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Neurogenesis requires precise control of cell specification and division. In Drosophila, the timing of cell division of the sensory organ precursor (SOP) is under strict temporal control. But how the timing of mitotic entry is determined remains poorly understood. Here, we present evidence that the timing of the G2-M transition is determined by when proneural proteins are degraded from SOPs. This process requires the E3 ubiquitin ligase complex, including the RING protein Sina and the adaptor Phyl. In phyl mutants, proneural proteins accumulate, causing delay or arrest in the G2-M transition. The G2-M defect in phyl mutants is rescued by reducing the ac and sc gene doses. Misexpression of phyl downregulates proneural protein levels in a sina-dependent manner. Phyl directly associates with proneural proteins to act as a bridge between proneural proteins and Sina. As phyl is a direct transcriptional target of Ac and Sc, our data suggest that, in addition to mediating cell cycle arrest, proneural protein initiates a negative-feedback regulation to time the mitotic entry of neural precursors.
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Development ePress online publication date 13 Aug 2008
doi: 10.1242/dev.021923
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Research article
Negative-feedback regulation of proneural proteins controls the timing of neural precursor division
* Author for correspondence (e-mail: haiwei{at}mail.cgu.edu.tw)
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A. Garcia-Bellido and J. F. de Celis
The Complex Tale of the achaete-scute Complex: A Paradigmatic Case in the Analysis of Gene Organization and Function During Development
Genetics,
July 1, 2009;
182(3):
631 - 639.
[Abstract]
[Full Text]
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P.-J. Chang, Y.-L. Hsiao, A.-C. Tien, Y.-C. Li, and H. Pi
Negative-feedback regulation of proneural proteins controls the timing of neural precursor division
J. Cell Sci.,
September 15, 2008;
121(18):
e1806 - e1806.
[Full Text]
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© The Company of Biologists Ltd 2008