CYSD_PSEP1
ID CYSD_PSEP1 Reviewed; 305 AA.
AC A5W8T2;
DT 15-JAN-2008, integrated into UniProtKB/Swiss-Prot.
DT 10-JUL-2007, sequence version 1.
DT 25-MAY-2022, entry version 73.
DE RecName: Full=Sulfate adenylyltransferase subunit 2 {ECO:0000255|HAMAP-Rule:MF_00064};
DE EC=2.7.7.4 {ECO:0000255|HAMAP-Rule:MF_00064};
DE AltName: Full=ATP-sulfurylase small subunit {ECO:0000255|HAMAP-Rule:MF_00064};
DE AltName: Full=Sulfate adenylate transferase {ECO:0000255|HAMAP-Rule:MF_00064};
DE Short=SAT {ECO:0000255|HAMAP-Rule:MF_00064};
GN Name=cysD {ECO:0000255|HAMAP-Rule:MF_00064}; OrderedLocusNames=Pput_4422;
OS Pseudomonas putida (strain ATCC 700007 / DSM 6899 / BCRC 17059 / F1).
OC Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales;
OC Pseudomonadaceae; Pseudomonas.
OX NCBI_TaxID=351746;
RN [1]
RP NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA].
RC STRAIN=ATCC 700007 / DSM 6899 / BCRC 17059 / F1;
RG US DOE Joint Genome Institute;
RA Copeland A., Lucas S., Lapidus A., Barry K., Detter J.C.,
RA Glavina del Rio T., Hammon N., Israni S., Dalin E., Tice H., Pitluck S.,
RA Chain P., Malfatti S., Shin M., Vergez L., Schmutz J., Larimer F., Land M.,
RA Hauser L., Kyrpides N., Lykidis A., Parales R., Richardson P.;
RT "Complete sequence of Pseudomonas putida F1.";
RL Submitted (MAY-2007) to the EMBL/GenBank/DDBJ databases.
CC -!- FUNCTION: With CysN forms the ATP sulfurylase (ATPS) that catalyzes the
CC adenylation of sulfate producing adenosine 5'-phosphosulfate (APS) and
CC diphosphate, the first enzymatic step in sulfur assimilation pathway.
CC APS synthesis involves the formation of a high-energy phosphoric-
CC sulfuric acid anhydride bond driven by GTP hydrolysis by CysN coupled
CC to ATP hydrolysis by CysD. {ECO:0000255|HAMAP-Rule:MF_00064}.
CC -!- CATALYTIC ACTIVITY:
CC Reaction=ATP + H(+) + sulfate = adenosine 5'-phosphosulfate +
CC diphosphate; Xref=Rhea:RHEA:18133, ChEBI:CHEBI:15378,
CC ChEBI:CHEBI:16189, ChEBI:CHEBI:30616, ChEBI:CHEBI:33019,
CC ChEBI:CHEBI:58243; EC=2.7.7.4; Evidence={ECO:0000255|HAMAP-
CC Rule:MF_00064};
CC -!- PATHWAY: Sulfur metabolism; hydrogen sulfide biosynthesis; sulfite from
CC sulfate: step 1/3. {ECO:0000255|HAMAP-Rule:MF_00064}.
CC -!- SUBUNIT: Heterodimer composed of CysD, the smaller subunit, and CysN.
CC {ECO:0000255|HAMAP-Rule:MF_00064}.
CC -!- SIMILARITY: Belongs to the PAPS reductase family. CysD subfamily.
CC {ECO:0000255|HAMAP-Rule:MF_00064}.
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DR EMBL; CP000712; ABQ80542.1; -; Genomic_DNA.
DR RefSeq; WP_003251799.1; NC_009512.1.
DR AlphaFoldDB; A5W8T2; -.
DR SMR; A5W8T2; -.
DR STRING; 351746.Pput_4422; -.
DR EnsemblBacteria; ABQ80542; ABQ80542; Pput_4422.
DR GeneID; 45522344; -.
DR GeneID; 49614045; -.
DR KEGG; ppf:Pput_4422; -.
DR eggNOG; COG0175; Bacteria.
DR HOGENOM; CLU_043026_0_0_6; -.
DR OMA; LMIDTGH; -.
DR OrthoDB; 499077at2; -.
DR UniPathway; UPA00140; UER00204.
DR GO; GO:0005524; F:ATP binding; IEA:UniProtKB-KW.
DR GO; GO:0004781; F:sulfate adenylyltransferase (ATP) activity; IEA:UniProtKB-UniRule.
DR GO; GO:0070814; P:hydrogen sulfide biosynthetic process; IEA:UniProtKB-UniPathway.
DR GO; GO:0000103; P:sulfate assimilation; IEA:UniProtKB-UniRule.
DR GO; GO:0019419; P:sulfate reduction; IEA:InterPro.
DR CDD; cd01713; PAPS_reductase; 1.
DR Gene3D; 3.40.50.620; -; 1.
DR HAMAP; MF_00064; Sulf_adenylyltr_sub2; 1.
DR InterPro; IPR002500; PAPS_reduct.
DR InterPro; IPR014729; Rossmann-like_a/b/a_fold.
DR InterPro; IPR011784; SO4_adenylTrfase_ssu.
DR Pfam; PF01507; PAPS_reduct; 1.
DR PIRSF; PIRSF002936; CysDAde_trans; 1.
DR TIGRFAMs; TIGR02039; CysD; 1.
PE 3: Inferred from homology;
KW ATP-binding; Nucleotide-binding; Nucleotidyltransferase; Transferase.
FT CHAIN 1..305
FT /note="Sulfate adenylyltransferase subunit 2"
FT /id="PRO_1000008971"
SQ SEQUENCE 305 AA; 35284 MW; 7DDBFFDBBC3D5A23 CRC64;
MVDKLTHLKQ LEAESIHIIR EVAAEFDNPV MLYSIGKDSA VMLHLARKAF FPGKLPFPVM
HVDTQWKFQE MYSFRDKMVE EMGLELITHV NPEGVAQGIN PFTHGSSKHT DIMKTQGLKQ
ALDKHGFDAA FGGARRDEEK SRAKERVYSF RDSKHRWDPK NQRPELWNVY NGKVNKGESI
RVFPLSNWTE LDIWQYIYLE GIPIVPLYFA AEREVIEKNG TLIMIDDERI LEHLSEEEKA
RIVKKKVRFR TLGCYPLTGA VESEAETLTD IIQEMLLTRT SERQGRVIDH DGAGSMEDKK
RQGYF