101. Gene regulatory logic for reading the Sonic Hedgehog signaling gradient in the vertebrate neural tube.
- Author
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Balaskas N, Ribeiro A, Panovska J, Dessaud E, Sasai N, Page KM, Briscoe J, and Ribes V
- Subjects
- Animals, Basic Helix-Loop-Helix Transcription Factors genetics, Eye Proteins genetics, Hedgehog Proteins genetics, Homeobox Protein Nkx-2.2, Homeodomain Proteins genetics, Homeodomain Proteins metabolism, Kruppel-Like Transcription Factors genetics, Kruppel-Like Transcription Factors metabolism, Mice, Mice, Transgenic, Nerve Tissue Proteins genetics, Nerve Tissue Proteins metabolism, Neural Stem Cells metabolism, Oligodendrocyte Transcription Factor 2, PAX6 Transcription Factor, Paired Box Transcription Factors genetics, Repressor Proteins genetics, Transcription Factors metabolism, Zebrafish Proteins, Zinc Finger Protein Gli3, Gene Regulatory Networks, Hedgehog Proteins metabolism, Neural Tube metabolism, Signal Transduction
- Abstract
Secreted signals, known as morphogens, provide the positional information that organizes gene expression and cellular differentiation in many developing tissues. In the vertebrate neural tube, Sonic Hedgehog (Shh) acts as a morphogen to control the pattern of neuronal subtype specification. Using an in vivo reporter of Shh signaling, mouse genetics, and systems modeling, we show that a spatially and temporally changing gradient of Shh signaling is interpreted by the regulatory logic of a downstream transcriptional network. The design of the network, which links three transcription factors to Shh signaling, is responsible for differential spatial and temporal gene expression. In addition, the network renders cells insensitive to fluctuations in signaling and confers hysteresis--memory of the signal. Our findings reveal that morphogen interpretation is an emergent property of the architecture of a transcriptional network that provides robustness and reliability to tissue patterning., (Copyright © 2012 Elsevier Inc. All rights reserved.)
- Published
- 2012
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