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Updated: Jul 19, 2026

Generation of Transgenic Hydra by Embryo Microinjection
Published on: September 11, 2014
The cAMP response element binding protein (CREB) as an integrative HUB selector in metazoans: clues from the hydra
Simona Chera1, Kostas Kaloulis, Brigitte Galliot
1Department of Zoology and Animal Biology, University of Geneva, Sciences III, 30 Quai Ernest Ansermet, CH-1211 Geneve 4, Switzerland.
Abstract:
In eukaryotic cells, a multiplicity of extra-cellular signals can activate a unique signal transduction system that at the nuclear level will turn on a variety of target genes, eliciting thus diverse responses adapted to the initial signal. How distinct signals can converge on a unique signalling pathway that will nevertheless produce signal-specific responses provides a theoretical paradox that can be traced back early in evolution. In bilaterians, the CREB pathway connects diverse extra-cellular signals via cytoplasmic kinases to the CREB transcription factor and the CBP co-activator, regulating according to the context, cell survival, cell proliferation, cell differentiation, pro-apoptosis, long-term memory, hence achieving a "hub" function for cellular and developmental processes. In hydra, the CREB pathway is highly conserved and activated during early head regeneration through RSK-dependent CREB phosphorylation. We show here that the CREB transcription factor and the RSK kinase are co-expressed in all three hydra cell lineages including dividing interstitial stem cells, proliferating nematoblasts, proliferating spermatogonia and spermatocytes, differentiating and mature neurons as well as ectodermal and endodermal myoepithelial cells. In addition, CREB gene expression is specifically up-regulated during early regeneration and early budding. When the CREB function was chemically prevented, the early post-amputation induction of the HyBraI gene was no longer observed and head regeneration was stacked. Thus, in hydra, the CREB pathway appears already involved in multiple tasks, such as reactivation of developmental programs in an adult context, self-renewal of stem cells, proliferation of progenitors and neurogenesis. Consequently, the hub function played by the CREB pathway was established early in animal evolution and might have contributed to the formation of an efficient oral pole through the integration of the neurogenic and patterning functions.
Insights
The CREB pathway acts as a central hub in hydra, regulating stem cell renewal, neurogenesis, and regeneration. This ancient signaling system
Area of Science:
- Cellular and Molecular Biology
- Developmental Biology
- Evolutionary Biology
Background:
- Eukaryotic cells utilize signal transduction pathways to translate external stimuli into specific gene expression programs.
- The CREB (cAMP response element-binding protein) pathway serves as a crucial signaling hub in bilaterians, integrating diverse signals for cellular processes and development.
- Understanding the evolutionary origins of such conserved signaling hubs provides insights into fundamental biological mechanisms.
Purpose of the Study:
- To investigate the role and conservation of the CREB pathway in the simple freshwater polyp hydra.
- To determine the involvement of CREB and its associated kinase RSK in hydra's regeneration and asexual reproduction processes.
- To elucidate the evolutionary significance of the CREB pathway's hub function in early animal development.
Main Methods:
- Analysis of CREB and RSK gene and protein co-expression across different hydra cell lineages.
- Quantitative assessment of CREB gene expression during regeneration and budding.
- Functional inhibition of CREB activity using chemical inhibitors to observe effects on regeneration and gene induction.
Main Results:
- CREB and RSK are co-expressed in all major hydra cell types, including stem cells, progenitors, and neurons.
- CREB gene expression is significantly upregulated during early head regeneration and budding.
- Inhibition of CREB function blocks the induction of the HyBraI gene and halts head regeneration.
Conclusions:
- The CREB pathway is a highly conserved signaling hub in hydra, essential for reactivating developmental programs in adult contexts.
- This pathway plays critical roles in stem cell self-renewal, progenitor proliferation, and neurogenesis in hydra.
- The hub function of the CREB pathway was established early in animal evolution, potentially contributing to the development of complex body plans like the oral pole.
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