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Database: UniProt
Entry: V2WA71_MONRO
LinkDB: V2WA71_MONRO
Original site: V2WA71_MONRO 
ID   V2WA71_MONRO            Unreviewed;      1025 AA.
AC   V2WA71;
DT   22-JAN-2014, integrated into UniProtKB/TrEMBL.
DT   22-JAN-2014, sequence version 1.
DT   13-FEB-2019, entry version 31.
DE   SubName: Full=Glycoside hydrolase family 35 protein {ECO:0000313|EMBL:ESK83683.1};
GN   ORFNames=Moror_2146 {ECO:0000313|EMBL:ESK83683.1};
OS   Moniliophthora roreri (strain MCA 2997) (Cocoa frosty pod rot fungus)
OS   (Crinipellis roreri).
OC   Eukaryota; Fungi; Dikarya; Basidiomycota; Agaricomycotina;
OC   Agaricomycetes; Agaricomycetidae; Agaricales; Marasmiaceae;
OC   Moniliophthora.
OX   NCBI_TaxID=1381753 {ECO:0000313|EMBL:ESK83683.1, ECO:0000313|Proteomes:UP000017559};
RN   [1] {ECO:0000313|EMBL:ESK83683.1, ECO:0000313|Proteomes:UP000017559}
RP   NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA].
RC   STRAIN=MCA 2997 {ECO:0000313|EMBL:ESK83683.1,
RC   ECO:0000313|Proteomes:UP000017559};
RX   PubMed=24571091; DOI=10.1186/1471-2164-15-164;
RA   Meinhardt L.W., Costa G.G.L., Thomazella D.P.T., Teixeira P.J.P.L.,
RA   Carazzolle M.F., Schuster S.C., Carlson J.E., Guiltinan M.J.,
RA   Mieczkowski P., Farmer A., Ramaraj T., Crozier J., Davis R.E.,
RA   Shao J., Melnick R.L., Pereira G.A.G., Bailey B.A.;
RT   "Genome and secretome analysis of the hemibiotrophic fungal pathogen,
RT   Moniliophthora roreri, which causes frosty pod rot disease of cacao:
RT   mechanisms of the biotrophic and necrotrophic phases.";
RL   BMC Genomics 15:164-164(2014).
CC   -!- CATALYTIC ACTIVITY:
CC       Reaction=Hydrolysis of terminal non-reducing beta-D-galactose
CC         residues in beta-D-galactosides.; EC=3.2.1.23;
CC         Evidence={ECO:0000256|SAAS:SAAS01116863};
CC   -!- SIMILARITY: Belongs to the glycosyl hydrolase 35 family.
CC       {ECO:0000256|RuleBase:RU003679, ECO:0000256|SAAS:SAAS00534244}.
CC   -!- CAUTION: The sequence shown here is derived from an
CC       EMBL/GenBank/DDBJ whole genome shotgun (WGS) entry which is
CC       preliminary data. {ECO:0000313|EMBL:ESK83683.1}.
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DR   EMBL; AWSO01001472; ESK83683.1; -; Genomic_DNA.
DR   RefSeq; XP_007857011.1; XM_007858820.1.
DR   EnsemblFungi; ESK83683; ESK83683; Moror_2146.
DR   KEGG; mrr:Moror_2146; -.
DR   OrthoDB; 179316at2759; -.
DR   Proteomes; UP000017559; Unassembled WGS sequence.
DR   GO; GO:0004565; F:beta-galactosidase activity; IEA:UniProtKB-EC.
DR   GO; GO:0005975; P:carbohydrate metabolic process; IEA:InterPro.
DR   Gene3D; 2.102.20.10; -; 1.
DR   Gene3D; 2.60.120.260; -; 2.
DR   Gene3D; 2.60.390.10; -; 1.
DR   InterPro; IPR018954; Betagal_dom2.
DR   InterPro; IPR037110; Betagal_dom2_sf.
DR   InterPro; IPR025972; BetaGal_dom3.
DR   InterPro; IPR036833; BetaGal_dom3_sf.
DR   InterPro; IPR025300; BetaGal_jelly_roll_dom.
DR   InterPro; IPR008979; Galactose-bd-like_sf.
DR   InterPro; IPR031330; Gly_Hdrlase_35_cat.
