EFGM_BOTFB
ID EFGM_BOTFB Reviewed; 804 AA.
AC A6RLH0;
DT 13-OCT-2009, integrated into UniProtKB/Swiss-Prot.
DT 21-AUG-2007, sequence version 1.
DT 03-AUG-2022, entry version 97.
DE RecName: Full=Elongation factor G, mitochondrial {ECO:0000255|HAMAP-Rule:MF_03061};
DE Short=EF-Gmt {ECO:0000255|HAMAP-Rule:MF_03061};
DE AltName: Full=Elongation factor G 1, mitochondrial {ECO:0000255|HAMAP-Rule:MF_03061};
DE Short=mEF-G 1 {ECO:0000255|HAMAP-Rule:MF_03061};
DE AltName: Full=Elongation factor G1 {ECO:0000255|HAMAP-Rule:MF_03061};
DE Flags: Precursor;
GN Name=mef1; ORFNames=BC1G_01292;
OS Botryotinia fuckeliana (strain B05.10) (Noble rot fungus) (Botrytis
OS cinerea).
OC Eukaryota; Fungi; Dikarya; Ascomycota; Pezizomycotina; Leotiomycetes;
OC Helotiales; Sclerotiniaceae; Botrytis.
OX NCBI_TaxID=332648;
RN [1]
RP NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA].
RC STRAIN=B05.10;
RX PubMed=21876677; DOI=10.1371/journal.pgen.1002230;
RA Amselem J., Cuomo C.A., van Kan J.A.L., Viaud M., Benito E.P., Couloux A.,
RA Coutinho P.M., de Vries R.P., Dyer P.S., Fillinger S., Fournier E.,
RA Gout L., Hahn M., Kohn L., Lapalu N., Plummer K.M., Pradier J.-M.,
RA Quevillon E., Sharon A., Simon A., ten Have A., Tudzynski B., Tudzynski P.,
RA Wincker P., Andrew M., Anthouard V., Beever R.E., Beffa R., Benoit I.,
RA Bouzid O., Brault B., Chen Z., Choquer M., Collemare J., Cotton P.,
RA Danchin E.G., Da Silva C., Gautier A., Giraud C., Giraud T., Gonzalez C.,
RA Grossetete S., Gueldener U., Henrissat B., Howlett B.J., Kodira C.,
RA Kretschmer M., Lappartient A., Leroch M., Levis C., Mauceli E.,
RA Neuveglise C., Oeser B., Pearson M., Poulain J., Poussereau N.,
RA Quesneville H., Rascle C., Schumacher J., Segurens B., Sexton A., Silva E.,
RA Sirven C., Soanes D.M., Talbot N.J., Templeton M., Yandava C., Yarden O.,
RA Zeng Q., Rollins J.A., Lebrun M.-H., Dickman M.;
RT "Genomic analysis of the necrotrophic fungal pathogens Sclerotinia
RT sclerotiorum and Botrytis cinerea.";
RL PLoS Genet. 7:E1002230-E1002230(2011).
CC -!- FUNCTION: Mitochondrial GTPase that catalyzes the GTP-dependent
CC ribosomal translocation step during translation elongation. During this
CC step, the ribosome changes from the pre-translocational (PRE) to the
CC post-translocational (POST) state as the newly formed A-site-bound
CC peptidyl-tRNA and P-site-bound deacylated tRNA move to the P and E
CC sites, respectively. Catalyzes the coordinated movement of the two tRNA
CC molecules, the mRNA and conformational changes in the ribosome.
CC {ECO:0000255|HAMAP-Rule:MF_03061}.
CC -!- PATHWAY: Protein biosynthesis; polypeptide chain elongation.
CC {ECO:0000255|HAMAP-Rule:MF_03061}.
CC -!- SUBCELLULAR LOCATION: Mitochondrion {ECO:0000255|HAMAP-Rule:MF_03061}.
CC -!- SIMILARITY: Belongs to the TRAFAC class translation factor GTPase
CC superfamily. Classic translation factor GTPase family. EF-G/EF-2
CC subfamily. {ECO:0000305}.
CC ---------------------------------------------------------------------------
CC Copyrighted by the UniProt Consortium, see https://www.uniprot.org/terms
CC Distributed under the Creative Commons Attribution (CC BY 4.0) License
CC ---------------------------------------------------------------------------
DR EMBL; CH476844; EDN25732.1; -; Genomic_DNA.
DR RefSeq; XP_001560460.1; XM_001560410.1.
DR AlphaFoldDB; A6RLH0; -.
DR SMR; A6RLH0; -.
DR World-2DPAGE; 0005:A6RLH0; -.
DR GeneID; 5441101; -.
DR KEGG; bfu:BCIN_06g02560; -.
DR VEuPathDB; FungiDB:Bcin06g02560; -.
DR OMA; AATTCHW; -.
DR OrthoDB; 637899at2759; -.
DR UniPathway; UPA00345; -.
DR GO; GO:0005739; C:mitochondrion; IEA:UniProtKB-SubCell.
DR GO; GO:0005525; F:GTP binding; IEA:UniProtKB-UniRule.
DR GO; GO:0003924; F:GTPase activity; IEA:UniProtKB-UniRule.
DR GO; GO:0003746; F:translation elongation factor activity; IEA:UniProtKB-UniRule.
DR GO; GO:0070125; P:mitochondrial translational elongation; IEA:UniProtKB-UniRule.
DR CDD; cd16262; EFG_III; 1.
