Syngnathoides biaculeatus (alligator pipefish): 133512415
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Entry
133512415 CDS
T09681
Symbol
pde1a
Name
(RefSeq) dual specificity calcium/calmodulin-dependent 3',5'-cyclic nucleotide phosphodiesterase 1A isoform X1
KO
K13755
calcium/calmodulin-dependent 3',5'-cyclic nucleotide phosphodiesterase [EC:
3.1.4.17
]
Organism
sbia
Syngnathoides biaculeatus (alligator pipefish)
Pathway
sbia00230
Purine metabolism
sbia01100
Metabolic pathways
sbia04020
Calcium signaling pathway
Brite
KEGG Orthology (KO) [BR:
sbia00001
]
09100 Metabolism
09104 Nucleotide metabolism
00230 Purine metabolism
133512415 (pde1a)
09130 Environmental Information Processing
09132 Signal transduction
04020 Calcium signaling pathway
133512415 (pde1a)
Enzymes [BR:
sbia01000
]
3. Hydrolases
3.1 Acting on ester bonds
3.1.4 Phosphoric-diester hydrolases
3.1.4.17 3',5'-cyclic-nucleotide phosphodiesterase
133512415 (pde1a)
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Motif
Pfam:
PDEase_I
PDEase_I_N
Motif
Other DBs
NCBI-GeneID:
133512415
NCBI-ProteinID:
XP_061698005
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Position
14:14693154..14712777
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AA seq
958 aa
AA seq
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MNFHAQEEATRLLDKELWEEQGLHEARLQEAHQREQMKVEEDMQWTGEVEEEGQQEEVQP
ADGEQEDEEEEEEEVQQAVKMEQEDQPDEMQQMVHQESKEEEEEVEEEKEEHAKEEEEDA
HQGEEMNMEKEVQEKMQWTEEEEERFLSDKVQQEEVHLIDEEQQEEAEEKVVQQVVNMEE
VEQTQEVEVQQEGEEVEKQEDEHMKEIMEQSMEEGEQEEGLHAVSKEQQDQTEEEVQQQE
EELINELPQEEEEEEVQQEETAQQMEERRMKEAQQEEVQLADRMEQEYQTEEVQEEQHVK
EMLREELQHGLEEMPQEEDNAVQQKEEQQIEEEVQKPDEEQMKEMPQEEETQTEGVRRQE
CEEEVQDFVDPVEQNHNSQVLIRLRGMQKYKNTSQRLKAVLDQMDRGVVDIQELRSNLQM
AAAMLDAVYKDETSRRLLDPEDELSDLQAESVPREVRDWLACTFSRKMGVAKRRPEEKPR
FRSIVHAVQAGIFVERMYRRTSNMVGLTYPPTALAALKNVDQWSFDVFSLHEGTGEHALK
FLVYELLTRYDLINRFRIPVPALVQFVEALENGYSKHKNPYHNLVHAADVTQTAHFLMLH
TGTMHWLSELEILAMVFAAAIHDFEHTGTTNNFHIHTRSEVAILYNDRSVLENHHVSAAY
RLMADEDTNILVNLNKDDWRELRALVIEMVMSTDMSCHFQQIKTMRNTLSQSHGVDKVKV
LSLMLHAADISHPAKTWPLHYRWTHSLMEEFFRQGDKEVELGLPFSPLCDRKATMIAQSQ
IGFIDFIVEPTFSVLVDVTEKVIGPLIDEEKKAQETGNRRPSLTGSGSVTVESVQRHSSC
RHGNRDDGQMDFSLTAIDLPALRKHLSDVINRNKDRWKELSVDELATKEQDDQEEVESKL
KSHTADQSLHSPPSALDETRNHDNHDQESPDIQPEDHTRWNGAGPGEEHEDQEVPENA
NT seq
2877 nt
NT seq
+upstream
nt +downstream
nt
atgaacttccacgcccaggaggaggccacgagactgctggacaaagagctgtgggaggag
caaggactgcatgaagcacgactgcaggaggcacaccaaagagagcagatgaaagttgag
gaagatatgcaatggactggggaagtggaggaggaggggcaacaggaggaggtacagcca
gccgatggagagcaagaggatgaagaagaagaagaagaggaggtgcaacaggctgtcaaa
atggagcaggaagatcaacctgatgagatgcagcaaatggttcaccaagaaagcaaagag
