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Rossoll, W.

Publications and source records attributed to Rossoll, W..

2 recordsLinked to original sources

Cell-specific crosstalk proteomics reveals cathepsin B signaling as a driver of glioblastoma malignancy near the subventricular zone

Glioblastoma (GBM) is the most prevalent and aggressive malignant primary brain tumor. GBM proximal to the lateral ventricles (LVs) is more aggressive, potentially due to subventricular zone (SVZ) contact. Despite this, crosstalk between GBM and neural stem/progenitor cells (NSC/NPCs) is not well understood. Using cell-specific proteomics, we show that LV-proximal GBM prevents neuronal maturation of NSCs through induction of senescence. Additionally, GBM brain tumor initiating cells (BTICs) increase expression of CTSB upon interaction with NPCs. Lentiviral knockdown and recombinant protein experiments reveal both cell-intrinsic and soluble CTSB promote malignancy-associated phenotypes in BTICs. Soluble CTSB stalls neuronal maturation in NPCs while promoting senescence, providing a link between LV-tumor proximity and neurogenesis disruption. Finally, we show LV-proximal CTSB upregulation in patients, showing the relevance of this crosstalk in human GBM biology. These results demonstrate the value of proteomic analysis in tumor microenvironment research and provide direction for new therapeutic strategies in GBM. HighlightsO_LIPeriventricular GBM is more malignant and disrupts neurogenesis in a rodent model. C_LIO_LICell-specific proteomics elucidates tumor-promoting crosstalk between GBM and NPCs. C_LIO_LINPCs induce upregulated CTSB expression in GBM, promoting tumor progression. C_LIO_LIGBM stalls neurogenesis and promotes NPC senescence via CTSB. C_LI

cancer biology↗

C-Jun N-terminal Kinase Promotes Stress Granule Assembly and Neurodegeneration in C9orf72-mediated ALS and FTD

Stress granules (SGs), RNA/protein condensates assembled in cells under stress, are believed to play a critical role in the pathogenesis of amyotrophic lateral sclerosis (ALS) and frontotemporal dementia (FTD). However, how SG assembly is regulated and related to pathomechanism is incompletely understood. Here, we show that ER stress activates JNK via IRE1 in fly and cellular models of C9orf72-mediated ALS/FTD (c9ALS/FTD), the most common genetic form of ALS/FTD. Furthermore, activated JNK promotes SG assembly induced by poly(GR) and poly(PR), two toxic proteins implicated in c9ALS/FTD, by promoting the transcription of G3BP1, a key SG protein. Consistent with these findings, JNK or IRE1 inhibition reduced SG formation, G3BP1 mRNA and protein levels, and neurotoxicity in cells overexpressing poly(GR) and poly(PR) or neurons derived from c9ALS/FTD patient induced pluripotent stem cells (iPSCs). Our findings connect ER stress, JNK, and SG assembly in a unified pathway contributing to c9ALS/FTD neurodegeneration.

neuroscience↗