abdominal A specifies one cell type in Drosophila by regulating one principal target gene

Author:

Brodu Véronique,Elstob Philip R.,Gould Alex P.1

Affiliation:

1. Medical Research Council, National Institute for Medical Research, Mill Hill, London NW7 1AA, UK

Abstract

The Hox/homeotic genes encode transcription factors that generate segmental diversity during Drosophila development. At the level of the whole animal, they are believed to carry out this role by regulating a large number of downstream genes. Here we address the unresolved issue of how many Hox target genes are sufficient to define the identity of a single cell. We focus on the larval oenocyte, which is restricted to the abdomen and induced in response to a non-cell autonomous, transient and highly selective input from abdominal A (abdA). We use Hox mutant rescue assays to demonstrate that this function of abdA can be reconstituted by providing Rhomboid (Rho), a processing factor for the EGF receptor ligand, secreted Spitz. Thus, in order to make an oenocyte, abdA regulates just one principal target, rho, that acts at the top of a complex hierarchy of cell-differentiation genes. These studies strongly suggest that, in at least some contexts, Hox genes directly control only a few functional targets within each nucleus. This raises the possibility that much of the overall Hox downstream complexity results from cascades of indirect regulation and cell-to-cell heterogeneity.

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

Reference40 articles.

1. Akam, M. (1998). Hox genes: from master genes to micromanagers. Curr. Biol.8, R676-R678.

2. Bodenstein, D. (1950). The postembryonic development of Drosophila. In Biology of Drosophila (ed. M. Demerec). New York: John Wiley & Sons.

3. Brand, A. H. and Perrimon, N. (1993). Targeted gene expression as a means of altering cell fates and generating dominant phenotypes. Development118, 401-415.

4. Casares, F., Calleja, M. and Sanchez-Herrero, E. (1996). Functional similarity in appendage specification by the Ultrabithorax and abdominal-A Drosophila HOX genes. EMBO J.15, 3934-3942.

5. Casares, F. and Mann, R. S. (2001). The ground state of the ventral appendage in Drosophila. Science293, 1477-1480.

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