Glial toxicity in a Drosophila C9orf72 neurodegeneration model
Data files
Jul 31, 2026 version files 85.49 MB
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Figure_2_WM_Images.zip
28.05 MB
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Figure_3_CLEVR_Images.zip
13.52 MB
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Figure_5_WM_Images.zip
43.92 MB
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README.md
3.39 KB
Abstract
The most common genetic cause of both familial amyotrophic lateral sclerosis (ALS) and frontotemporal dementia (FTD) is an expanded G4C2 repeat in the first intron of the gene C9orf72. The C9orf72 repeat expansion is bidirectionally transcribed into sense and anti-sense RNA foci, and also produces dipeptide repeats (DPRs) via a non-canonical translation mechanism known as repeat-associated (RAN) translation. Each of these components of the G4C2 repeat expansion cause neurodegenerative effects in animal models when expressed in neurons, but impacts from glial expression are more poorly understood. Here, we use glial cell type-specific expression of individual DPRs, of RNA repeat-only, or of the G4C2 repeat, that produces both DPRs and RNA repeats, to systematically investigate glial toxicity of each component. We find that as with neurons, the GR and G4C2 transgenes produce the highest degree of toxicity when expressed in glia. Each of these transgenes are capable to produce the GR DPR, which also is the most toxic factor in neurons. We demonstrate that both the GR and G4C2 transgenes cause activation of mdg4, an endogenous retrovirus (ERV). Such ERV expression is a hallmark of TDP-43 dysfunction that is commonly observed in C9orf72 patients. We find that glial expression of either the GR or the G4C2 transgene is toxic to glial cells, but such expression does not cause loss nearby neurons. However, blocking apoptotic signaling within glia that express either GR or G4C2 via expression of the p35 caspase inhibitor further exacerbates effects on lifespan and ablating such glia via expression of the proapoptotic reaper gene partially ameliorates these effects. Together, these results indicate that expression of toxic C9orf72 components in glia produces deleterious effects on lifespan, though potentially through different mechanisms than seen in TDP-43 models of ALS/FTD.
Dataset DOI: 10.5061/dryad.1ns1rn98g
Description of the data and file structure
Figure 2 WM Images: Contains images used to generate Figure 2, Cell-intrinsic and non-autonomous toxicity of focal induction of C9 transgenes. Images are Z projections of confocal images through central brain five days (D5) after inducing each C9 transgene in SPG. Scale bar = 50 µM. Each subfile corresponds to one of the genotypes (G4C2, RO, GR, GA, Wildtype (denoted as 2U in files)) studied. Naming scheme for each image is Max_Date_Genotype_WM_SPG_D5_Image#_20x-1
Figure 3 CLEVR Images: Contains images used to generate Figure 3, Expression of either (G4C2)36 or GR36 drives replication of the mdg4 endogenous retrovirus. Images are confocal images showing expression of the mdg4-CLEVR reporter in anterior Drosophila brain at D6 of C9 transgene expression ((G4C2)36 RO and GA in supplement). Scale bar = 50 µm. Each subfile corresponds to one of the genotypes (G4C2, RO, GR, GA, Wildtype (denoted as 2U in files)) studied. Naming scheme for each image is Max_Date_Genotype_CLEVR_SPG_D6_Image#_20x-1
Figure 5 WM Images: Contains images used to generate Figure 5, Caspase inhibitor p35 increases cell-intrinsic effects on SPG survival from (G4C2)36 and GR36. Images are Z projected confocal images through central brain of SPG after D6 of expressing C9 transgenes in SPG along with either UAS-p35 or UAS-nls-lacZ as a control. Scale bar = 50 µM. Each subfile corresponds to one of the genotypes (G4C2+p35, G4C2+lacZ, GR+p35, GR+lacZ, Wildtype (denoted as 2U in files)+p35, Wildtype+lacZ) studied. Naming scheme for each image is Max_Date_Genotype_WM_D6_Image#_20x-1
Files and variables
File: Figure_3_CLEVR_Images.zip
Description: Expression of either (G4C2)36 or GR36 drives replication of the mdg4 endogenous retrovirus. Confocal images showing expression of the mdg4-CLEVR reporter in anterior Drosophila brain at D6 of C9 transgene expression ((G4C2)36 RO and GA in supplement). Scale bar = 50 µm. mCherry (red)-labeled cells mark mdg4 endogenous retrovirus replication events.
File: Figure_5_WM_Images.zip
Description: Caspase inhibitor p35 increases cell-intrinsic effects on SPG survival from (G4C2)36 and GR~36. ~Images are Z projected confocal images through central brain of SPG after D6 of expressing C9 transgenes in SPG along with either UAS-p35 or UAS-nls-lacZ as a control. Scale bar = 50 µM. To quantify cell-intrinsic effects of p35 expression versus a lacZ control on SPG numbers in relevant genotypes, SPG (red) were once again labeled with the WM reporter. Neuronal co-labeling (white) included to provide anatomical clarity.
File: Figure_2_WM_Images.zip
Description: Cell-intrinsic and non-autonomous toxicity of focal induction of C9 transgenes. Z projections of confocal images through central brain five days (D5) after inducing each C9 transgene in SPG. Scale bar = 50 µM. To quantify effects of focal C9 transgene expression on cell-intrinsic toxicity, SPG (red) were labeled with a UAS-driven watermelon (WM) reporter marking nuclei with an mCherry label. Neuronal co-labeling (yellow) included to provide anatomical clarity.
