KEGG   Alligator mississippiensis (American alligator): 102558956
Entry
102558956         CDS       T03087                                 

Gene name
ADCY4
Definition
(RefSeq) adenylate cyclase 4
  KO
K08044  adenylate cyclase 4 [EC:4.6.1.1]
Organism
amj  Alligator mississippiensis (American alligator)
Pathway
amj00230  Purine metabolism
amj01100  Metabolic pathways
amj04020  Calcium signaling pathway
amj04114  Oocyte meiosis
amj04261  Adrenergic signaling in cardiomyocytes
amj04270  Vascular smooth muscle contraction
amj04371  Apelin signaling pathway
amj04540  Gap junction
amj04912  GnRH signaling pathway
amj04914  Progesterone-mediated oocyte maturation
amj04916  Melanogenesis
Brite
KEGG Orthology (KO) [BR:amj00001]
 09100 Metabolism
  09104 Nucleotide metabolism
   00230 Purine metabolism
    102558956 (ADCY4)
 09130 Environmental Information Processing
  09132 Signal transduction
   04371 Apelin signaling pathway
    102558956 (ADCY4)
   04020 Calcium signaling pathway
    102558956 (ADCY4)
 09140 Cellular Processes
  09143 Cell growth and death
   04114 Oocyte meiosis
    102558956 (ADCY4)
  09144 Cellular community - eukaryotes
   04540 Gap junction
    102558956 (ADCY4)
 09150 Organismal Systems
  09152 Endocrine system
   04912 GnRH signaling pathway
    102558956 (ADCY4)
   04914 Progesterone-mediated oocyte maturation
    102558956 (ADCY4)
   04916 Melanogenesis
    102558956 (ADCY4)
  09153 Circulatory system
   04261 Adrenergic signaling in cardiomyocytes
    102558956 (ADCY4)
   04270 Vascular smooth muscle contraction
    102558956 (ADCY4)
Enzymes [BR:amj01000]
 4. Lyases
  4.6  Phosphorus-oxygen lyases
   4.6.1  Phosphorus-oxygen lyases (only sub-subclass identified to date)
    4.6.1.1  adenylate cyclase
     102558956 (ADCY4)
SSDB
Motif
Pfam: Guanylate_cyc DUF1053 AC_N HNOBA CD52
Other DBs
NCBI-GeneID: 102558956
NCBI-ProteinID: XP_014462523
Position
Un
AA seq 1085 aa
MPCRQRPPASEPPRQELSYESYYSLSQLYPLLLLLLLLVLSTCLALAATAIATGRDLASD
LSFFVTLFVALAAFSLVLILACIESIFQRCTRVFSAVIWAGLLTMGHVFVFTGGVVSAWD
QVAFFLFIVFIVYTMLPIGMQEAVGAGLASSLSHLLIVGAYLSARQGWEMELALQLLANA
VIFLCGNVVGAYHKHLMEVALRETFHETFNLIQSRVKLESEKRHQDHLLLSILPAYIAME
MKAEIIERLRDGGQVPRRHESANNFHSLYVKHHKNVSILYADIVGFTRLASELSPKELVL
MLNELFGKFDQIAKDNECMRIKILGDCYYCVSGLPVSLPNHARNCVKMGLDMCRAIKKLR
DATGVDINMRVGVHSGNVLCGVIGLQKWQYDVWSHDVTLANHMEAGGVPGRVHITKATLS
HLGGVYAVEEVCHWQRDAYLKENKVKTYLVIDPWAEEEEEEGGEDTLSPMPGEGLKMSPS
VRMTRYLESWGAAKPFANLKHLDVIPAEERGFIRSNHSEISLGSLNQSRTLERVCSPKGP
EEELARVDEKFFQLIEQLSSPKQWKKSEDFNHITLYFKEKSIEKEYRLSALPAFKYYTAC
TFLVFLSNFFIQMLVAYKTPALGISYGISFFLFLLLLLTCFAGNLARCFLKGPKLLYWVP
SISTAVCTQPWLRITLGITTILVVLIMAVLNLFFLPTPWCPPQSPNCTLPFSTCQGHGSN
DSLFSIPYSIYCCILGFLSCSLFLHMNFELKLLMLLLCLVVYSALFLRTHGWLSDCYIAH
LYADQTALRPGVLKEPKLMGAISFFVFFFTLLALARQNEYYCRLDFLWKKKFKKEREEIE
TMENLNRVLLENVLPADVAQQFIGQNRRNEDLYHQSYDCVCVLFASIPDFKEFYSESNVN
REGLECLRLLNEIIADFDELLSKPKFSGVEKIKTIGSTYMAATGLNATYGQDNQQDAERS
YSHLGIMVEFAVALIAKLDIINKHSFNNFKLRVGMNHGPVVAGVIGAQKPQYDIWGNTVN
VASRMESTGVLGKIQVTEETSRALETLGYTCYLRGVIKVKGKGQLCTYFVCTDLSRSSPQ
APMLS
NT seq 3258 nt   +upstreamnt  +downstreamnt
atgccctgtcgccagcgccccccagccagcgagcccccacgccaggagctgtcctacgag
agctactacagcctgagccagctgtacccactgctgctgctgctgctgctcctcgtgctc
