A Hh-driven gene network controls specification, pattern and size of the Drosophila simple eyes
Daniel Aguilar-Hidalgo,Daniel Aguilar-Hidalgo,María A. Domínguez-Cejudo,Gabriele Amore,Anette Brockmann,M. C. Lemos,A. Córdoba,Fernando Casares +7 more
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TL;DR: The ocellar gene network is expanded to explain how the interaction between the Hh gradient and this gene network results in the generation of stable mutually exclusive gene expression domains and some general implications may have in some Hh-driven gene networks.
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Abstract: During development, extracellular signaling molecules interact with intracellular gene networks to control the specification, pattern and size of organs. One such signaling molecule is Hedgehog (Hh). Hh is known to act as a morphogen, instructing different fates depending on the distance to its source. However, how Hh, when signaling across a cell field, impacts organ-specific transcriptional networks is still poorly understood. Here, we investigate this issue during the development of the Drosophila ocellar complex. The development of this sensory structure, which is composed of three simple eyes (or ocelli) located at the vertices of a triangular patch of cuticle on the dorsal head, depends on Hh signaling and on the definition of three domains: two areas of eya and so expression--the prospective anterior and posterior ocelli--and the intervening interocellar domain. Our results highlight the role of the homeodomain transcription factor engrailed (en) both as a target and as a transcriptional repressor of hh signaling in the prospective interocellar region. Furthermore, we identify a requirement for the Notch pathway in the establishment of en maintenance in a Hh-independent manner. Therefore, hh signals transiently during the specification of the interocellar domain, with en being required here for hh signaling attenuation. Computational analysis further suggests that this network design confers robustness to signaling noise and constrains phenotypic variation. In summary, using genetics and modeling we have expanded the ocellar gene network to explain how the interaction between the Hh gradient and this gene network results in the generation of stable mutually exclusive gene expression domains. In addition, we discuss some general implications our model may have in some Hh-driven gene networks.
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Citations
Cross-talk between Notch and Hedgehog regulates hepatic stellate cell fate in mice
Guanhua Xie,Gamze Karaca,Marzena Swiderska-Syn,Gregory A. Michelotti,Leandi Krüger,Yuping Chen,Richard T. Premont,Steve S. Choi,Anna Mae Diehl +8 more
TL;DR: The Notch and Hedgehog pathways interact to control the fate of key cell types involved in adult liver repair by modulating epithelial‐to‐mesenchymal–like/mesenchcyal‐ to‐epithelial–like transitions.
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Molecular characterization and embryonic origin of the eyes in the common house spider Parasteatoda tepidariorum.
Christoph Schomburg,Natascha Turetzek,Magdalena Ines Schacht,Julia Schneider,Phillipp Kirfel,Phillipp Kirfel,Nikola-Michael Prpic,Nico Posnien +7 more
TL;DR: This study of retinal determination genes in the common house spider P. tepidariorum represents the first comprehensive analysis of the well-known retinaldetermination genes in arthropods outside insects.
A Model of the Spatio-temporal Dynamics of Drosophila Eye Disc Development.
Patrick Fried,Patrick Fried,Máximo Sánchez-Aragón,Daniel Aguilar-Hidalgo,Birgitta Lehtinen,Fernando Casares,Dagmar Iber,Dagmar Iber +7 more
TL;DR: A spatio-temporal model of the growing eye disc based on the regulatory interactions controlled by the signals Decapentaplegic, Hedgehog and the transcription factor Homothorax is developed and it is shown that the model can explain several mutant phenotypes, but fails to reproduce the previously observed scaling of the Dpp gradient in the anterior compartment.
Critical Point in Self-Organized Tissue Growth.
Daniel Aguilar-Hidalgo,Daniel Aguilar-Hidalgo,Steffen Werner,Steffen Werner,Ortrud Wartlick,Marcos González-Gaitán,Benjamin M. Friedrich,Benjamin M. Friedrich,Frank Jülicher +8 more
TL;DR: A theory of pattern formation in growing domains inspired by biological examples of tissue development is presented and a critical point of this feedback dynamics is identified, characterized by spatially homogeneous growth and proportional scaling of patterns with tissue length.
Engrailed 1 coordinates cytoskeletal reorganization to induce myofibroblast differentiation.
Andrea-Hermina Györfi,Alexandru-Emil Matei,Maximilian Fuchs,Chunguang Liang,Aleix Rius Rigau,Xuezhi Hong,Honglin Zhu,Honglin Zhu,Markus Luber,Christina Bergmann,Clara Dees,Ingo Ludolph,Raymund E. Horch,Oliver Distler,Jiucun Wang,Bertram Bengsch,Bertram Bengsch,Georg Schett,Meik Kunz,Jörg H W Distler +19 more
TL;DR: In this article, Engrailed 1 (EN1) is reexpressed in multiple fibroblast subpopulations in the skin of SSc patients, and EN1 regulates gene expression by modulating the activity of SP1 and other SP transcription factors.
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