacttggcgcagact
gtcaaaacctttgataaccttaagacctgcccttcgtgcggaatcacatttgctcccaaa
tctgaagccggcgccgagggaggagcacctcaaaacggctgccaagacgagcataaaaac
agcaccaaggcttctggaggacctaatcccaaaactcagaacgggctcctcagccctccc
caagaggagaagctcaccaacagtcagacttctctgtgtgagatcttgcaggagaaggga
aggtgggcaggggtgagcctggaccagtcggctctccttccgctgaggttcaagaacatc
cgggagaaaacggacgcccactttgtggacgttatcaaagaagacagcctgatgaaagat
tacttttttaagccgcccattaatcagttcagcctgaacttcctggatcaggagctggag
cgatcctacaggaccagctatcaggaagaggtcataaagaactcccccgtgaagacgttt
gctagtcccaccttcagctccctcctggatgtgtttctgtcgaccacagtgtttctgacg
ctgtccaccacctgcttcctgaagtacgaggcggccaccgtgcctcccccgcccgccgcc
ctggcggtcttcagtgcagccctgctgctggaggtgctgtccctcgcggtgtccatcagg
atggtgttcttcctggaggacgtcatggcctgcaccaagcgcctgctggagtggatcgcc
ggctggctaccacgtcactgcatcggggccatcctggtgtcgcttcccgcactggccgtc
tactcccatgtcacctccgaatatgagaccaacatacacttcccagtgttcacaggctcg
gccgcgctgattgccgtcgtgcactactgtaacttctgccagctcagctcctggatgagg
tcctccctcgccaccgtcgtgggggccgggccgctgctcctgctctacgtctccctgtgc
ccagacagttctgtattaacttcgccccttgacgcagtacagaatttcagttccgagagg
aacccgtgcaatagttcggtgccgcgtgacctccggcggcccgccagcctcatcggccag
gaggtggttctcgtcttctttctcctgctcttgttggtctggttcctgaatcgcgaattt
gaagtcagctaccgcctccactaccacggagacgtggaagcggatcttcaccgcaccaag
atccagagcatgcgggaccaggcagactggctgctgaggaacatcatcccctaccacgtg
gctgagcagctgaaggtgtcccagacctactccaagaaccatgacagcggaggggtgatc
ttcgccagcatcgtcaacttcagcgagttctacgaggagaactacgagggcggcaaggag
tgctaccgggtcctcaacgagctcatcggggactttgacgagctcctaagcaagccggac
tacagcagcatcgagaagatcaagaccatcggagccacgtacatggcggcgtcagggctg
aacaccgcgcaggcccaggacggcagccacccgcaggagcacctgcagatcctgttcgag
ttcgccaaggagatgatgcgcgtggtggacgacttcaacaacaacatgctgtggttcaac
ttcaagctccgcgtcggcttcaaccatgggcccctcacggccggggtcatcggcaccacc
aagctgctgtacgacatctggggagacaccgtcaacatcgccagcaggatggacaccacc
ggcgtggagtgccgcatccaggtgagcgaagagagctaccgcgtcttgagcaagatgggc
tatgacttcgactacagagggaccgtgaatgtcaaggggaaaggccagatgaagacctac
ctgtacccaaagtgcacggatcacagggtcatcccacagcaccagctgtccatctcccca
gacatccgcgtccaggtggatggcagcatcggacggtctcccacagacgagattgccaac
ctggtgccttctgtccagtatgtggacaagacatctctgggttctgacagcagcacgcag
gccaaggatgcccacctgtcccccaagagaccgtggaaggagcccgtcaaagccgaagaa
aggggtcgatttggcaaagccatagagaaagacgactgtgacgaaacaggaatagaagaa
gccaacgaactcaccaagctcaacgtttcaaagagtgtgtga

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