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Efficient and Cost Effective Electroporation Method to Study Primary Cilium-Dependent Signaling Pathways in the Granule Cell Precursor
Published on: November 30, 2021
Multifaceted Functions of Rab23 on Primary Cilium-Mediated and Hedgehog Signaling-Mediated Cerebellar Granule Cell
C H H Hor1,2, J C W Lo3, A L S Cham3
1Department of Chemistry, Faculty of Science, Hong Kong Baptist University, Kowloon Tong, Hong Kong SAR, China eyleen_goh@nni.com.sg catherinehor@hkbu.edu.hk.
Abstract:
Sonic hedgehog (Shh) signaling from the primary cilium drives cerebellar granule cell precursor (GCP) proliferation. Mutations of hedgehog (Hh) pathway repressors commonly cause medulloblastoma, the most prevalent and malignant childhood brain tumor that arises from aberrant GCP proliferation. We demonstrate that Nestin Cre-driven conditional knock-out (CKO) of a Shh pathway repressor-Rab23 in the mouse brain of both genders caused mis-patterning of cerebellar folia and elevated GCP proliferation during early development, but with no prevalent occurrence of medulloblastoma at adult stage. Strikingly, Rab23-depleted GCPs exhibited upregulated basal level of Shh pathway activities despite showing an abnormal ciliogenesis of primary cilia. In line with the compromised ciliation, Rab23-depleted GCPs were desensitized against Hh pathway activity stimulations by Shh ligand and Smoothened (Smo) agonist-SAG, and exhibited attenuated stimulation of Smo-localization on the primary cilium in response to SAG. These results implicate multidimensional actions of Rab23 on Hh signaling cascade. Rab23 represses the basal level of Shh signaling, while facilitating primary cilium-dependent extrinsic Shh signaling activation. Collectively, our findings unravel instrumental roles of Rab23 in GCP proliferation and ciliogenesis. Furthermore, Rab23's potentiation of Shh signaling pathway through the primary cilium and Smo suggests a potential new therapeutic strategy for Smo/primary cilium-driven medulloblastoma.SIGNIFICANCE STATEMENT Primary cilium and Sonic hedgehog (Shh) signaling are known to regulate granule cell precursor (GCP) proliferation. Aberrant overactivation of Shh signaling pathway ectopically increases GCP proliferation and causes malignant childhood tumor called medulloblastoma. However, the genetic and molecular regulatory cascade of GCP tumorigenesis remains incompletely understood. Our finding uncovers Rab23 as a novel regulator of hedgehog (Hh) signaling pathway activity and cell proliferation in GCP. Intriguingly, we demonstrated that Rab23 confers dual functions in regulating Shh signaling; it potentiates primary cilium and Shh/Smoothened (Smo)-dependent signaling activation, while antagonizes basal level Hh activity. Our data present a previously underappreciated aspect of Rab23 in mediating extrinsic Shh signaling upstream of Smo. This study sheds new light on the mechanistic insights underpinning Shh signaling-mediated GCP proliferation and tumorigenesis.
Insights
Rab23, a repressor of Sonic hedgehog (Shh) signaling, plays a dual role in cerebellar development. It inhibits basal Shh activity while promoting Shh pathway activation via primary cilia, impacting granule cell precursor proliferation.
Area of Science:
- Developmental Biology
- Molecular Biology
- Cancer Research
Background:
- Sonic hedgehog (Shh) signaling, regulated by primary cilia, is crucial for cerebellar granule cell precursor (GCP) proliferation.
- Mutations in hedgehog (Hh) pathway repressors are linked to medulloblastoma, a common childhood brain tumor arising from aberrant GCP proliferation.
Purpose of the Study:
- To investigate the role of Rab23, an Shh pathway repressor, in GCP proliferation and medulloblastoma development.
- To elucidate the mechanisms by which Rab23 regulates Shh signaling and ciliogenesis.
Main Methods:
- Conditional knock-out (CKO) of Rab23 in mouse brains using Nestin Cre.
- Analysis of cerebellar folia patterning, GCP proliferation, and Shh pathway activity.
- Assessment of primary cilia structure and Smoothened (Smo) localization.
Main Results:
- Rab23 CKO mice showed cerebellar mis-patterning and elevated GCP proliferation but no prevalent medulloblastoma.
- Rab23-depleted GCPs had increased basal Shh activity, abnormal ciliogenesis, and desensitization to Shh stimulation.
- Rab23-depleted GCPs showed reduced Smo localization to primary cilia upon stimulation.
Conclusions:
- Rab23 exhibits dual functions: repressing basal Shh activity and facilitating primary cilium-dependent Shh signaling.
- Rab23 is essential for normal GCP proliferation and ciliogenesis.
- Rab23's regulation of Shh signaling via primary cilia and Smo offers potential therapeutic strategies for medulloblastoma.
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