Spreading of Alpha Synuclein from Glioblastoma Cells towards Astrocytes Correlates with Stem-like Properties

CANCERS(2022)

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摘要
Simple Summary The present study questions whether cells from glioblastoma multiforme (GBM), which overexpress alpha-synuclein (alpha-syn), may alter neighboring non-tumoral astrocyte cell lines. The occurrence of alpha-syn in GBM correlates with the expression of the stem cell marker nestin. When astrocytes are co-cultured with GBM cells in a trans-well apparatus the occurrence of alpha-syn and nestin rises remarkably. The increase in alpha-syn in co-cultured astrocytes is more pronounced at the plasma membrane, which mimics the placement of alpha-syn in GBM cells. When the mTOR inhibitor rapamycin is administered, GBM-induced expression of alpha-syn and nestin within co-cultured astrocytes is occluded, and morphological alterations are reverted. In the presence of rapamycin the sub-cellular placement of alpha-syn is modified being allocated within whorls and vacuoles instead of the plasma membrane. The effects induced by rapamycin occur both in baseline GBM cells and within astrocytes primed by co-cultured GBM cells. Evidence has been recently provided showing that, in baseline conditions, GBM cells feature high levels of alpha-syn which are way in excess compared with alpha-syn levels measured within control astrocytes. These findings are consistent along various techniques. In fact, they are replicated by using antibody-based protein detection, such as immuno-fluorescence, immuno-peroxidase, immunoblotting and ultrastructural stoichiometry as well as by measuring alpha-syn transcript levels at RT-PCR. The present manuscript further questions whether such a high amount of alpha-syn may be induced within astrocytes, which are co-cultured with GBM cells in a trans-well system. In astrocytes co-cultured with GBM cells, alpha-syn overexpression is documented. Such an increase is concomitant with increased expression of the stem cell marker nestin, along with GBM-like shifting in cell morphology. This concerns general cell morphology, subcellular compartments and profuse convolutions at the plasma membrane. Transmission electron microscopy (TEM) allows us to assess the authentic amount and sub-cellular compartmentalization of alpha-syn and nestin within baseline GBM cells and the amount, which is induced within co-cultured astrocytes, as well as the shifting of ultrastructure, which is reminiscent of GBM cells. These phenomena are mitigated by rapamycin administration, which reverts nestin- and alpha-syn-related overexpression and phenotypic shifting within co-cultured astrocytes towards baseline conditions of naive astrocytes. The present study indicates that: (i) alpha-syn increases in astrocyte co-cultured with GBM cells; (ii) alpha-syn increases in astrocytes along with the stem cell marker nestin; (iii) alpha-syn increases along with a GBM-like shift of cell morphology; (iv) all these changes are replicated in different GBM cell lines and are reverted by the mTOR inhibitor rapamycin. The present findings indicate that alpha-syn does occur in high amount within GBM cells and may transmit to neighboring astrocytes as much as a stem cell phenotype. This suggests a mode of tumor progression for GBM cells, which may transform, rather than merely substitute, surrounding tissue; such a phenomenon is sensitive to mTOR inhibition.
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关键词
glioblastoma multiforme, synucleins, stem cell markers, cell clearing systems, trans-well co-culture model, mammalian target of rapamycin, transmission electron microscopy
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