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Postnatal distribution of cpp32/caspase 3 mRNA in the mouse central nervous system: an in situ hybridization study
1Department of Psychiatry, University Hospital of Geneva, Switzerland. fabienne.debilbao@medecine.unige.ch
Abstract:
Apoptotic cell death is a major feature of the developing nervous system and of certain neurodegenerative diseases. Various gene effectors and repressors of this type of cell death have been identified. Among them, bcl-xl and bax, which encode for antiapoptotic and proapoptotic proteins, respectively, play major roles during development. The gene cpp32 encodes for the caspase 3 cysteine protease and is a critical mediator of cell death during embryonic development in the mammalian brain. To gain insight into the possible implications of these cell death genes during the postnatal development, we investigated the expression of bax, bcl-xl, and cpp32 mRNAs by in situ hybridization in the mouse brain from birth to adulthood. Whereas bax and bcl-xl mRNAs were expressed widely in neonates and adult mice, our results showed that cpp32 mRNA levels were decreased strongly from 12 postnatal days. From 1 postnatal day to 12 postnatal days, cpp32 mRNA was expressed ubiquitously in all brain nuclei, including areas where neurogenesis occurred. A positive correlation between areas displaying high levels of mRNA and apoptotic nuclei also was shown. In the adult, cpp32 mRNA was restricted to the piriform and entorhinal cortices, the neocortex, and to areas where neurogenesis is observed (e.g., olfactory bulb and dentate gyrus). The same pattern of expression was observed in adult mice over-expressing the antiapoptotic protein Bcl-2. These results demonstrate that the expression of cpp32 mRNA is highly regulated during the mouse postnatal period, leading to a specific distribution in the adult central nervous system. Moreover, the prevention of cell death by Bcl-2 likely is not linked to the regulation of caspase mRNA levels.
Insights
Postnatal brain development shows regulated caspase 3 (cpp32) mRNA expression, decreasing significantly after 12 days. This pattern is linked to apoptotic nuclei and persists even when antiapoptotic protein Bcl-2 is overexpressed.
Area of Science:
- Neuroscience
- Developmental Biology
- Molecular Biology
Background:
- Apoptotic cell death is crucial in nervous system development and neurodegenerative diseases.
- Genes like bcl-xl (antiapoptotic) and bax (proapoptotic) are key regulators.
- Caspase 3 (cpp32) is a critical mediator of mammalian brain cell death during embryonic development.
Purpose of the Study:
- Investigate the postnatal expression patterns of bax, bcl-xl, and cpp32 mRNAs in the mouse brain.
- Understand the role of these cell death genes during postnatal development.
- Correlate gene expression with apoptotic activity and neurogenesis.
Main Methods:
- In situ hybridization was used to examine mRNA expression.
- Analysis was conducted in mouse brains from birth to adulthood.
- Expression patterns were compared between normal and Bcl-2 overexpressing adult mice.
Main Results:
- Bax and bcl-xl mRNAs showed widespread expression in both neonates and adults.
- Cpp32 mRNA levels decreased significantly after 12 postnatal days.
- Cpp32 mRNA was ubiquitously expressed in all brain nuclei from postnatal day 1 to 12, correlating with apoptotic nuclei.
- In adults, cpp32 mRNA was restricted to specific regions like the piriform cortex, entorhinal cortex, neocortex, olfactory bulb, and dentate gyrus.
Conclusions:
- Cpp32 mRNA expression is highly regulated during mouse postnatal development, resulting in a specific adult CNS distribution.
- The observed pattern of cpp32 mRNA expression suggests its role in specific developmental processes and adult brain regions.
- Bcl-2's prevention of cell death is likely independent of regulating caspase mRNA levels.