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Balanced effect of PACAP and FasL on granule cell death during cerebellar development: a morphological, functional and behavioural characterization
- Source :
- Journal of Neurochemistry, Journal of Neurochemistry, Wiley, 2010, 113 (2), pp.329-40. ⟨10.1111/j.1471-4159.2009.06555.x⟩
- Publication Year :
- 2010
-
Abstract
- International audience; It is now established that the development of the CNS requires equilibrium between cell survival and apoptosis. Pituitary adenylate cyclase-activating polypeptide (PACAP) exerts a powerful protective effect on cerebellar granule cells by inhibiting the caspase 3. In contrast, Fas ligand (FasL) plays an essential role during ontogenesis in eliminating supernumerary neurons by apoptosis. To determine if PACAP and FasL interact during cerebellar development, we characterized the effects of these factors on cerebellar morphogenesis and caspase 3 activity in PACAP+/+ and PACAP-/- mice. First, we demonstrated in vivo that PACAP is able to reverse the diminution of internal granule cell layer thickness induced by FasL in PACAP+/+ and PACAP-/- mice. Second, ex vivo and immunohistochemical studies revealed that interaction between FasL and PACAP occurs through the caspase 3 activity. Third, behavioural study showed a significant difference for the PACAP + FasL group in the righting reflex test at P8 which does not persist at P60. Finally, a time course study revealed that the pro-apoptotic effect of FasL characterized at P8 was followed by a progressive compensatory mechanism in caspase 3 activity and bromodeoxyuridine incorporation. These data suggest that PACAP and FasL interact during cerebellar development to control apoptosis of granule cells and may affect some motor cerebellar functions.
- Subjects :
- MESH: Cell Death
Cerebellum
Time Factors
MESH: Neurons
Biochemistry
MESH: Mice, Knockout
Fas ligand
MESH: Animals, Newborn
Mice
0302 clinical medicine
MESH: Gene Expression Regulation, Developmental
MESH: Behavior, Animal
MESH: Caspase 3
MESH: Animals
Caspase
MESH: Cell Size
MESH: Bromodeoxyuridine
Mice, Knockout
Neurons
0303 health sciences
MESH: Muscle, Skeletal
MESH: Statistics, Nonparametric
biology
Behavior, Animal
Cell Death
Caspase 3
Gene Expression Regulation, Developmental
MESH: Motor Activity
Pituitary adenylate cyclase-activating peptide
medicine.anatomical_structure
[SDV.TOX]Life Sciences [q-bio]/Toxicology
Pituitary Adenylate Cyclase-Activating Polypeptide
hormones, hormone substitutes, and hormone antagonists
medicine.medical_specialty
Programmed cell death
endocrine system
Fas Ligand Protein
MESH: Reflex
MESH: Psychomotor Performance
In Vitro Techniques
Motor Activity
Statistics, Nonparametric
03 medical and health sciences
Cellular and Molecular Neuroscience
MESH: Mice, Inbred C57BL
Internal medicine
MESH: Cell Proliferation
Reflex
medicine
Animals
RNA, Messenger
Muscle, Skeletal
MESH: Mice
030304 developmental biology
MESH: RNA, Messenger
Cell Proliferation
Cell Size
MESH: Pituitary Adenylate Cyclase-Activating Polypeptide
MESH: Time Factors
Granule cell
MESH: Cerebellum
MESH: Fas Ligand Protein
Mice, Inbred C57BL
Endocrinology
Animals, Newborn
Bromodeoxyuridine
Apoptosis
biology.protein
030217 neurology & neurosurgery
Psychomotor Performance
Subjects
Details
- ISSN :
- 14714159 and 00223042
- Volume :
- 113
- Issue :
- 2
- Database :
- OpenAIRE
- Journal :
- Journal of neurochemistry
- Accession number :
- edsair.doi.dedup.....2f056f36f4812ece7baba0e0ab2fcbd8
- Full Text :
- https://doi.org/10.1111/j.1471-4159.2009.06555.x⟩