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WormBase Tree Display for Gene: WBGene00003391

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Name Class

WBGene00003391SMapS_parentSequenceF52C9
IdentityVersion2
NameCGC_namemog-3Person_evidenceWBPerson320
Sequence_nameF52C9.7
Molecular_nameF52C9.7
F52C9.7.1
CE04619
F52C9.7.2
Other_nameCELE_F52C9.7Accession_evidenceNDBBX284603
Public_namemog-3
DB_infoDatabaseWormFluxgeneWBGene00003391
NDBlocus_tagCELE_F52C9.7
PanthergeneCAEEL|WormBase=WBGene00003391|UniProtKB=G5EBT5
familyPTHR16196
NCBIgene175730
RefSeqproteinNM_065733.7
TREEFAMTREEFAM_IDTF320801
TrEMBLUniProtAccG5EBT5
UniProt_GCRPUniProtAccG5EBT5
SpeciesCaenorhabditis elegans
HistoryVersion_change107 Apr 2004 11:29:31WBPerson1971EventImportedInitial conversion from geneace
214 Aug 2012 17:01:26WBPerson2970EventAcquires_mergeWBGene00018677
Name_changeSequence_nameF52C9.7
Acquires_mergeWBGene00018677
StatusLive
Gene_infoBiotypeSO:0001217
Gene_classmog
Allele (40)
Legacy_information[Graham PL] ts Mog. At 25 degrees, most hermaphrodites make only sperm, 13% make ooids. At 15 degrees fertile but Mel. Also Mel if feminized by fem-3. NA1.
[C.elegansII] q74 : ts Mog, at 25C , most hermaphrodites make only sperm, 13% make ooids. At 15 degrees fertile but Mel. Also Mel if feminized by fem-3. NA1. [Graham et al. 1993]
StrainWBStrain00022521
RNASeq_FPKM (74)
GO_annotation (14)
Contained_in_operonCEOP3284
Ortholog (22)
Structured_descriptionConcise_descriptionmog-3 encodes a conserved nuclear protein which shares homology to a yeast splicing factor: MOG-3 contains two motifs in its N-terminus that are fully conserved from yeasts to vertebrates; necessary for oogenesis and robust germ line proliferation; mog-3 and gld-3 functions synergistically to promote meiosis progression; MOG-3, MEP-1 and CIR-1 belong to single complex; MOG-3 interacts with N-terminus but not the conserved N-terminus motifs of MEP-1 and that is necessary and sufficient for nuclear zinc-finger MEP-1 protein binding; MOG-3 interacts with CIR-1 and with MEP-1 via two distinct domains; MOG proteins represses fem-3 via MEP-1 binding; mog-3 is expressed at steady state levels throughout embryogenesis and during larval development when hermaphrodites switch to oogenesis and also in adults; MOG-3 is a ubiquitous nuclear protein mainly expressed in oocyte lineage; similar to CIR-1, MOG-3 is also detected in somatic and meiotic nuclei as well as developing L4 vulva.Paper_evidenceWBPaper00036278
Curator_confirmedWBPerson12884
WBPerson1843
Date_last_updated19 May 2011 00:00:00
Automated_descriptionInvolved in feminization of hermaphroditic germ-line and meiotic cell cycle. Located in nucleus. Expressed in germ line. Is an ortholog of human CWC25 (CWC25 spliceosome associated protein homolog).Paper_evidenceWBPaper00065943
Curator_confirmedWBPerson324
WBPerson37462
Inferred_automaticallyThis description was generated automatically by a script based on data from the WS291 version of WormBase
Date_last_updated29 Nov 2023 00:00:00
Molecular_infoCorresponding_CDSF52C9.7
Corresponding_transcriptF52C9.7.1
F52C9.7.2
Other_sequence (27)
Associated_featureWBsf645162
WBsf645163
WBsf658932
WBsf992353
WBsf992354
WBsf224912
Experimental_infoRNAi_resultWBRNAi00110123Inferred_automaticallyRNAi_primary
WBRNAi00108014Inferred_automaticallyRNAi_primary
WBRNAi00015390Inferred_automaticallyRNAi_primary
WBRNAi00047954Inferred_automaticallyRNAi_primary
WBRNAi00005621Inferred_automaticallyRNAi_primary
WBRNAi00007714Inferred_automaticallyRNAi_primary
WBRNAi00032602Inferred_automaticallyRNAi_primary
WBRNAi00067605Inferred_automaticallyRNAi_primary
WBRNAi00077843Inferred_automaticallyRNAi_primary
Expr_patternExpr9043
Expr9044
Expr9045
Expr9046
Expr1031563
Expr1151775
Expr2013650
Expr2031884
Drives_constructWBCnstr00013687
WBCnstr00036144
Construct_productWBCnstr00013687
WBCnstr00036144
AntibodyWBAntibody00002140
Microarray_results (17)
Expression_cluster (91)
Interaction (13)
Map_infoMapIIIPosition-1.83752
PositivePositive_cloneF52C9Inferred_automaticallyFrom sequence, transcript, pseudogene data
Mapping_dataMulti_point2791
Pos_neg_data7381
Reference (16)
Remarkdata extracted from Graham, Schedl & Kimble 1993
MethodGene