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Updated: Jun 21, 2026

Utilizing In Vivo Postnatal Electroporation to Study Cerebellar Granule Neuron Morphology and Synapse Development
Published on: June 9, 2021
BDNF-mediated cerebellar granule cell development is impaired in mice null for CaMKK2 or CaMKIV
Manabu Kokubo1, Masahiro Nishio, Thomas J Ribar
1Department of Pharmacology and Cancer Biology, Duke University Medical Center, Durham, North Carolina 27710, USA.
Abstract:
The Ca(2+)/calmodulin-activated kinases CaMKK2 and CaMKIV are highly expressed in the brain where they play important roles in activating intracellular responses to elevated Ca(2+). To address the biological functions of Ca(2+) signaling via these kinases during brain development, we have examined cerebellar development in mice null for CaMKK2 or CaMKIV. Here, we demonstrate that CaMKK2/CaMKIV-dependent phosphorylation of cAMP response element-binding protein (CREB) correlates with Bdnf transcription, which is required for normal development of cerebellar granule cell neurons. We show in vivo and in vitro that the absence of either CaMKK2 or CaMKIV disrupts the ability of developing cerebellar granule cells in the external granule cell layer to cease proliferation and begin migration to the internal granule cell layer. Furthermore, loss of CaMKK2 or CaMKIV results in decreased CREB phosphorylation (pCREB), Bdnf exon I and IV-containing mRNAs, and brain-derived neurotrophic factor (BDNF) protein in cerebellar granule cell neurons. Reexpression of CaMKK2 or CaMKIV in granule cells that lack CaMKK2 or CaMKIV, respectively, restores pCREB and BDNF to wild-type levels and addition of BDNF rescues granule cell migration in vitro. These results reveal a previously undefined role for a CaMKK2/CaMKIV cascade involved in cerebellar granule cell development and show specifically that Ca(2+)-dependent regulation of BDNF through CaMKK2/CaMKIV is required for this process.
Insights
Calcium signaling kinases CaMKK2 and CaMKIV are crucial for cerebellar development. Their absence impairs neuron migration by reducing brain-derived neurotrophic factor (BDNF) levels.
Area of Science:
- Neuroscience
- Molecular Biology
- Developmental Biology
Background:
- Calcium/calmodulin-activated kinases (CaMKK2 and CaMKIV) are highly expressed in the brain.
- These kinases activate intracellular responses to calcium (Ca2+).
- Their role in brain development requires further elucidation.
Purpose of the Study:
- To investigate the function of CaMKK2 and CaMKIV in cerebellar development.
- To understand the Ca2+ signaling pathway involving these kinases during neurodevelopment.
Main Methods:
- Analysis of cerebellar development in mice lacking CaMKK2 or CaMKIV.
- Assessment of CREB phosphorylation (pCREB), Bdnf transcription, and BDNF protein levels.
- In vivo and in vitro experiments involving gene re-expression and BDNF addition.
Main Results:
- Absence of CaMKK2 or CaMKIV disrupts cerebellar granule cell proliferation and migration.
- Loss of these kinases decreases pCREB, Bdnf mRNA, and BDNF protein.
- Restoration of CaMKK2 or CaMKIV re-establishes pCREB and BDNF levels, rescuing cell migration.
Conclusions:
- A CaMKK2/CaMKIV cascade regulates cerebellar granule cell development.
- Ca2+-dependent regulation of BDNF via CaMKK2/CaMKIV is essential for this process.