DR   InterPro; IPR001944; Glycoside_Hdrlase_35.
DR   InterPro; IPR017853; Glycoside_hydrolase_SF.
DR   PANTHER; PTHR23421; PTHR23421; 1.
DR   Pfam; PF10435; BetaGal_dom2; 1.
DR   Pfam; PF13363; BetaGal_dom3; 1.
DR   Pfam; PF13364; BetaGal_dom4_5; 2.
DR   Pfam; PF01301; Glyco_hydro_35; 1.
DR   PRINTS; PR00742; GLHYDRLASE35.
DR   SMART; SM01029; BetaGal_dom2; 1.
DR   SUPFAM; SSF117100; SSF117100; 1.
DR   SUPFAM; SSF49785; SSF49785; 2.
DR   SUPFAM; SSF51445; SSF51445; 1.
PE   3: Inferred from homology;
KW   Complete proteome {ECO:0000313|Proteomes:UP000017559};
KW   Glycosidase {ECO:0000256|SAAS:SAAS00108888};
KW   Hydrolase {ECO:0000256|SAAS:SAAS00108869,
KW   ECO:0000313|EMBL:ESK83683.1};
KW   Reference proteome {ECO:0000313|Proteomes:UP000017559};
KW   Signal {ECO:0000256|SAM:SignalP}.
FT   SIGNAL        1     26       {ECO:0000256|SAM:SignalP}.
FT   CHAIN        27   1025       {ECO:0000256|SAM:SignalP}.
FT                                /FTId=PRO_5004711608.
FT   DOMAIN      387    581       BetaGal_dom2. {ECO:0000259|SMART:
FT                                SM01029}.
SQ   SEQUENCE   1025 AA;  112955 MW;  B0A9762AB081A08C CRC64;
     MATMRSTLLF LIQFALLFTS LTLSAARGIA SRQEGPRPRT WTDQVDYDEY SLIIKGQRVF
     LHSGEFMTYR LPVPDLWPDI LEKFKAAGFN GLSLYTHMGS INPSRGVVDF ESYRALKPLF
     EAAKEFGVWV VLRPGPYINA ETSAGGLAHW TTTEVKGKLR SNASDYREAW TPYILGIIRE
     AVDYQITQGG PIIAVQVDNE YGQDPGAGYF EDLKAVYRNE SNGIVVPLTY NDPGMGRSFI
     NGTGAVDLYG FDAYPNRYDC AHPNIWRPVP ENYHEYHMEA NRWQPLYIPE YQGGSLQAWG
     PNTPDYSGCA ALTGPDFESV FYKQLWADNV KLVNYYPLYG GTSWGSIPFH GVYTSYDWGA
     AISEPRILTT KYTELKLQGT FLRSSPEFYK TDVVANSTEI PIIDTLNSSS LGFATLLRNP
     DTGAGFWIVR HNDSTSTAIS EFKLNVTTAS GASLQIPNIA RAITLDGRQS KALVTDYAFG
     SSRALYSTAE VFFAGVIDGR DVLFLHGYSN QEHEVVLSLT GTNTANATSE FIIYTPEPAL
     ADLAPNSTLV SFRKGIQGLH TLHASDTQLV VFADTSTAET FWAPSIASNT SEHASFWGIG
     TNQSVLVGGP YLVRSAHIEG DTLALRGDLN ASNVKKESRL MIIAPRSITK VTWNEGIVLL
     DDSSVDDGYI TGTIELAEKA EITVPELDGW KYHDSLPEIG DEFDDSQWVV ANHTETNVPF
     KMWYGDGRVL YGCDYGYCEG AVVWRGHFNA AGAEKSMNLS INGGQGFAAT VWLNDLFLDT
     SFGNSSNGAN NINETDQVFT FPDGSVRLGQ DNVVTVVQDN MGLNENWYTD DHMKSPRGIR
     GFQLNSGNFS EWKVQGKIGG YTNFPDKVRG VMNEGGLFGE RKGWHLPDFD TSSWENRSLS
     DGLPNAAAGV GFFVTKFILS IPGGYDVPIS FNFDEPFGQP YRALLFVNGW NMGKRIGNLG
     PQAKFPVHEG ILNYQGENTV AVALWSMTPN VTVSPTLSLA ADGVFNGGVG RIRTNNPAWM
     QEGRE
//
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