PANTHER Gene Information   
Gene Symbol(s): MYOD1
Organism: Bos taurus
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Gene Name: Myogenic factor
Gene ID: ENSBTAG00000002216.4
Protein ID: Q0VBX9
Persistent Id: PTN000164873
Alternate Ids:
AAI20455(EMBL-CDS) ENSBTAG00000002216(Ensembl)
Q0VBX9(Synonym) BC120454(EMBL)
Q0VBX9_BOVIN(UniProtKB-ID) NP_001035568(refSeq)
ENSBTAT00000002868(Ensembl_TRS) 111601585(GI)
281938(GeneID) ENSBTAP00000002868(Ensembl_PRO)
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PANTHER Classification
PANTHER Family: MYOGENIC FACTOR (PTHR11534)
PANTHER Subfamily: MYOBLAST DETERMINATION PROTEIN 1 (PTHR11534:SF2)  
PANTHER GO-slim Molecular Function: RNA polymerase II cis-regulatory region sequence-specific DNA binding
DNA-binding transcription factor activity, RNA polymerase II-specific
PANTHER GO-slim Biological Process: positive regulation of cell development
regulation of transcription by RNA polymerase II
skeletal muscle tissue development
cell differentiation
PANTHER GO-slim Cellular Component:
PANTHER protein class: basic helix-loop-helix transcription factor
Pathway Categories: No pathway information available
GO MF Complete: DNA binding, chromatin DNA binding, DNA-binding transcription factor activity, nuclear receptor binding, ubiquitin protein ligase binding, protein homodimerization activity, promoter-specific chromatin binding, RNA polymerase II cis-regulatory region sequence-specific DNA binding, DNA-binding transcription activator activity, RNA polymerase II-specific, DNA-binding transcription factor activity, RNA polymerase II-specific, bHLH transcription factor binding, E-box binding
GO BP Complete: DNA-templated transcription, myoblast fusion, myoblast differentiation, positive regulation of myoblast fusion, transcription by RNA polymerase II, positive regulation of myoblast differentiation, cellular response to starvation, positive regulation of skeletal muscle fiber development, positive regulation of skeletal muscle tissue regeneration, skeletal muscle fiber adaptation, regulation of transcription by RNA polymerase II, muscle organ development, myoblast fate determination, cellular response to estradiol stimulus, myotube differentiation involved in skeletal muscle regeneration, negative regulation of myoblast proliferation, skeletal muscle cell differentiation, cellular response to oxygen levels, regulation of alternative mRNA splicing, via spliceosome, skeletal muscle fiber development, skeletal muscle tissue development, cellular response to glucocorticoid stimulus, cellular response to tumor necrosis factor, positive regulation of snRNA transcription by RNA polymerase II
GO CC Complete: nucleus, transcription regulator complex, euchromatin, nucleoplasm, myofibril
Reactome Pathways: Developmental Biology, Myogenesis