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Goya, M. E.

Publications and source records attributed to Goya, M. E..

2 recordsLinked to original sources

Condensate-Driven Triglyceride Depletion Links α-Synuclein to Mitochondrial Dysfunction

Inclusions of -Synuclein (Syn) characterize multiple age-related neurodegenerative diseases, including Parkinsons disease (PD) and Multiple System Atrophy (MSA). While interactions between Syn and lipids are known to contribute to Syn pathobiology, the precise cellular mechanisms that link lipids to Syn toxicity have yet to be elucidated. Through lipidomic profiling of Caenorhabditis elegans, we found that Syn progressively alters lipid metabolism in aging worms. Syn strongly reduces overall content of triacylglycerols (TAG) and disrupts the structure of lipid droplets (LD). These pathological changes depend on Syns properties to condensate and form inclusions. Apart from lowering TAG levels, Syn also increases the proportion of long-chain unsaturated fatty acids (LCUFAs). Consequently, genetic inhibition of LCUFA biosynthesis alleviates Syn-induced loss of C. elegans motility. Strikingly, bypassing lipid metabolic defects by supplementing Medium Chain Fatty Acids (MCFAs) restores the Syn-impaired mitochondrial response and rescues motility. These results link Syn condensation to impaired TAG metabolism, which reduces mitochondrial function and enhances overall toxicity. Together with the finding that plasma TAGs are lowered in Parkinson patient cohorts, these results suggest that restoring TAG metabolism could alleviate Syn-induced toxicity in Parkinsons and other age-related synucleinopathies.

cell biology↗

Regulation of the circadian clock in C. elegans by clock gene homologs kin-20 and lin-42

Circadian rhythms are endogenous oscillations present in nearly all organisms from prokaryotes to humans, allowing them to adapt to cyclical environments close to 24 hours. Circadian rhythms are regulated by a central clock, which is based on a transcription-translation feedback loop. One important protein in the central loop in metazoan clocks is PERIOD, which is regulated in part by Casein kinase 1{varepsilon}/{delta} (CK1{varepsilon}/{delta}) phosphorylation. In the nematode Caenorhabditis elegans, period and casein kinase 1{varepsilon}/{delta} are conserved as lin-42 and kin-20, respectively. Here we studied the involvement of lin-42 and kin-20 in circadian rhythms of the adult nematode using a bioluminescence-based circadian transcriptional reporter. We show that mutations of lin-42 and kin-20 generate a significantly longer endogenous period, suggesting a role for both genes in the nematode circadian clock, as in other organisms. These phenotypes can be partially rescued by overexpression of either gene under their native promoter. Both proteins are expressed in neurons and seam cells, a population of epidermal stem cells in C. elegans that undergo multiple divisions during development. Depletion of LIN-42 and KIN-20 specifically in neuronal cells after development was sufficient to lengthen the period of oscillating sur-5 expression. Therefore, we conclude that LIN-42 and KIN-20 are critical regulators of the adult nematode circadian clock through neuronal cells.

neuroscience↗