Correlation Engine 2.0
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QuickView for BHLHA15 (gene)


Gene Symbol:
BHLHA15 Homo sapiens Homo sapiens
Full name:
basic helix-loop-helix family member a15
Synonyms:
BHLHB8, MIST1, class A basic helix-loop-helix protein 15, MIST-1, basic helix-loop-helix domain containing, class B, 8, class B basic helix-loop-helix protein 8, class II bHLH protein MIST1, muscle, intestine and stomach expression 1
Genomic Location:
Chr 7: 97679502-97680207
Orthologs:
Mus musculus Rattus norvegicus D. melanogaster Macaca mulatta Gallus gallus Pan troglodytes Canis lupus familiaris Danio rerio
External Links:
Entrez Gene
Transcription Factor
Binding Sites:
Cytogenetic Map:
chr 7
7q21.3


Transcripts Names
NM_177455
Protein Names
Q7RTS1
A4D271
Q14DE4



GO Molecular Function

sequence-specific DNA binding | transcription regulatory region DNA binding | RNA polymerase II transcription factor activity, sequence-specific DNA binding | nucleic acid binding | RNA polymerase II regulatory region DNA binding | DNA binding | sequence-specific double-stranded DNA binding | identical protein binding | organic cyclic compound binding | transcription regulatory region sequence-specific DNA binding | protein binding | protein homodimerization activity | double-stranded DNA binding | transcriptional activator activity, RNA polymerase II transcription regulatory region sequence-specific DNA binding | DNA-binding transcription factor activity | protein dimerization activity | RNA polymerase II regulatory region sequence-specific DNA binding | heterocyclic compound binding

GO Biological Process

RNA metabolic process | transcription by RNA polymerase II | response to extracellular stimulus | cellular response to glucose starvation | positive regulation of macromolecule biosynthetic process | response to nutrient levels | response to endoplasmic reticulum stress | intracellular signal transduction | establishment of localization | negative regulation of cellular process | RNA polymerase II transcription factor activity, sequence-specific DNA binding | cell differentiation | cellular response to extracellular stimulus | glucose homeostasis | positive regulation of cellular biosynthetic process | cellular process | localization | cell maturation | metal ion transport | endoplasmic reticulum unfolded protein response | mitochondrial calcium ion transmembrane transport | endomembrane system organization | cellular response to starvation | positive regulation of nitrogen compound metabolic process | regulation of cell differentiation | regulation of myotube differentiation | regulation of cellular process | regulation of metabolic process | organelle localization | organic cyclic compound metabolic process | RNA biosynthetic process | cellular response to unfolded protein | response to topologically incorrect protein | cellular aromatic compound metabolic process | cellular component organization | cellular response to topologically incorrect protein | response to stimulus | negative regulation of striated muscle cell differentiation | response to stress | cellular nitrogen compound biosynthetic process | response to starvation | cellular localization | divalent metal ion transport | cellular nitrogen compound metabolic process | G-protein coupled receptor signaling pathway | positive regulation of RNA biosynthetic process | cellular biosynthetic process | mitochondrion organization | cell-cell signaling | regulation of nucleic acid-templated transcription | cellular response to nutrient levels | nitrogen compound metabolic process | calcium ion transmembrane transport | ion transmembrane transport | regulation of gene expression | cellular response to stress | positive regulation of cellular metabolic process | regulation of nitrogen compound metabolic process | regulation of transcription by RNA polymerase II | second-messenger-mediated signaling | mitochondrion localization | biosynthetic process | aromatic compound biosynthetic process | negative regulation of myotube differentiation | cell communication | regulation of cellular metabolic process | homeostatic process | regulation of RNA metabolic process | calcium-mediated signaling | cation transmembrane transport | mitochondrion distribution | transcriptional activator activity, RNA polymerase II transcription regulatory region sequence-specific DNA binding | DNA-binding transcription factor activity | response to organic substance | Golgi organization | anatomical structure development | metabolic process | regulation of RNA biosynthetic process | developmental maturation | chemical homeostasis | calcium ion transport | nucleobase-containing compound metabolic process | organic substance metabolic process | gene expression | intracellular distribution of mitochondria | regulation of striated muscle cell differentiation | inorganic cation transmembrane transport | transcription, DNA-templated | transmembrane transport | signaling | regulation of transcription, DNA-templated | cell development | response to unfolded protein | cation transport | cellular macromolecule biosynthetic process | regulation of developmental process | developmental process | organelle organization | regulation of muscle cell differentiation | positive regulation of transcription, DNA-templated | positive regulation of nucleic acid-templated transcription | positive regulation of transcription by RNA polymerase II | heterocycle metabolic process | negative regulation of muscle cell differentiation | positive regulation of metabolic process | ion transport | cellular metabolic process | cellular response to organic substance | carbohydrate homeostasis | negative regulation of cell differentiation | signal transduction | positive regulation of gene expression | macromolecule metabolic process

GO Cellular Component

intracellular membrane-bounded organelle | cell | intracellular organelle | membrane-bounded organelle | nucleus | organelle | intracellular