gaagaagaggaggtagaagaggagaaagaggaacacgcaaaggaggaggaggaggacgca
caccaaggagaggagatgaacatggagaaggaggtgcaggagaagatgcaatggacggag
gaggaggaggagagatttctttctgataaggtgcaacaggaggaggtacacctaattgat
gaggagcaacaggaagaggcggaagaaaaggtggtgcagcaggttgtcaacatggaggag
gtggagcaaactcaggaggtggaggttcagcaagagggtgaggaggtggagaagcaggag
gatgaacacatgaaggagattatggagcaaagcatggaggagggggaacaagaggagggc
ctgcatgctgttagtaaggagcaacaggatcaaactgaggaggaggtgcagcaacaggaa
gaggaactcataaatgagttgccgcaggaggaagaggaggaggaggtgcagcaggaagag
acagctcaacaaatggaagagcgacgaatgaaggaggcacaacaggaggaggtacagctt
gctgacaggatggagcaggagtatcaaactgaggaggtgcaggaagagcaacacgtgaag
gagatgctacgagaggagttgcagcacggactggaggagatgccgcaggaggaggataat
gctgtgcagcaaaaagaagagcaacaaatagaggaggaggtgcagaagccggatgaggaa
caaatgaaagagatgccgcaggaagaggaaacacaaacagagggggtgcggcggcaggaa
tgtgaggaggaggtgcaggactttgtggaccctgtggagcaaaaccacaacagtcaggtt
ctcattcgcctcagaggaatgcagaaatacaaaaacacatcacagaggctgaaagctgtc
ttggatcagatggatcgcggcgtggtcgacattcaggagctgcgcagtaaccttcagatg
gcggccgccatgttggatgctgtctacaaggacgagaccagcagacgtctcctggacccc
gaggacgaactgagcgacctgcaggccgagtcggtacccagggaggtccgcgattggctg
gcctgcacgttcagccgcaagatgggcgtggccaagcgccggcccgaggagaagcccaga
ttcaggagcattgtccacgccgtgcaagccgggatatttgtggagcggatgtacagacgg
acatccaacatggtcggactgacgtaccctcccacggctctcgcagctctcaagaatgtg
gaccagtggtccttcgacgtgttctcccttcacgagggcacgggcgagcacgccctcaag
ttcctggtctacgagctgctgacgcgctatgacctcatcaacaggttcaggattccggtg
ccggccctggtgcagtttgtggaggctctggagaacggctacagcaaacacaagaacccg
tatcacaacctggtccacgccgccgacgtcacgcagacggcgcacttcctcatgcttcac
accggaaccatgcactggctaagcgagctggaaatcctagcgatggttttcgcagcggcc
attcacgactttgagcacacgggaaccacaaacaatttccacatccacacaaggtcagag
gtcgccatcttgtacaatgaccgctcggtactggagaaccaccacgtgagcgccgcctac
aggctgatggcggacgaggacacaaacatcctggtcaacctcaacaaggacgactggagg
gagcttcgcgcgctggtgattgagatggtgatgtcgacggacatgtcgtgtcacttccag
caaatcaagaccatgaggaacaccctctcgcagtcacatggtgtggacaaggtgaaggtt
ttgtctctgatgctgcacgccgctgacatcagccaccctgctaaaacatggccgctgcac
taccgctggacgcatagcctcatggaggagtttttcagacagggagacaaagaagtggaa
ctgggccttcctttttctcctctttgtgaccgcaaagccaccatgatcgcacagtctcag
atcggtttcatcgacttcatcgtggagccgacgttcagcgtcctggtggacgtgaccgag
aaggtgatcggtcccctaatagacgaggaaaagaaggcccaagagacgggtaaccgacgt
cctagcctgacaggcagcggctcggtcacggtggagtctgtccagagacacagcagctgt
cgccacggcaaccgagatgacggacagatggacttctcgttgaccgccattgacctgcct
gcgctaaggaagcacttgagtgatgtcatcaacaggaacaaggacaggtggaaggaactc
tctgtggatgaattggccacgaaggagcaagatgaccaggaggaggtggaatctaagctc
aaaagccatacggctgaccaatcgctgcactcgcctccaagcgcacttgatgaaacgcgt
aaccacgacaaccacgaccaagagtcacctgacatccaacctgaagaccacaccagatgg
aacggggccgggccgggagaggagcacgaagaccaggaagtgcctgaaaatgcctaa
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