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Purkinje Cell Survival in Organotypic Cerebellar Slice Cultures
Published on: December 18, 2019
Klf9 is necessary and sufficient for Purkinje cell survival in organotypic culture
Abstract:
During their phase of developmental programmed cell death (PCD), neurons depend on target-released trophic factors for survival. After this period, however, they critically change as their survival becomes target-independent. The molecular mechanisms underlying this major transition remain poorly understood. Here, we investigated, which transcription factors (TFs) might be responsible for the closure of PCD. We used Purkinje cells as a model since their PCD is restricted to the first postnatal week in the mouse cerebellum. Transcriptome analysis of Purkinje cells during or after PCD allowed the identification of Krüppel like factor 9 (Klf9) as a candidate for PCD closure, given its high increase of expression at the end of the 1st postnatal week. Klf9 function was tested in organotypic cultures, through lentiviral vector-mediated manipulation of Klf9 expression. In absence of trophic factors, the Purkinje cell survival rate is of 40%. Overexpression of Klf9 during PCD dramatically increases the Purkinje cell survival rate from 40% to 88%, whereas its down-regulation decreases it to 14%. Accordingly, in organotypic cultures of Klf9 knockout animals, Purkinje cell survival rate is reduced by half as compared to wild-type mice. Furthermore, the absence of Klf9 could be rescued by Purkinje cell trophic factors, Insulin growth factor-1 and Neurotrophin3. Altogether, our results ascribe a clear role of Klf9 in Purkinje cell survival. Thus, we propose that Klf9 might be a key molecule involved in turning off the phase of Purkinje PCD.
Insights
Krüppel like factor 9 (Klf9) promotes neuron survival by closing programmed cell death (PCD) pathways. This transcription factor is crucial for the target-independent survival of Purkinje cells in the developing cerebellum.
Area of Science:
- Neuroscience
- Developmental Biology
- Molecular Biology
Background:
- Neurons require trophic factors for survival during programmed cell death (PCD).
- The transition to target-independent survival after PCD is poorly understood at the molecular level.
Purpose of the Study:
- To identify transcription factors (TFs) responsible for the closure of PCD in developing neurons.
- To investigate the role of Krüppel like factor 9 (Klf9) in Purkinje cell survival.
Main Methods:
- Transcriptome analysis of Purkinje cells during and after PCD.
- Lentiviral vector-mediated manipulation of Klf9 expression in organotypic cultures.
- Analysis of Purkinje cell survival in Klf9 knockout mice.
Main Results:
- Klf9 expression significantly increases at the end of the first postnatal week, coinciding with PCD closure.
- Klf9 overexpression enhances Purkinje cell survival in the absence of trophic factors, while Klf9 downregulation reduces survival.
- Purkinje cell survival is halved in Klf9 knockout mice, and this can be rescued by Insulin growth factor-1 and Neurotrophin3.
Conclusions:
- Klf9 plays a critical role in promoting Purkinje cell survival.
- Klf9 is proposed as a key molecule involved in terminating the phase of Purkinje cell programmed cell death.
