ASQF_EMENI
ID ASQF_EMENI Reviewed; 575 AA.
AC Q5AR49; C8VJP8;
DT 02-NOV-2016, integrated into UniProtKB/Swiss-Prot.
DT 26-APR-2005, sequence version 1.
DT 25-MAY-2022, entry version 97.
DE RecName: Full=FAD-linked oxidoreductase asqF {ECO:0000305};
DE EC=1.-.-.- {ECO:0000305|PubMed:25251934};
DE AltName: Full=4'-methoxyviridicatin/aspoquinolone biosynthesis cluster protein asqF {ECO:0000305};
DE AltName: Full=Aspoquinolone biosynthesis protein F {ECO:0000303|PubMed:25251934};
DE Flags: Precursor;
GN Name=asqH {ECO:0000303|PubMed:25251934}; ORFNames=AN9231;
OS Emericella nidulans (strain FGSC A4 / ATCC 38163 / CBS 112.46 / NRRL 194 /
OS M139) (Aspergillus nidulans).
OC Eukaryota; Fungi; Dikarya; Ascomycota; Pezizomycotina; Eurotiomycetes;
OC Eurotiomycetidae; Eurotiales; Aspergillaceae; Aspergillus;
OC Aspergillus subgen. Nidulantes.
OX NCBI_TaxID=227321;
RN [1]
RP NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA].
RC STRAIN=FGSC A4 / ATCC 38163 / CBS 112.46 / NRRL 194 / M139;
RX PubMed=16372000; DOI=10.1038/nature04341;
RA Galagan J.E., Calvo S.E., Cuomo C., Ma L.-J., Wortman J.R., Batzoglou S.,
RA Lee S.-I., Bastuerkmen M., Spevak C.C., Clutterbuck J., Kapitonov V.,
RA Jurka J., Scazzocchio C., Farman M.L., Butler J., Purcell S., Harris S.,
RA Braus G.H., Draht O., Busch S., D'Enfert C., Bouchier C., Goldman G.H.,
RA Bell-Pedersen D., Griffiths-Jones S., Doonan J.H., Yu J., Vienken K.,
RA Pain A., Freitag M., Selker E.U., Archer D.B., Penalva M.A., Oakley B.R.,
RA Momany M., Tanaka T., Kumagai T., Asai K., Machida M., Nierman W.C.,
RA Denning D.W., Caddick M.X., Hynes M., Paoletti M., Fischer R., Miller B.L.,
RA Dyer P.S., Sachs M.S., Osmani S.A., Birren B.W.;
RT "Sequencing of Aspergillus nidulans and comparative analysis with A.
RT fumigatus and A. oryzae.";
RL Nature 438:1105-1115(2005).
RN [2]
RP GENOME REANNOTATION.
RC STRAIN=FGSC A4 / ATCC 38163 / CBS 112.46 / NRRL 194 / M139;
RX PubMed=19146970; DOI=10.1016/j.fgb.2008.12.003;
RA Wortman J.R., Gilsenan J.M., Joardar V., Deegan J., Clutterbuck J.,
RA Andersen M.R., Archer D., Bencina M., Braus G., Coutinho P., von Dohren H.,
RA Doonan J., Driessen A.J., Durek P., Espeso E., Fekete E., Flipphi M.,
RA Estrada C.G., Geysens S., Goldman G., de Groot P.W., Hansen K.,
RA Harris S.D., Heinekamp T., Helmstaedt K., Henrissat B., Hofmann G.,
RA Homan T., Horio T., Horiuchi H., James S., Jones M., Karaffa L.,
RA Karanyi Z., Kato M., Keller N., Kelly D.E., Kiel J.A., Kim J.M.,
RA van der Klei I.J., Klis F.M., Kovalchuk A., Krasevec N., Kubicek C.P.,
RA Liu B., Maccabe A., Meyer V., Mirabito P., Miskei M., Mos M., Mullins J.,
RA Nelson D.R., Nielsen J., Oakley B.R., Osmani S.A., Pakula T., Paszewski A.,
RA Paulsen I., Pilsyk S., Pocsi I., Punt P.J., Ram A.F., Ren Q., Robellet X.,
RA Robson G., Seiboth B., van Solingen P., Specht T., Sun J.,
RA Taheri-Talesh N., Takeshita N., Ussery D., vanKuyk P.A., Visser H.,
RA van de Vondervoort P.J., de Vries R.P., Walton J., Xiang X., Xiong Y.,
RA Zeng A.P., Brandt B.W., Cornell M.J., van den Hondel C.A., Visser J.,
RA Oliver S.G., Turner G.;
RT "The 2008 update of the Aspergillus nidulans genome annotation: a community
RT effort.";
RL Fungal Genet. Biol. 46:S2-13(2009).
RN [3]
RP FUNCTION.
