Salmo trutta (river trout): 115160789
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Entry
115160789 CDS
T08542
Symbol
pde11a
Name
(RefSeq) dual 3',5'-cyclic-AMP and -GMP phosphodiesterase 11A
KO
K13298
dual 3',5'-cyclic-AMP and -GMP phosphodiesterase 11 [EC:
3.1.4.17
3.1.4.35
]
Organism
stru
Salmo trutta (river trout)
Pathway
stru00230
Purine metabolism
stru01100
Metabolic pathways
Brite
KEGG Orthology (KO) [BR:
stru00001
]
09100 Metabolism
09104 Nucleotide metabolism
00230 Purine metabolism
115160789 (pde11a)
Enzymes [BR:
stru01000
]
3. Hydrolases
3.1 Acting on ester bonds
3.1.4 Phosphoric-diester hydrolases
3.1.4.17 3',5'-cyclic-nucleotide phosphodiesterase
115160789 (pde11a)
3.1.4.35 3',5'-cyclic-GMP phosphodiesterase
115160789 (pde11a)
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Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
PDEase_I
GAF
GAF_2
GAF_3
HD-CE
DUF899
Motif
Other DBs
NCBI-GeneID:
115160789
NCBI-ProteinID:
XP_029567055
Ensembl:
ENSSTUG00000044546
LinkDB
All DBs
Position
24:complement(15481243..15535543)
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AA seq
685 aa
AA seq
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MSNSDEVQVPWGKGIIGYVAEHGETVNIPDAYQDRRFSDEIDKLSGYKTKSLLCMPIHNS
DGEIIGVAQAINKSPGGALFTQDDEKVLQMYLPFCGIAITNAQLFAASRKEYDRSRSLLE
VVNDLFEEQTDLEKIVRKIMYRAQTLLKCERCSVQLLEDIESPVVKFTKSFELLSPKCSA
DIESSFKDSMEKSSYSDWLINNSIAELVASTGLPVNISDAYQDPRFDAEADQFSGFHIRS
VLCVPIWNSNHQIIGVAQVLNRLDGNQFDDADQRLFEAFVIFCGLGINNTIMYDQVKKSW
AKQSVALDVLSYHATCSKTEVDKFKAANIPLVCELGIDQLSFDDFSLDVDAMITAALRMF
MELGMVQKFKIDYETLCRWLLTVRKNYRMVLYHNWRHAFNVCQCMFAILTTAGFQETLTE
IEILALIVGCVCHDLDHRGTNNAFQAKTGSALSLLYGTSATLEHHHFNHAVMILQSEGHN
IFSNLSSREYGDLMQLLKQSILATDLTLYFENRNTFFELVNKGEYNWNVKGHRDMCRSML
MTACDLGAVTKPWEISRKVAELVTSEFFEQGDRERSELKLTPSAIFDRNRKDELPGLQLE
WIDGICAPLYETLVKINPKLQPMVDLIQANRAKWEELNKERQRSQSESKPTSHCSSDTTE
TRTRSLGDTPCNTPCCAGDPPKPAS
NT seq
2058 nt
NT seq
+upstream
nt +downstream
nt
atgagcaactcggatgaagttcaggttccttggggaaagggaatcattggatatgttgct
gagcatggagagacagtcaatatcccagatgcctatcaggaccgtcgtttcagtgatgag
attgacaagctgtcaggatacaagaccaagtccctcctctgtatgcccattcacaacagt
gatggggagatcattggagtagcccaggccatcaacaagagtccaggaggggctctcttc
actcaagacgatgagaaggtgctgcagatgtacctgcccttttgtgggattgccatcacc
aacgcacagctctttgctgcctccagaaaagagtatgacaggagtcggtcgctcctggag
gtggtcaacgacctgtttgaggagcagacagacctggagaagatcgtgaggaagattatg
taccgcgcccagactctgctcaagtgtgagcgctgctctgtccaactgttggaggacatt
gagtcaccggtggtgaaattcaccaagtcgttcgaactgctgtcccccaaatgcagtgca
gacatagaaagcagttttaaagacagcatggagaagtcctcctactctgattggctcatc
aacaacagtatagcagagttggtagcgtccactggtctgcccgtcaacatcagtgatgcc
taccaggatcctcggtttgacgcagaggcagatcagttctccggcttccacattcgttca
gtgctttgtgtacctatttggaacagcaaccatcaaatcattggtgtggctcaggtgctc
aacaggctggatggtaaccagtttgatgatgcagaccagagactgttcgaggcctttgtg
atcttctgtggccttggcatcaacaacaccatcatgtacgaccaggtgaagaagtcctgg
gccaaacagtccgtggctctcgacgtcctgtcataccatgcaacctgttccaagacggag
gtcgacaaattcaaggctgctaacatcccccttgtttgcgagcttggcatcgatcagctt
tcctttgatgatttctctctggatgtggacgccatgataaccgcagccctcaggatgttt
atggagctgggcatggtgcagaagttcaagatcgactacgagactctgtgcagatggcta
ctgacggtcaggaagaactaccgcatggtgctgtaccacaactggaggcatgccttcaac
gtctgccagtgcatgttcgccatactaacgacggcaggcttccaagagaccctgacggag
attgagatcctggctcttatagtgggctgtgtctgtcacgacctggaccacagaggaacc
aacaacgccttccaggccaagacaggttcagccttgtctctgttgtatggaacctcagct
actctcgagcatcaccacttcaaccacgctgttatgatcctgcagagtgagggacacaac
atcttctccaacctgtcgtccagagagtacggagacctcatgcagctgttgaaacagtcc
atcctggccactgacctcactctatacttcgagaacagaaacacattttttgagctggtc
aacaaaggcgaatacaactggaacgtgaaaggccacagagacatgtgtaggtccatgttg
atgacagcgtgtgacttgggggccgtcaccaaaccctgggaaatatcacgcaaggtggca
gaactggtcaccagtgagttttttgagcagggggacagagagagatctgaactgaagctc
accccgtctgccatttttgatcgaaaccggaaggacgagttgccggggctgcagctggag
tggatcgatgggatctgtgctccgctttatgagacattggtgaaaataaaccccaagctc
cagccaatggttgacttgatccaggctaacagggccaagtgggaggagctgaacaaagag
agacaacgcagccagagtgagtccaaacccacaagccattgcagcagtgacaccacagaa
acaagaactcgttctttgggcgacacaccttgcaacacaccttgctgtgcaggtgaccct
cccaaaccggcaagctag
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