Entry |
|
Symbol |
cysN
|
Name |
(GenBank) sulfate adenylyltransferase subunit 1
|
KO |
|
Organism |
cad Gottschalkia acidurici
|
Pathway |
cad01110 | Biosynthesis of secondary metabolites |
cad01120 | Microbial metabolism in diverse environments |
|
Brite |
KEGG Orthology (KO) [BR:cad00001]
09100 Metabolism
09102 Energy metabolism
00920 Sulfur metabolism
Curi_c25190 (cysN)
09104 Nucleotide metabolism
00230 Purine metabolism
Curi_c25190 (cysN)
09106 Metabolism of other amino acids
00450 Selenocompound metabolism
Curi_c25190 (cysN)
09110 Biosynthesis of other secondary metabolites
00261 Monobactam biosynthesis
Curi_c25190 (cysN)
Enzymes [BR:cad01000]
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
Curi_c25190 (cysN)
2.7.7 Nucleotidyltransferases
2.7.7.4 sulfate adenylyltransferase
Curi_c25190 (cysN)
|
SSDB |
|
Motif |
|
Other DBs |
|
LinkDB |
|
Position |
complement(2641260..2643047)
|
AA seq |
595 aa
MNRESLNIVVVGHVDHGKSTLIGRLLFDTDSLPSGAIEKVKRISQEKGKGFEYSYLLDAF
EEEQKQGITIDTTRLQFKTEKRDYIIIDAPGHKEFLKNMISGAASAESAILMVDANEGIQ
EQSKRHGYILSLLGIQKVYVAVNKMDLVDYSEEKYEEIKRDFDRFLNTLGVYPLKYIPVS
AFHGENIASKSDKMPWYEGESILEAMDIIEKEVGIEDQPLRFPIQDVYKFDHRRIIAGRI
ESGSLKVGDEIVILPSNKTTKVKSIEHWVEKDKKEEVSAGMSVGIIVEDEFFYKRGEIVS
HKDNIPTVTDTFGGNLFWLGKDDLVKNKKYKLKLATLEIECEIAKINKVIDASTLETIEN
GERVKRNDVAEITITTKEPIALDEFKNIQSTGRFVIVDDLDVSGGGIITKGSSFEVEKKF
KSVDGEVHSVRPRLVTRQDREKRLGATSKVVWLTGKAGCGKREIAVNLEKELFDSGKNVY
YLDYYQVATNQNDSEGIKEVTKIANILSETGSIVIVTSNYLLREEKEYIKSQVGKENFVE
VYVEASDEVCAERFPSKEAIADLNEKSKEPFISLYIDDPNFDGKEKANSLLNIIF |
NT seq |
1788 nt +upstreamnt +downstreamnt
atgaatagagaaagtttaaatatagttgtagttggacacgtagatcatggtaagtcaaca
cttattggaagactcttattcgatacggattcattaccaagcggagctatagaaaaagta
aaaagaatttctcaagaaaaaggaaaagggtttgaatattcatatctattagatgctttt
gaagaagagcaaaagcagggtataactatagatacaacaagacttcaatttaagactgaa
aaaagagactatataataatagatgctccaggacataaagaattcttaaaaaatatgata
tcgggagcagcaagtgcagagtcagcaatacttatggtagatgccaatgagggaatacaa
gaacagtctaaaagacatggatatatattatcacttttaggtattcaaaaagtttatgta
gcagtaaataagatggacttagtagattactcagaagaaaaatatgaagaaataaaaagg
gattttgatagatttttaaatacgctaggcgtttatccgttgaagtatattccagtttca
gcattccacggagaaaatatagctagcaaatcagataaaatgccatggtatgaaggtgaa
agcatattagaagctatggatataatagaaaaagaagtaggaatagaagatcaaccatta
agattccctatacaagatgtatataagtttgatcatagaagaataattgcagggagaata
gaatcaggaagcttaaaagtaggagacgagatagttatactaccaagtaacaaaactaca
aaagtgaaatctatagagcactgggtagagaaagataaaaaagaagaagtaagtgctgga
atgtcagtgggtataatagttgaagatgagtttttctacaaaagaggagagatagtatct
cacaaagataatataccaacagtgacagatacatttggtggtaacttgttttggttaggt
aaagacgatttagtaaaaaataagaaatataaattaaaacttgctactttagaaatagaa
tgtgaaatagcaaaaataaataaggttatagatgcgtctactcttgaaactatagaaaat
ggagaaagagtaaaaagaaatgacgtagcagaaataactataacaacaaaagaaccaata
gcattagatgagtttaaaaatatccaaagtacaggaagatttgtaatagtagatgattta
gatgttagtggtggtggaataataactaaaggaagcagttttgaggttgaaaagaaattt
aaatcagtagatggagaagttcactctgtaagacctagactggtaactagacaagataga
gagaaaagactaggggctacaagtaaagtagtatggttaactggaaaagcgggatgcgga
aaaagagaaatagcagtaaatttagaaaaagagttattcgatagtggtaaaaatgtatac
tatctagattactatcaagtagcaacaaatcaaaatgattcagaaggaataaaagaagtg
actaagatagcaaatatacttagtgaaacgggaagcatagttatagttacatcaaactat
cttttaagagaagaaaaagaatatataaaatctcaagttggaaaagaaaactttgtagaa
gtatatgtagaagcttcagatgaagtatgtgcagaaagattcccatcgaaagaagctata
gctgacttaaatgaaaaatcaaaagaaccatttatatcactatatatagacgatccgaat
tttgatggaaaagaaaaagccaactcacttttaaatattatattttag |