bioRxiv Science⌕ Search

Biology subjects

Rasa, M.

Publications and source records attributed to Rasa, M..

2 recordsLinked to original sources

Infection and herbicide exposure implicate c-Abl kinase in α-Synuclein Ser129 phosphorylation

BackgroundParkinsons disease is a complex multifactorial neurodegenerative disorder characterized by -Synuclein aggregation in Lewy bodies, with phosphorylation at serine 129 (pSer129) being a critical pathological hallmark. However, the exact mechanisms by which environmental triggers lead to this disease phenotype remain poorly understood. In this study we compare the effects of an exemplary infection and a certain pesticide exposure on the generation of pSer129 -Synuclein, with a focus on the involvement of cellular kinases in this process. MethodsTwo distinct environmental stressors were applied to neuronal cells: the pesticide rotenone and the well-studied gastric bacterium Helicobacter pylori (H. pylori). Phosphorylation of Ser129 -Synuclein was assessed by immunofluorescent staining and Western blotting. Cells were treated with mechanistically distinct c-Abl inhibitors, and pSer129 -Synuclein was detected using Western blotting and activities of the upstream serine-threonine kinase were predicted by kinase profiling and Western blotting, analyzed by one-way ANOVA followed by Tukeys multiple comparisons test. Moreover, transcriptome analyses of treated cells were performed and ingenuity pathway analysis and Deseq2 were applied to unravel the affected neurodegenerative pathways. ResultsThe functional analysis of our RNA sequence data demonstrated that both H. pylori and rotenone induced oxidative stress and neuroinflammation by stimulating neurodegenerative pathways. Rotenone and H. pylori activated c-Abl, likely through the induced oxidative stress and promoted -Synuclein phosphorylation. The kinase inhibitors Ponatinib and Asciminib effectively prevented pSer129 -Synuclein accumulation and reversed associated gene expression changes induced by rotenone or H. pylori. Moreover, GSK3{beta} appeared to be involved in the induction of Ser129 phosphorylation via activated c-Abl. Furthermore, H. pyloris vacuolating cytotoxin appeared to play a crucial role in the phosphorylation of pSer129 -Synuclein by c-Abl. ConclusionsThese findings highlight the pivotal role of c-Abl in -Synucleopathies and provide insights into shared mechanisms between infection and pesticide exposure, offering potential therapeutic targets for Parkinsons disease and related pathologies involving -Synuclein modification.

neuroscience↗

Polyamines sustain epithelial regeneration in aged intestines by modulating protein homeostasis

Aging hampers the regenerative potential of intestinal epithelium across species including humans, yet the underlying causes remain elusive. Here, using proteomic and metabolomic profiling of intestinal tissues together with functional assays, we characterized the temporal dynamics of regeneration following injury induced by 5-fluorouracil, a commonly used chemotherapeutic agent. Comparison of regeneration dynamics in mice of different ages revealed the emergence of a proteostasis stress signature and increased levels of polyamines following injury exclusively in old epithelia. Mechanistically, we show that delayed regeneration is an intrinsic feature of aged epithelial cells that display reduced protein synthesis and accumulation of ubiquitylated proteins. Notably, dietary restriction followed by re-feeding prior to injury increases polyamine pathway activation, enhances protein synthesis, and restores the regenerative capacity of aged intestines. Our findings highlight promising epithelial targets for interventions aimed at tackling the decline in tissue repair mechanisms associated with aging.

molecular biology↗