AbstractIn Drosophila, differences between segments, such as the presence or absence of appendages, are controlled by Hox transcription factors. The Hox protein Ultrabithorax (Ubx) suppresses limb formation in the abdomen by repressing the leg selector gene Distalless, whereas Antennapedia (Antp), a thoracic Hox protein, does not repress Distalless. We show that the Hox cofactors Extradenticle and Homothorax selectively enhance Ubx, but not Antp, binding to a Distalless regulatory sequence. A C-terminal peptide in Ubx stimulates binding to this site. However, DNA binding is not sufficient for Distalless repression. Instead, an additional alternatively spliced domain in Ubx is required for Distalless repression but not DNA binding. Thus, the...
AbstractWe show that homothorax (hth) is required for the Hox genes to pattern the body of the fruit...
Homeotic genes (Hox genes) are homeodomain-transcription factors involved in conferring segmental id...
SummaryIn animals, Hox transcription factors define regional identity in distinct anatomical domains...
AbstractIn Drosophila, differences between segments, such as the presence or absence of appendages, ...
International audienceHox genes encode transcription factors widely used for diversifying animal bod...
International audienceHox genes encode transcription factors widely used for diversifying animal bod...
AbstractSegmental identities along the insect body depend on the activities of Hox genes [1,2]. In D...
The emergence following gene duplication of a large repertoire of Hox paralogue proteins underlies t...
Segmental identifies along the insect body depend on the activities of Hox genes [1,2]. In Drosophil...
<div><p>The emergence following gene duplication of a large repertoire of Hox paralogue proteins und...
International audienceThe emergence following gene duplication of a large repertoire of Hox paralogu...
International audienceThe emergence following gene duplication of a large repertoire of Hox paralogu...
AbstractSegmental identities along the insect body depend on the activities of Hox genes [1,2]. In D...
SummaryIn animals, Hox transcription factors define regional identity in distinct anatomical domains...
AbstractSegmentation involves subdivision of a developing body part into multiple repetitive units d...
AbstractWe show that homothorax (hth) is required for the Hox genes to pattern the body of the fruit...
Homeotic genes (Hox genes) are homeodomain-transcription factors involved in conferring segmental id...
SummaryIn animals, Hox transcription factors define regional identity in distinct anatomical domains...
AbstractIn Drosophila, differences between segments, such as the presence or absence of appendages, ...
International audienceHox genes encode transcription factors widely used for diversifying animal bod...
International audienceHox genes encode transcription factors widely used for diversifying animal bod...
AbstractSegmental identities along the insect body depend on the activities of Hox genes [1,2]. In D...
The emergence following gene duplication of a large repertoire of Hox paralogue proteins underlies t...
Segmental identifies along the insect body depend on the activities of Hox genes [1,2]. In Drosophil...
<div><p>The emergence following gene duplication of a large repertoire of Hox paralogue proteins und...
International audienceThe emergence following gene duplication of a large repertoire of Hox paralogu...
International audienceThe emergence following gene duplication of a large repertoire of Hox paralogu...
AbstractSegmental identities along the insect body depend on the activities of Hox genes [1,2]. In D...
SummaryIn animals, Hox transcription factors define regional identity in distinct anatomical domains...
AbstractSegmentation involves subdivision of a developing body part into multiple repetitive units d...
AbstractWe show that homothorax (hth) is required for the Hox genes to pattern the body of the fruit...
Homeotic genes (Hox genes) are homeodomain-transcription factors involved in conferring segmental id...
SummaryIn animals, Hox transcription factors define regional identity in distinct anatomical domains...