The nuclear hormone receptor Ftz-F1 is a cofactor for the Drosophila homeodomain protein Ftz
- 1 February 1997
- journal article
- Published by Springer Nature in Nature
- Vol. 385 (6616) , 552-555
- https://doi.org/10.1038/385552a0
Abstract
Homeobox genes specify cell fate and positional identity in embryos throughout the animal kingdom. Paradoxically, although each has a specific function in vivo, the in vitro DNA-binding specificities of homeodomain proteins are overlapping and relatively weak. A current model is that homeodomain proteins interact with cofactors that increase specificity in vivo. Here we use a native binding site for the homeodomain protein Fushi tarazu (Ftz) to isolate Ftz-F1, a protein of the nuclear hormone-receptor superfamily and a new Ftz cofactor. Ftz and Ftz-F1 are present in a complex in Drosophila embryos. Ftz-F1 facilitates the binding of Ftz to DNA, allowing interactions with weak-affinity sites at concentrations of Ftz that alone bind only high-affinity sites. Embryos lacking Ftz-F1 display ftz-like pair-rule cuticular defects. This phenotype is a result of abnormal ftz function because it is expressed but fails to activate downstream target genes. Cooperative interaction between homeodomain proteins and cofactors of different classes may serve as a general mechanism to increase HOX protein specificity and to broaden the range of target sites they regulate.Keywords
This publication has 23 references indexed in Scilit:
- Extra specificity from extradenticle: the partnership between HOX and PBX/EXD homeodomain proteinsTrends in Genetics, 1996
- Non-periodic cues generate seven ftz stripes in the Drosophila embryoMechanisms of Development, 1995
- Direct homeodomain–DNA interaction in the autoregulation of the fushi tarazu geneNature, 1992
- Homeobox genes and axial patterningPublished by Elsevier ,1992
- DNA binding specificity of homeodomainsBiochemistry, 1991
- What determines the specificity of action of Drosophila homeodomain proteins?Cell, 1990
- Analysis of the ftz upstream element: germ layer-specific enhancers are independently autoregulated.Genes & Development, 1990
- Regulation and function of the Drosophila segmentation gene fushi tarazuCell, 1987
- Near-reciprocal phenotypes caused by inactivation or indiscriminate expression of the Drosophila segmentation gene ftzNature, 1985
- Defects in embryogenesis in mutants associated with the antennapedia gene complex of Drosophila melanogasterDevelopmental Biology, 1984