Abstract
SpGCF1 is a recently cloned sea urchin transcription factor that recognizes target sites in several different sea urchin genes. We find that in gel-shift experiments this factor is able to multimerize. A quantitative simulation of the gel-shift results suggests that SpGCF1 molecules that are bound to DNA target sites may also bind to one another, thus associating several DNA probe molecules. SpGCF1 might therefore be able to loop DNA molecules bearing its target sites at distant locations. We demonstrate this prediction by electron microscopy, and using the well-characterized cis-regulatory domain of the CyIIIa cytoskeletal actin gene, we show that the loop conformations predicted from the known SpGCF1 target site locations are actually formed in vitro. We speculate that the multimerization of this factor in vivo may function to bring distant regions of extended regulatory domains into immediate proximity so that they can interact with one another.
MeSH Terms
Actins/biosynthesis
Animals
Base Sequence
Binding Sites
DNA/chemistry,metabolism,ultrastructure
DNA Probes
DNA-Binding Proteins/biosynthesis,metabolism
Embryo, Nonmammalian/metabolism
Kinetics
Macromolecular Substances
Microscopy, Electron
Regulatory Sequences, Nucleic Acid
Sea Urchins/embryology
Transcription Factors/biosynthesis,metabolism
Chemicals
Actins
DNA Probes
DNA-Binding Proteins
Macromolecular Substances
SpGCF1 protein, Strongylocentrotus purpuratus
Transcription Factors
DNA
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Zeller R W
Division of Biology 156-29, California Institute of Technology, Pasadena 91125, USA.
Griffith J D
Moore J G
Kirchhamer C V
Britten R J
Davidson E H
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