RX PubMed=25251934; DOI=10.1002/anie.201407920;
RA Ishikawa N., Tanaka H., Koyama F., Noguchi H., Wang C.C., Hotta K.,
RA Watanabe K.;
RT "Non-heme dioxygenase catalyzes atypical oxidations of 6,7-bicyclic systems
RT to form the 6,6-quinolone core of viridicatin-type fungal alkaloids.";
RL Angew. Chem. Int. Ed. 53:12880-12884(2014).
RN [4]
RP FUNCTION.
RX PubMed=26553478; DOI=10.1002/anie.201507835;
RA Brauer A., Beck P., Hintermann L., Groll M.;
RT "Structure of the dioxygenase AsqJ: mechanistic insights into a one-pot
RT multistep quinolone antibiotic biosynthesis.";
RL Angew. Chem. Int. Ed. 55:422-426(2016).
RN [5]
RP FUNCTION.
RX PubMed=28114276; DOI=10.1038/nchembio.2283;
RA Zou Y., Garcia-Borras M., Tang M.C., Hirayama Y., Li D.H., Li L.,
RA Watanabe K., Houk K.N., Tang Y.;
RT "Enzyme-catalyzed cationic epoxide rearrangements in quinolone alkaloid
RT biosynthesis.";
RL Nat. Chem. Biol. 13:325-332(2017).
RN [6]
RP FUNCTION.
RX PubMed=30026518; DOI=10.1038/s41467-018-05221-5;
RA Kishimoto S., Hara K., Hashimoto H., Hirayama Y., Champagne P.A.,
RA Houk K.N., Tang Y., Watanabe K.;
RT "Enzymatic one-step ring contraction for quinolone biosynthesis.";
RL Nat. Commun. 9:2826-2826(2018).
CC -!- FUNCTION: FAD-linked oxidoreductase; part of the gene cluster that
CC mediates the biosynthesis of the aspoquinolone mycotoxins
CC (PubMed:25251934). The first stage is catalyzed by the nonribosomal
CC pepdide synthetase asqK that condenses anthranilic acid and O-methyl-L-
CC tyrosine to produce 4'-methoxycyclopeptin (PubMed:25251934). AsqK is
CC also able to use anthranilic acid and L-phenylalanine as substrates to
CC produce cyclopeptin, but at a tenfold lower rate (PubMed:25251934). 4'-
CC methoxycyclopeptin is then converted to 4'-methoxydehydrocyclopeptin by
CC the ketoglutarate-dependent dioxygenase asqJ through dehydrogenation to
CC form a double bond between C-alpha and C-beta of the O-methyltyrosine
CC side chain (PubMed:25251934, PubMed:26553478). AsqJ also converts its
CC first product 4'-methoxydehydrocyclopeptin to 4'-methoxycyclopenin
CC (PubMed:25251934). AsqJ is a very unique dioxygenase which is capable
CC of catalyzing radical-mediated dehydrogenation and epoxidation
CC reactions sequentially on a 6,7-benzo-diazepinedione substrate in the
CC 4'-methoxyviridicatin biosynthetic pathway (PubMed:25251934). AsqJ is
CC also capable of converting cyclopeptin into dehydrocyclopeptin
CC (PubMed:25251934). The following conversion of 4'-methoxycyclopenin
CC into 4'-methoxyviridicatin is catalyzed by the cyclopenase asqI
CC (PubMed:30026518). Cyclopenin can also be converted into viridicatin by
CC asqI (PubMed:30026518). 4'-methoxyviridicatin is the precursor of
CC quinolone natural products, and is further converted to quinolinone B
CC (Probable). The prenyltransferase asqH1 then catalyzes the canonical
CC Friedel-Crafts alkylation of quinolinone B with dimethylallyl cation to
CC yield dimethylallyl quinolone, which is subjected to FAD-dependent
CC dehydrogenation by the FAD-linked oxidoreductase asqF to yield
CC conjugated aryl diene (By similarity). The delta(3') double bond then
CC serves as the site of the second alkylation with DMAPP catalyzed by the
CC prenyltransferase asqH2 to yield a carbenium ion intermediate, which
CC can be attacked by H(2)O to yield a styrenyl quinolone containing a
CC C3'-hydroxyprenyl chain (By similarity). The FAD-dependent
CC monooxygenase asqG performs epoxidation of the terminal C7'-C8' olefin
CC (PubMed:30026518). Finally, after dehydratation of the epoxide at C3 by
CC asqC, the quinolone epoxide rearrangement protein asqO catalyzes an
CC enzymatic 3-exo-tet cyclization to yield the cyclopropyl-THF ring
CC system in aspoquinolone (PubMed:30026518).
CC {ECO:0000250|UniProtKB:A0A1B2CTB2, ECO:0000250|UniProtKB:A0A1B2CTB7,
CC ECO:0000269|PubMed:25251934, ECO:0000269|PubMed:26553478,
CC ECO:0000269|PubMed:30026518, ECO:0000305|PubMed:30026518}.
CC -!- COFACTOR:
CC Name=FAD; Xref=ChEBI:CHEBI:57692; Evidence={ECO:0000305};
CC -!- PATHWAY: Secondary metabolite biosynthesis.
