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WormBase Tree Display for Gene: WBGene00016144

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Name Class

WBGene00016144SMapS_parentSequenceC26E6
IdentityVersion3
NameCGC_namemmab-1Person_evidenceWBPerson4387
WBPerson4388
Sequence_nameC26E6.11
Molecular_nameC26E6.11
C26E6.11.1
CE39476
C26E6.11.2
Other_nametag-339
C26E6.aCurator_confirmedWBPerson1983
RemarkOld cosmid naming mapped via unique overlapping PCR_product on CDSs
CELE_C26E6.11Accession_evidenceNDBBX284603
Public_namemmab-1
DB_infoDatabase (11)
SpeciesCaenorhabditis elegans
HistoryVersion_change128 May 2004 13:30:57WBPerson1971EventImportedInitial conversion from CDS class of stlace from WS125
221 Jun 2005 09:45:25WBPerson2970Name_changeCGC_nametag-339
316 Jan 2006 17:59:10WBPerson2970Name_changeCGC_namemmab-1
Other_nametag-339
StatusLive
Gene_infoBiotypeSO:0001217
Gene_classmmab
Allele (18)
RNASeq_FPKM (74)
GO_annotation00060522
00060523
00060524
00060525
00060526
00060527
Contained_in_operonCEOP3240
Ortholog (32)
Structured_descriptionConcise_descriptionmmab-1 encodes an ortholog of human co(I)balamin adenosyltransferase (MMAB); mmab-1 deletion mutants incorporate abnormally low levels of 1-[(14)C]-propionate into proteins; mmab-1 mutants and mmab-1(RNAi) animals excrete abnormally high levels of methylmalonic acid into their culture medium when challenged with propionic acid; these data are consistent with the hypothesis that MMAB-1 participates in the conversion of propionyl-CoA to succinyl-CoA.Paper_evidenceWBPaper00027754
Curator_confirmedWBPerson567
Date_last_updated02 Oct 2006 00:00:00
Automated_descriptionPredicted to enable corrinoid adenosyltransferase activity. Used to study methylmalonic acidemia. Human ortholog(s) of this gene implicated in methylmalonic acidemia cblB type. Is an ortholog of human MMAB (metabolism of cobalamin associated B).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
Disease_infoExperimental_modelDOID:14749Homo sapiensPaper_evidenceWBPaper00027754
Accession_evidenceOMIM251000
251100
Curator_confirmedWBPerson324
Date_last_updated29 May 2014 00:00:00
Potential_modelDOID:0060743Homo sapiensInferred_automaticallyInferred by orthology to human genes with DO annotation (HGNC:19331)
DOID:655Homo sapiensInferred_automaticallyInferred by orthology to human genes with DO annotation (HGNC:19331)
Disease_relevanceMethylmalonic aciduria is a genetically heterogeneous disorder of methylmalonate and cobalamin (vitamin B12) metabolism; the metabolism of propionyl-CoA to succinyl-CoA via the formation and isomerization of methylmalonyl-CoA is a critical metabolic pathway in humans; the defective conversion of L-methylmalonyl-CoA to succinyl-CoA in the mitochondrial matrix causes hereditary methylmalonic acidemias, characterized by the accumulation of methylmalonic acid in tissues and secondary metabolic perturbations such as hyperglycinemia and hyperammonemia; affected individuals may suffer from developmental delay, renal disease, pancreatitis and metabolic infarction of the basal ganglia; C.elegans expresses the full complement of mammalian homologues for the conversion of propionyl-CoA to succinyl-CoA, including propionyl-CoA carboxylase subunits A and B (pcca-1,pccb-1), methylmalonic acidemia cobalamin A complementation group (mmaa-1), co(I)balaminadenosyltransferase (mmab-1), MMACHC (cblc-1), methylmalonyl-CoA epimerase (mce-1) and methylmalonyl-CoA mutase (mmcm-1); deletion mutants of mmcm-1(ok1637), mmab-1(ok1484 and ok1493) and mce-1(ok243) displayed reduced 1-[14C]-propionate incorporation into macromolecules and produced increased amounts of methylmalonic acid in the culture medium, proving that a functional block in the pathway caused metabolite accumulation; lentiviral delivery of the C. elegans mmcm-1 into fibroblasts derived from a patient with mut class methylmalonic acidemia could partially restore propionate flux; the C. elegans mce-1 deletion mutant demonstrates for the first time that a lesion at the epimerase step of methylmalonyl-CoA metabolism can functionally impair flux through the methylmalonyl-CoA mutase pathway and suggests that malfunction of MCEE may cause methylmalonic acidemia in humans.Homo sapiensPaper_evidenceWBPaper00027754
Accession_evidenceOMIM251000
251100
607568
Curator_confirmedWBPerson324
Date_last_updated29 May 2014 00:00:00
Models_disease_in_annotationWBDOannot00000285
Molecular_infoCorresponding_CDSC26E6.11
Corresponding_CDS_historyC26E6.11:wp152
Corresponding_transcriptC26E6.11.1
C26E6.11.2
Other_sequence (31)
Associated_featureWBsf651018
WBsf666834
WBsf666835
WBsf666836
WBsf666837
WBsf226609
WBsf226610
Experimental_infoRNAi_resultWBRNAi00067760Inferred_automaticallyRNAi_primary
WBRNAi00076161Inferred_automaticallyRNAi_primary
WBRNAi00011212Inferred_automaticallyRNAi_primary
WBRNAi00002187Inferred_automaticallyRNAi_primary
WBRNAi00078225Inferred_automaticallyRNAi_primary
WBRNAi00005233Inferred_automaticallyRNAi_primary
WBRNAi00007907Inferred_automaticallyRNAi_primary
WBRNAi00041267Inferred_automaticallyRNAi_primary
Expr_patternExpr1020305
Expr1036905
Expr1145309
Expr2013625
Expr2031859
Drives_constructWBCnstr00028295
Construct_productWBCnstr00028295
Microarray_results (20)
Expression_cluster (96)
InteractionWBInteraction000007214
WBInteraction000173906
WBInteraction000552627
WBInteraction000553755
Map_infoMapIIIPosition-2.35895Error0.002868
PositivePositive_cloneC26E6Inferred_automaticallyFrom sequence, transcript, pseudogene data
Pseudo_map_position
ReferenceWBPaper00027754
WBPaper00038491
WBPaper00045654
WBPaper00049923
WBPaper00055090
RemarkMap position created from combination of previous interpolated map position (based on known location of sequence) and allele information. Therefore this is not a genetic map position based on recombination frequencies or genetic experiments. This was done on advice of the CGC.CGC_data_submission
MethodGene