KEGG   Chrysoperla carnea: 123305875
Entry
123305875         CDS       T09255                                 
Name
(RefSeq) bifunctional 3'-phosphoadenosine 5'-phosphosulfate synthase isoform X1
  KO
K13811  3'-phosphoadenosine 5'-phosphosulfate synthase [EC:2.7.7.4 2.7.1.25]
Organism
ccrn  Chrysoperla carnea
Pathway
ccrn00230  Purine metabolism
ccrn00450  Selenocompound metabolism
ccrn00920  Sulfur metabolism
ccrn01100  Metabolic pathways
ccrn01320  Sulfur cycle
Brite
KEGG Orthology (KO) [BR:ccrn00001]
 09100 Metabolism
  09102 Energy metabolism
   00920 Sulfur metabolism
    123305875
  09104 Nucleotide metabolism
   00230 Purine metabolism
    123305875
  09106 Metabolism of other amino acids
   00450 Selenocompound metabolism
    123305875
  09110 Biosynthesis of other secondary metabolites
   00261 Monobactam biosynthesis
    123305875
Enzymes [BR:ccrn01000]
 2. Transferases
  2.7  Transferring phosphorus-containing groups
   2.7.1  Phosphotransferases with an alcohol group as acceptor
    2.7.1.25  adenylyl-sulfate kinase
     123305875
   2.7.7  Nucleotidyltransferases
    2.7.7.4  sulfate adenylyltransferase
     123305875
SSDB
Motif
Pfam: APS_kinase ATP-sulfurylase PUA_2 AAA_33 KTI12 nSTAND3 AAA_16 AAA_18 NTPase_1 AAA_25
Other DBs
NCBI-GeneID: 123305875
NCBI-ProteinID: XP_044743648
LinkDB
Position
1:complement(12341536..12394131)
AA seq 620 aa
MCSKKQKTCLQIATNVTHQQHHVSREKRGQALGQGFRGCCVWLTGLSGAGKTAIAFQLEA
HLVSKGIPAYGLDGDNLRTGLNKNLGFSEADREENIRRVAEVAKLFSDSGVVSICSFVSP
FAADREVARSIHKDASLPFFEVFVDTPIEVCESRDVKGLYKKARQGLIKGFTGVDQPYEK
PENPDLVLKTVDVSIEENVHLIVEMLLENGIIPISAKTEDTIHELFVNENRVEAARAEAA
SLPGININEVDLQWVQVLSEGWAAPLRGFMREDIYLQTLHFNTITYNGTTTNQSIPIVLA
ISSQDKERLEDTSALSLWYKGQPVAILSKPEFYHHRKEERCGRQFGTYNSGHPYVKMIQD
SGDWLVGGELEVIERIRWNDGLDQYRLTPNELRQKFKQMNADAIFAFQLRNPIHNGHALL
MTETKRQLKSAGFKKPVLLLHPLGGYTKEDDVPLPVRIAQHEAVLEDGVLDKDSTILAIF
PSPMMYAGPTEVQWHAKARMIAGANFYIVGRDPAGMPHPLGKSSGGTVDGNLYDATHGGR
VLKQAPGLENLQIIPFKVAAYDLKNKRMAFYEPERHNNFDFISGTRMRGLARSGEMPPDG
FMAPKAWNILSSYYQSLIKK
NT seq 1863 nt   +upstreamnt  +downstreamnt
atgtgttctaaaaaacaaaaaacttgtttacaaattgccacaaatgttacacatcaacaa
catcatgtgtcacgggaaaagcgtggtcaagctttgggtcaaggattccgtggatgttgt
gtatggcttacaggattgtcaggtgcaggaaaaactgcaatcgctttccaacttgaagca
catttagtatctaaaggaattccggcatatggtttagatggagataatttacgtacaggt
ctaaataaaaatttgggcttttcggaagctgatcgagaagaaaatattcgacgtgttgct
gaagttgcaaaactattttcggattctggtgttgtcagtatttgtagttttgtatcacca
tttgcagcggatcgtgaagtcgctcgttccattcataaagacgcaagtttaccattcttc
gaagtatttgtagatacaccaattgaagtatgtgaatcgagagacgtaaaaggattatat
aaaaaagcacgtcaaggtttaataaaaggattcactggagtagatcaaccatatgaaaaa
ccagaaaatcctgatttagtattaaaaactgtcgatgtatcgattgaagaaaatgttcat
ttaattgtggaaatgttattggaaaatggtattattccaatatcagcaaaaacggaagat
acaattcatgaattgtttgtaaatgaaaatcgtgttgaagctgcgcgtgctgaagctgca
tcattacctggtattaatattaatgaagttgatcttcaatgggtccaagtgcttagtgaa
ggatgggcagcgccattacgtggatttatgcgtgaagatatttatttacagactttgcat
ttcaatacaatcacatacaacggaacaaccacaaatcaaagcattccaatagtattagca
attagcagtcaagataaggaacgtttagaagacacttccgccctaagtttatggtataaa
gggcaaccagttgcaatattatcaaaaccagaattctatcatcatcgtaaagaagaacga
tgtggccgtcaatttggaacctacaattctggacatccatatgtgaagatgattcaagat
agtggagattggttagttggtggtgagttagaagtaatagaacgaatccgttggaatgat
ggtttagatcaatatcgattaacgccaaatgaattgcgacaaaagtttaaacaaatgaat
gcggatgccatttttgcatttcagttacggaatccaatacataatggtcatgcgctttta
atgactgaaacaaaacgtcaattaaaatctgcaggctttaaaaaacctgttttattactt
catccgctaggaggttataccaaagaagatgatgttccacttccagtgagaattgctcaa
catgaagctgtgttagaagatggcgtgttagataaagatagtacaattttagcaatattc
ccgagtccaatgatgtatgccggtccaactgaagtgcaatggcatgccaaagcacgaatg
attgctggcgcaaacttttatattgttggtagggatccagctggtatgccacacccatta
ggaaaatcttcaggaggtacagttgatggtaacttatatgatgctacacatggaggtcgt
gtattaaaacaagctcctggtctcgaaaatttacaaatcattccatttaaagtagctgca
tatgatttaaaaaataaacgaatggcgttttacgaaccagaaagacataacaatttcgat
tttatttccggtactagaatgcgtggtttggctcgatctggtgaaatgccacccgatggt
tttatggcaccaaaagcttggaatattctttcaagctattatcaatcgttaattaaaaaa
taa

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