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High Throughput Microinjections of Sea Urchin Zygotes
Published on: January 21, 2014
Different routes lead to apoptosis in unfertilized sea urchin eggs
Laetitia Philippe1, Lucie Tosca, Wen Ling Zhang
1Centre de Neurosciences Paris-Sud (CNPS), CNRS UMR 8195 Université Paris XI, Bât. 444, 91405, Orsay Cedex, France.
Abstract:
Results obtained in various species, from mammals to invertebrates, show that arrest in the cell cycle of mature oocytes is due to a high ERK activity. Apoptosis is stimulated in these oocytes if fertilization does not occur. Our previous data suggest that apoptosis of unfertilized sea urchin eggs is the consequence of an aberrant short attempt of development that occurs if ERK is inactivated. They contradict those obtained in starfish, another echinoderm, where inactivation of ERK delays apoptosis of aging mature oocytes that are nevertheless arrested at G1 of the cell cycle as in the sea urchin. This suggests that the cell death pathway that can be activated in unfertilized eggs is not the same in sea urchin and in starfish. In the present study, we find that protein synthesis is necessary for the survival of unfertilized sea urchin eggs, contrary to starfish. We also compare the effects induced by Emetine, an inhibitor of protein synthesis, with those triggered by Staurosporine, a non specific inhibitor of protein kinase that is widely used to induce apoptosis in many types of cells. Our results indicate that the unfertilized sea urchin egg contain different mechanisms capable of leading to apoptosis and that rely or not on changes in ERK activity, acidity of intracellular organelles or intracellular Ca and pH. We discuss the validity of some methods to investigate cell death such as measurements of caspase activation with the fluorescent caspase indicator FITC-VAD-fmk or acidification of intracellular organelles, methods that may lead to erroneous conclusions at least in the sea urchin model.
Insights
Unfertilized sea urchin eggs require protein synthesis for survival, unlike starfish eggs. This study reveals distinct apoptosis pathways in sea urchin eggs, independent of ERK activity, Ca, or pH.
Area of Science:
- Developmental Biology
- Cell Biology
- Apoptosis Research
Background:
- Mature oocyte cell cycle arrest across species is linked to high ERK activity.
- Unfertilized oocytes undergo apoptosis, but the underlying mechanisms differ between species.
- Previous studies suggest ERK inactivation triggers apoptosis in sea urchin eggs, contrasting with starfish.
Purpose of the Study:
- To investigate the role of protein synthesis in the survival of unfertilized sea urchin eggs.
- To compare apoptosis pathways in sea urchin and starfish unfertilized eggs.
- To examine the influence of ERK activity, intracellular organelle acidity, Ca, and pH on sea urchin egg apoptosis.
Main Methods:
- Comparative analysis of unfertilized eggs from sea urchin and starfish.
- Inhibition of protein synthesis using Emetine.
- Induction of apoptosis using Staurosporine and assessment of ERK activity, intracellular organelle acidity, Ca, and pH.
Main Results:
- Protein synthesis is essential for the survival of unfertilized sea urchin eggs, but not starfish eggs.
- Unfertilized sea urchin eggs exhibit multiple apoptosis pathways, some independent of ERK activity, Ca, or pH.
- Apoptosis induction methods like caspase activation assays and organelle acidification may yield misleading results in sea urchins.
Conclusions:
- Unfertilized sea urchin eggs possess diverse, adaptable apoptosis mechanisms.
- Protein synthesis is a critical survival factor for unfertilized sea urchin eggs.
- Caution is advised when using certain methods to study cell death in sea urchin oocytes.
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