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Updated: Jul 11, 2026

Detection of Alternative Splicing During Epithelial-Mesenchymal Transition
Published on: October 9, 2014
Developmental expression and differentiation-related neuron-specific splicing of metastasis suppressor 1 (Mtss1) in
Alexander Glassmann1, Sabine Molly, Lachezar Surchev
1Anatomisches Institut, Anatomie & Zellbiologie, University of Bonn, Bonn, Germany. alexander.glassmann@uni-bonn.de
Background:
Mtss1 encodes an actin-binding protein, dysregulated in a variety of tumors, that interacts with sonic hedgehog/Gli signaling in epidermal cells. Given the prime importance of this pathway for cerebellar development and tumorigenesis, we assessed expression of Mtss1 in the developing murine cerebellum and human medulloblastoma specimens.
Results:
During development, Mtss1 is transiently expressed in granule cells, from the time point they cease to proliferate to their synaptic integration. It is also expressed by granule cell precursor-derived medulloblastomas. In the adult CNS, Mtss1 is found exclusively in cerebellar Purkinje cells. Neuronal differentiation is accompanied by a switch in Mtss1 splicing. Whereas immature granule cells express a Mtss1 variant observed also in peripheral tissues and comprising exon 12, this exon is replaced by a CNS-specific exon, 12a, in more mature granule cells and in adult Purkinje cells. Bioinformatic analysis of Mtss1 suggests that differential exon usage may affect interaction with Fyn and Src, two tyrosine kinases previously recognized as critical for cerebellar cell migration and histogenesis. Further, this approach led to the identification of two evolutionary conserved nuclear localization sequences. These overlap with the actin filament binding site of Mtss1, and one also harbors a potential PKA and PKC phosphorylation site.
Conclusion:
Both the pattern of expression and splicing of Mtss1 is developmentally regulated in the murine cerebellum. These findings are discussed with a view on the potential role of Mtss1 for cytoskeletal dynamics in developing and mature cerebellar neurons.
Insights
Mtss1 expression and splicing in the developing cerebellum are developmentally regulated. This actin-binding protein
Area of Science:
- Neuroscience
- Molecular Biology
- Developmental Biology
Background:
- Mtss1 encodes an actin-binding protein involved in sonic hedgehog/Gli signaling.
- This pathway is crucial for cerebellar development and tumorigenesis.
- Mtss1 dysregulation is observed in various tumors.
Purpose of the Study:
- To investigate the expression and splicing of Mtss1 during murine cerebellar development.
- To analyze Mtss1 in human medulloblastoma specimens.
- To understand Mtss1's role in cerebellar cell differentiation and function.
Main Methods:
- Expression analysis in developing murine cerebellum and human medulloblastoma.
- Analysis of Mtss1 splicing patterns during neuronal differentiation.
- Bioinformatic analysis of Mtss1 protein structure and potential interactions.
Main Results:
- Mtss1 is transiently expressed in developing cerebellar granule cells and medulloblastomas.
- A switch in Mtss1 splicing occurs during neuronal differentiation, involving CNS-specific exon 12a.
- Mtss1 is exclusively found in adult cerebellar Purkinje cells.
- Bioinformatic analysis revealed conserved nuclear localization sequences and potential kinase interaction sites.
Conclusions:
- Mtss1 expression and splicing are developmentally regulated in the cerebellum.
- Findings suggest a role for Mtss1 in cytoskeletal dynamics of developing and mature cerebellar neurons.
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