agcacctgcctggcacttgctgccactgccatcgccactggaagggatctcgcctctgac
ctaagctttttcgtcaccttgtttgtggccctggctgcattttctcttgtcctcatcctc
gcctgcattgagagcatcttccagagatgcacccgggtcttttctgctgtcatctgggct
ggactccttaccatgggccatgtcttcgtgtttacaggtggtgtggttagtgcttgggac
caggttgccttcttcctcttcattgtttttatcgtctacaccatgctgcccattggcatg
caggaagcagtgggtgctggtttggcctcttctctctcccacctcctcatcgtgggggcc
tacctgtcggccaggcagggctgggaaatggagctggccctgcagctcctggccaatgca
gtgatcttcctgtgtgggaatgtggtgggagcctatcacaagcacctgatggaggtagcc
ctgcgggagaccttccacgagaccttcaacctcatccagtcccgggtcaagctggagtct
gagaagcgacaccaggaccatctccttctctcaatcctgcctgcctacatcgccatggag
atgaaggctgaaatcatcgagcgcctccgagatggggggcaggtgccacggagacatgag
agtgctaacaacttccacagcctctatgtcaaacaccacaagaacgtcagtatcctctat
gctgacatcgtgggattcactcgcctggccagtgagctgtcccccaaggagctggtgttg
atgctgaatgagctctttggcaaatttgaccagattgccaaggacaatgagtgcatgcgc
atcaagatcttgggtgactgctactactgtgtctccgggctccccgtttcactgcccaac
cacgcccgtaactgtgtcaagatgggtctggacatgtgtcgggctatcaagaagctccgg
gatgccactggggtggacatcaacatgagggttggggtgcactctggaaatgtactgtgc
ggggtgatcgggctccagaagtggcagtatgatgtttggtcccatgatgtgaccctggcc
aatcacatggaggctggaggagtaccagggagggtgcatataaccaaggccactttgtcc
cacctgggaggagtctatgctgtggaggaagtctgtcactggcaacgtgacgcttacctg
aaggagaacaaagtgaagacctacctggtcatcgacccctgggcagaggaagaggaagag
gaaggaggagaggacactctctctcccatgcctggggagggcctcaagatgagcccatca
gtccgcatgacccgttacctggaatcctggggagctgccaagcccttcgccaatctcaaa
caccttgatgtcatcccagctgaggagcggggcttcatcaggagcaaccactcggaaatc
tccctggggtctctgaaccagtcaaggaccctcgagcgggtttgctccccgaaggggcct
gaggaggagcttgcccgagtggatgaaaagttcttccagctgattgaacagctcagctca
cccaagcagtggaagaagtcagaggattttaaccacattaccctgtacttcaaggaaaaa
tccattgagaaggagtatcgactctctgccttgcctgccttcaagtattacacagcctgc
accttcctcgtcttcctctccaacttcttcatccagatgcttgtggcctacaagacccca
gctctgggcatctcctatggaatctccttcttcctcttccttctcctcctcctcacttgt
ttcgctggaaacttggcaaggtgcttcctgaaaggcccaaagctgctgtactgggtgccc
tctatctccactgcggtctgcacccagccctggctccgaatcacccttggcatcaccacc
atcctcgttgtcctcattatggctgtactcaacttgttctttttgcccactccctggtgt
cctcctcagtcccccaactgcacattaccattcagcacttgtcaagggcatggatccaat
gactccctgttcagcatcccgtactctatttactgctgcattttgggcttcctctcctgt
tccctcttcctccacatgaactttgaactcaagctcttgatgcttctgctgtgtctagtg
gtctacagtgccctcttcctccggacccacggctggctgtctgactgctacattgctcac
ctctacgccgaccagacagcactcaggccaggggtcctgaaggaacccaagctgatggga
gccatctccttctttgtcttcttcttcaccctgctggccctggctagacaaaatgagtat
tattgccgccttgacttcctctggaagaagaagtttaagaaggagcgtgaggaaatcgag
accatggaaaacctcaaccgtgtcctactggagaatgttctcccagctgatgtggcccag
cagttcattggccaaaatcgccgtaatgaggacttgtaccaccagtcttatgattgtgtc
tgcgtcctctttgcctccatccctgacttcaaggagttctactctgagtccaacgtcaac
cgtgaagggctggagtgtctgcgtctgctcaacgagattattgcagacttcgatgagctg
ctctcgaagccaaagttcagtggtgtggagaagatcaagaccatcggtagcacctacatg
gcagctacagggttaaatgccacctatggccaagacaaccagcaggatgctgaaaggagc
tacagtcatcttggaatcatggtggagtttgcagtagctcttatagccaagttggacatc
atcaacaaacactccttcaacaacttcaagcttcgtgtggggatgaatcatggcccagtg
gtggcaggggtcattggagcccagaaacctcaatacgacatttggggcaacacagtgaat
gtagcaagccgcatggagagtaccggggtgctgggcaagatccaggtcacagaagagacc
tccagagccttggagacgctcggttatacctgctacctccgtggggtcattaaggtgaag
ggtaaaggtcagctgtgtacctactttgtctgtactgacctctctcggtccagcccacag
gcccccatgctgagctga

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