CC {ECO:0000305|PubMed:25251934}.
CC -!- PATHWAY: Alkaloid biosynthesis. {ECO:0000305|PubMed:25251934}.
CC -!- PATHWAY: Mycotoxin biosynthesis. {ECO:0000305|PubMed:25251934}.
CC -!- SIMILARITY: Belongs to the oxygen-dependent FAD-linked oxidoreductase
CC family. {ECO:0000305}.
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DR EMBL; BN001306; CBF82270.1; -; Genomic_DNA.
DR EMBL; AACD01000170; EAA61522.1; -; Genomic_DNA.
DR RefSeq; XP_682500.1; XM_677408.1.
DR AlphaFoldDB; Q5AR49; -.
DR SMR; Q5AR49; -.
DR STRING; 162425.CADANIAP00009359; -.
DR EnsemblFungi; CBF82270; CBF82270; ANIA_09231.
DR EnsemblFungi; EAA61522; EAA61522; AN9231.2.
DR GeneID; 2868071; -.
DR KEGG; ani:AN9231.2; -.
DR VEuPathDB; FungiDB:AN9231; -.
DR eggNOG; ENOG502R8I5; Eukaryota.
DR HOGENOM; CLU_018354_4_4_1; -.
DR InParanoid; Q5AR49; -.
DR OMA; CHQGRIP; -.
DR OrthoDB; 827142at2759; -.
DR Proteomes; UP000000560; Chromosome VI.
DR Proteomes; UP000005890; Unassembled WGS sequence.
DR GO; GO:0071949; F:FAD binding; IEA:InterPro.
DR GO; GO:0016491; F:oxidoreductase activity; IBA:GO_Central.
DR Gene3D; 3.30.465.10; -; 2.
DR InterPro; IPR012951; BBE.
DR InterPro; IPR016166; FAD-bd_PCMH.
DR InterPro; IPR036318; FAD-bd_PCMH-like_sf.
DR InterPro; IPR016169; FAD-bd_PCMH_sub2.
DR InterPro; IPR006094; Oxid_FAD_bind_N.
DR Pfam; PF08031; BBE; 1.
DR Pfam; PF01565; FAD_binding_4; 1.
DR SUPFAM; SSF56176; SSF56176; 1.
DR PROSITE; PS51387; FAD_PCMH; 1.
PE 3: Inferred from homology;
KW FAD; Flavoprotein; Glycoprotein; Oxidoreductase; Reference proteome;
KW Signal.
FT SIGNAL 1..23
FT /evidence="ECO:0000255"
FT CHAIN 24..575
FT /note="FAD-linked oxidoreductase asqF"
FT /id="PRO_5007924197"
FT DOMAIN 118..306
FT /note="FAD-binding PCMH-type"
FT /evidence="ECO:0000255|PROSITE-ProRule:PRU00718"
FT MOD_RES 156
FT /note="Pros-8alpha-FAD histidine"
FT /evidence="ECO:0000250|UniProtKB:P08159"
FT CARBOHYD 45
FT /note="N-linked (GlcNAc...) asparagine"
FT /evidence="ECO:0000255|PROSITE-ProRule:PRU00498"
FT CARBOHYD 80
FT /note="N-linked (GlcNAc...) asparagine"
FT /evidence="ECO:0000255|PROSITE-ProRule:PRU00498"
FT CARBOHYD 370
FT /note="N-linked (GlcNAc...) asparagine"
FT /evidence="ECO:0000255|PROSITE-ProRule:PRU00498"
SQ SEQUENCE 575 AA; 63397 MW; 57C5FF33ABCE44CD CRC64;
MALFRLSAAI VVIFLYIWSP SQRIQCRCRS FERCWPSQQD WSALNNSISG HLVNPRPVAY
VCHDPDFDHD ACEHVRYMAN NSLWRASMPG ALQNTVWESS LVSTQTCLPF SAREQPCNQG
RIPLYAAVVE SKKEVQTAVR FARKYNLRLV IRNTGHDGAG SSSGPESFQI FTHRLNSILY
HSNFCPGGSH SKYQTCAGPA VSIGAGVMFR DLYARGAERG FVVTGGDSGT VGAAGGFIQG
GGVPAFMGYT WGLAVDNVLE FEVVVATGQL VIANADENAD LFWALRGGGG GSFGIVVRVT
MRTYPDLPTL KGELTVSGNR HDPSFWTEDI AGLLNALRAF NHLDAPGVFR LIQTSAKGSI
SAVLEVYLLN RTLAEDLTRM MGPILGTSRR KYNISPITVG KISSFANPNE PTITEFFGST
ILSRNFFESP NGPLVMAKRM AAINLDPGDG LLTSNLGGRI NNENSDLPLH PAWRSSAHLV
SLVVNVDTSL RARERAMVRL TDELMPMLYA IDSSQWVSYS NMGNPNEPDF KERYWGMRNY
RRLVSIKKKW DPKDLFIARV GVRSDGWDSE GMCRT