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Tis21 Knock-Out Enhances the Frequency of Medulloblastoma in Patched 1 Heterozygous Mice by Inhibiting the Cxcl3-Dependent Migration of Cerebellar Neurons.

Authors :
Farioli-Vecchioli, Stefano
CinĂ , Irene
Ceccarelli, Manuela
Micheli, Laura
Leonardi, Luca
Ciotti, Maria Teresa
De Bardi, Marco
Di Rocco, Concezio
Pallini, Roberto
Cavallaro, Sebastiano
Tirone, Felice
Source :
Journal of Neuroscience; 10/31/2012, Vol. 32 Issue 44, p15547-15564, 18p
Publication Year :
2012

Abstract

A failure in the control of proliferation of cerebellar granule neuron precursor cells (GCPs), located in the external granular layer (EGL) of the cerebellum, gives rise to medulloblastoma. To investigate the process of neoplastic transformation of GCPs, we generated a new medulloblastoma model by crossing Patchedl heterozygous mice, which develop medulloblastomas with low frequency, with mice lacking the Tis21 gene. Overexpression of Tis21 is known to inhibit proliferation and trigger differentiation of GCPs; its expression decreases in human medulloblastomas. Double-knock-out mice show a striking increase in the frequency of medulloblastomas and hyperplastic EGL lesions, formed by preneoplastic GCPs. Tis21 deletion does not affect the proliferation of GCPs but inhibits their differentiation and, chiefly, their intrinsic ability to migrate outside the EGL. This defect of migration may represent an important step in medulloblastoma formation, as GCPs, remaining longer in the EGL proliferative niche, may become more prone to transformation. By genome-wide analysis, we identified the chemokine Cxcl3 as a target of Tis21. Cxcl3 is downregulated in Ti's2i-null GCPs of EGL and lesions; addition of Cxcl3 to cerebellar slices rescues the defective migration of T/s2/-null GCPs and, remarkably, reduces the area of hyperplastic lesions. As Tis21 activates Cxcl3 transcription, our results suggest that Tis21 induces migration of GCPs through Cxcl3, which may represent a novel target for medulloblastoma therapy. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02706474
Volume :
32
Issue :
44
Database :
Complementary Index
Journal :
Journal of Neuroscience
Publication Type :
Academic Journal
Accession number :
83170565
Full Text :
https://doi.org/10.1523/JNEUROSCI.0412-12.2012