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dc.contributor.author Labrador, Luis
dc.contributor.author Rodriguez, Leonardo
dc.contributor.author Beltran, Sebastián
dc.contributor.author Hernandez, Fernanda
dc.contributor.author Gomez, Laura
dc.contributor.author Ojeda, Patricia
dc.contributor.author Bergmann, Cristian
dc.contributor.author Calegaro-Nassif, Melissa
dc.contributor.author Kerr, Bredford
dc.contributor.author Medinas, Danilo B.
dc.contributor.author Manque, Patricio
dc.contributor.author Woehlbier, Ute
dc.date.accessioned 2026-02-08T03:25:03Z
dc.date.available 2026-02-08T03:25:03Z
dc.date.issued 2024-12
dc.identifier.issn 0716-9760
dc.identifier.other Mendeley: 471a403b-81a1-353b-ab5e-34b6472169da
dc.identifier.uri https://repositorio.uss.cl/handle/uss/20300
dc.description Publisher Copyright: © The Author(s) 2024.
dc.description.abstract Amyotrophic lateral sclerosis (ALS) is a debilitating and fatal paralytic disorder associated with motor neuron death. Mutant superoxide dismutase 1 (SOD1) misfolding and aggregation have been linked to familial ALS, with the accumulation of abnormal wild-type SOD1 species being also observed in postmortem tissue of sporadic ALS cases. Both wild-type and mutated SOD1 are reported to contribute to motoneuron cell death. The autophagic pathway has been shown to be dysregulated in ALS. Recent evidence suggests a dual time-dependent role of autophagy in the progression of the disease. PACER, also called RUBCNL (Rubicon-like), is an enhancer of autophagy and has been found diminished in its levels during ALS pathology in mice and humans. Pacer loss of function disturbs the autophagy process and leads to the accumulation of SOD1 aggregates, as well as sensitizes neurons to death. Therefore, here we investigated if constitutive overexpression of PACER in neurons since early development is beneficial in an in vivo model of ALS. We generated a transgenic mouse model overexpressing human PACER in neurons, which then was crossbred with the mutant SOD1G93A ALS mouse model. Unexpectedly, PACER/SOD1G93A double transgenic mice exhibited an earlier disease onset and shorter lifespan than did littermate SOD1G93A mice. The overexpression of PACER in neurons in vivo and in vitro increased the accumulation of SOD1 aggregates, possibly due to impaired autophagy. These results suggest that similar to Pacer loss-of function, Pacer gain-of function is detrimental to autophagy, increases SOD1 aggregation and worsens ALS pathogenesis. In a wider context, our results indicate the requirement to maintain a fine balance of PACER protein levels to sustain proteostasis. en
dc.language.iso eng
dc.relation.ispartof vol. 57 Issue: no. 1 Pages:
dc.source Biological Research
dc.title Overexpression of autophagy enhancer PACER/RUBCNL in neurons accelerates disease in the SOD1G93A ALS mouse model en
dc.type Artículo
dc.identifier.doi 10.1186/s40659-024-00567-1
dc.publisher.department Facultad de Ciencias


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