Timing the Generation of Distinct Retinal Cells by Homeobox Proteins
Open Access
- 15 August 2006
- journal article
- research article
- Published by Public Library of Science (PLoS) in PLoS Biology
- Vol. 4 (9) , e272
- https://doi.org/10.1371/journal.pbio.0040272
Abstract
The reason why different types of vertebrate nerve cells are generated in a particular sequence is still poorly understood. In the vertebrate retina, homeobox genes play a crucial role in establishing different cell identities. Here we provide evidence of a cellular clock that sequentially activates distinct homeobox genes in embryonic retinal cells, linking the identity of a retinal cell to its time of generation. By in situ expression analysis, we found that the three Xenopus homeobox genes Xotx5b, Xvsx1, and Xotx2 are initially transcribed but not translated in early retinal progenitors. Their translation requires cell cycle progression and is sequentially activated in photoreceptors (Xotx5b) and bipolar cells (Xvsx1 and Xotx2). Furthermore, by in vivo lipofection of “sensors” in which green fluorescent protein translation is under control of the 3′ untranslated region (UTR), we found that the 3′ UTRs of Xotx5b, Xvsx1, and Xotx2 are sufficient to drive a spatiotemporal pattern of translation matching that of the corresponding proteins and consistent with the time of generation of photoreceptors (Xotx5b) and bipolar cells (Xvsx1 and Xotx2). The block of cell cycle progression of single early retinal progenitors impairs their differentiation as photoreceptors and bipolar cells, but is rescued by the lipofection of Xotx5b and Xvsx1 coding sequences, respectively. This is the first evidence to our knowledge that vertebrate homeobox proteins can work as effectors of a cellular clock to establish distinct cell identities.Keywords
This publication has 47 references indexed in Scilit:
- seven-up Controls Switching of Transcription Factors that Specify Temporal Identities of Drosophila NeuroblastsDevelopmental Cell, 2005
- Regulation of Temporal Identity Transitions in Drosophila NeuroblastsDevelopmental Cell, 2005
- Retinal cell fate determination and bHLH factorsSeminars in Cell & Developmental Biology, 2004
- Posttranslational Mechanisms Control the Timing of bHLH Function and Regulate Retinal Cell FateNeuron, 2002
- Developing orderNature, 2001
- Drosophila Neuroblasts Sequentially Express Transcription Factors which Specify the Temporal Identity of Their Neuronal ProgenyCell, 2001
- Vertebrate neural cell-fate determination: Lessons from the retinaNature Reviews Neuroscience, 2001
- The roles of intrinsic and extrinsic cues and bHLH genes in the determination of retinal cell fatesCurrent Opinion in Neurobiology, 1999
- Constructing the cerebral cortex: Neurogenesis and fate determinationNeuron, 1995
- Cell Cycle Dependence of Laminar Determination in Developing NeocortexScience, 1991