DR CDD; cd01434; EFG_mtEFG1_IV; 1.
DR CDD; cd04097; mtEFG1_C; 1.
DR Gene3D; 3.30.230.10; -; 1.
DR Gene3D; 3.40.50.300; -; 1.
DR HAMAP; MF_00054_B; EF_G_EF_2_B; 1.
DR InterPro; IPR045044; EFG1-like.
DR InterPro; IPR041095; EFG_II.
DR InterPro; IPR009022; EFG_III.
DR InterPro; IPR035647; EFG_III/V.
DR InterPro; IPR035649; EFG_V.
DR InterPro; IPR000640; EFG_V-like.
DR InterPro; IPR004161; EFTu-like_2.
DR InterPro; IPR031157; G_TR_CS.
DR InterPro; IPR027417; P-loop_NTPase.
DR InterPro; IPR020568; Ribosomal_S5_D2-typ_fold.
DR InterPro; IPR014721; Ribosomal_S5_D2-typ_fold_subgr.
DR InterPro; IPR005225; Small_GTP-bd_dom.
DR InterPro; IPR000795; T_Tr_GTP-bd_dom.
DR InterPro; IPR009000; Transl_B-barrel_sf.
DR InterPro; IPR004540; Transl_elong_EFG/EF2.
DR InterPro; IPR005517; Transl_elong_EFG/EF2_IV.
DR PANTHER; PTHR43636; PTHR43636; 1.
DR Pfam; PF00679; EFG_C; 1.
DR Pfam; PF14492; EFG_III; 1.
DR Pfam; PF03764; EFG_IV; 1.
DR Pfam; PF00009; GTP_EFTU; 1.
DR Pfam; PF03144; GTP_EFTU_D2; 1.
DR PRINTS; PR00315; ELONGATNFCT.
DR SMART; SM00838; EFG_C; 1.
DR SMART; SM00889; EFG_IV; 1.
DR SUPFAM; SSF50447; SSF50447; 1.
DR SUPFAM; SSF52540; SSF52540; 1.
DR SUPFAM; SSF54211; SSF54211; 1.
DR SUPFAM; SSF54980; SSF54980; 2.
DR TIGRFAMs; TIGR00484; EF-G; 1.
DR TIGRFAMs; TIGR00231; small_GTP; 1.
DR PROSITE; PS00301; G_TR_1; 1.
DR PROSITE; PS51722; G_TR_2; 1.
PE 3: Inferred from homology;
KW Elongation factor; GTP-binding; Mitochondrion; Nucleotide-binding;
KW Protein biosynthesis; Transit peptide.
FT TRANSIT 1..63
FT /note="Mitochondrion"
FT /evidence="ECO:0000255|HAMAP-Rule:MF_03061"
FT CHAIN 64..804
FT /note="Elongation factor G, mitochondrial"
FT /id="PRO_0000385563"
FT DOMAIN 99..385
FT /note="tr-type G"
FT BINDING 108..115
FT /ligand="GTP"
FT /ligand_id="ChEBI:CHEBI:37565"
FT /evidence="ECO:0000255|HAMAP-Rule:MF_03061"
FT BINDING 183..187
FT /ligand="GTP"
FT /ligand_id="ChEBI:CHEBI:37565"
FT /evidence="ECO:0000255|HAMAP-Rule:MF_03061"
FT BINDING 237..240
FT /ligand="GTP"
FT /ligand_id="ChEBI:CHEBI:37565"
FT /evidence="ECO:0000255|HAMAP-Rule:MF_03061"
SQ SEQUENCE 804 AA; 88608 MW; B0B82CE56D173CBB CRC64;
MSMHRVARAV ASTEACAGAL RGSVPRARFL CLNSPVQGLG ARNAILGARL GGKRHFSQSP
IIRAGVAQAV LEKAAADPSA LTQEAIVDNL NAAERDRLRR VRNIGIAAHI DSGKTTATER
VLFYTGRINA IHEVRGKDAV GAKMDSMELE REKGITIQSA ATFCDWLKVE NGKEEKYHIN
LIDTPGHIDF TIEVERALRV LDGAVMILCA VSGVQSQTIT VDRQMRRYNV PRISFINKMD
RMGANPFKAV EQINQKLRIP AAALQVPIGS EDSFNGVVDL IRMKAIYNDG PKGEIIRETD
EIPEELKKLC EEKRALLIET LADVDDEIAE IFLDEKTPSI EQMKAAIRRA TINLKFTPVL
MGSALADKSV QPMLDAVCDY LPNPAEVENL ALDKRRAEAP VKLVSYNELP FVGLAFKLEE
SNYGQLTYIR VYQGSLKKGM NVFNARTDKR VKIPRIVRMH SNEMEEVPEI GAGEICAVFG
VDCASGDTFT DGGLPYSMSS MFVPDPVISL SIKPKTTKDG SNFSKAMNRF QREDPTFRVH
VDAESQETII SGMGELHLDI YVERMRREYK VEVETGKPQV AYRETITEHV VFDHTLKKQT
GGAGDYARVV GFLEPIEPGP NGYAPSTFKE EVTGGSISDK FLFACEKGFL ASCEKGPLLG
HPVLGTHMVV NDGATHMTDS SEMAFKNATQ QAFRKAFKEG KPQVLEPLMK TTITAPNEFQ
GNIVGLLNKR NAIISDTEIG PEDFTLIADC SLNAMFGFSS QLRAATQGKG EFGMEFSHYA
PAPGQLQKEL ISNYEKAQAD RHKK