Gene Ontology annotation through association of InterPro records with GO terms
Annotation inferences using phylogenetic trees
Gene Ontology annotation based on UniProtKB/Swiss-Prot Subcellular Location vocabulary mapping, accompanied by conservative changes to GO terms applied by UniProt
A bZIP/bRLZ transcription factor required for DIF signaling in Dictyostelium.
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dimA encodes a bZIP/bRLZ transcription factor required for every DIF-1 response investigated.
"encodes a bZIP/bRLZ transcription factor, which is"
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The dimA mutant produces DIF-1 but cannot respond to it, and shows cell-autonomous cell-type differentiation defects.
"the dimA(-) mutant produces DIF-1 but"
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DimA is the key transcriptional regulator integrating DIF-1 signalling and patterning.
"the key transcriptional regulator required to integrate DIF-1 signaling"
Pleiotropy as a mechanism to stabilize cooperation.
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dimA is required to receive the DIF-1 signal driving prestalk differentiation, and loss of dimA excludes cells from the spore mass.
"lack of the dimA gene results in exclusion from spores"
Microarray phenotyping in Dictyostelium reveals a regulon of chemotaxis genes.
bZIP transcription factor interactions regulate DIF responses in Dictyostelium.
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DimA and DimB are direct regulators of cellular responses to DIF-1.
"direct regulators of cellular responses to DIF-1"
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DimA functions as both an activator of prestalk gene expression and a repressor of prespore gene expression.
"DimA functions as both an activator of prestalk gene expression and repressor of prespore gene expression"
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DimA and DimB form homodimeric and heterodimeric complexes in vitro.
"DimA and DimB can form homodimeric and heterodimeric complexes in vitro"
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Both DimA and DimB rapidly accumulate in the nucleus upon DIF-1 stimulation.
"upon DIF-1 stimulation, DimA and DimB rapidly accumulate in the nucleus"
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Nuclear accumulation of DimA in response to DIF-1 depends on DimB.
"nuclear accumulation of DimA in response to DIF-1 is dependent on DimB"
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Spore cell formation is repressed by DimA.
"spore cell formation is repressed by DimA"