dc.creatorOrmeño, Fernando
dc.creatorHormazábal, Juan
dc.creatorMoreno, José
dc.creatorRiquelme, Felipe
dc.creatorRíos, Javiera
dc.creatorCriollo Céspedes, Alfredo
dc.creatorAlbornoz, Amelina
dc.creatorAlfaro, Iván E.
dc.creatorBudini, Mauricio
dc.date.accessioned2020-05-04T16:01:09Z
dc.date.available2020-05-04T16:01:09Z
dc.date.created2020-05-04T16:01:09Z
dc.date.issued2020
dc.identifierFrontiers in Molecular Neuroscience volume: 13 article number: 19 published:‏ feb 18 2020
dc.identifier10.3389/fnmol.2020.00019
dc.identifierhttps://repositorio.uchile.cl/handle/2250/174275
dc.description.abstractTAR DNA binding protein 43 kDa (TDP-43) is a ribonuclear protein regulating many aspects of RNA metabolism. Amyotrophic Lateral Sclerosis (ALS) and Frontotemporal Lobar Degeneration (FTLD) are fatal neurodegenerative diseases with the presence of TDP-43 aggregates in neuronal cells. Chaperone Mediated Autophagy (CMA) is a lysosomal degradation pathway participating in the proteostasis of several cytosolic proteins including neurodegenerative associated proteins. In addition, protein oligomers or aggregates can affect the status of CMA. In this work, we studied the relationship between CMA and the physiological and pathological forms of TDP-43. First, we found that recombinant TDP-43 was specifically degraded by rat liver's CMA+ lysosomes and that endogenous TDP-43 is localized in rat brain's CMA+ lysosomes, indicating that TDP-43 can be a CMA substrate in vivo. Next, by using a previously reported TDP-43 aggregation model, we have shown that wild-type and an aggregate-prone form of TDP-43 are detected in CMA+ lysosomes isolated from cell cultures. In addition, their protein levels increased in cells displaying CMA down-regulation, indicating that these two TDP-43 forms are CMA substrates in vitro. Finally, we observed that the aggregate-prone form of TDP-43 is able to interact with Hsc70, to co-localize with Lamp2A, and to up-regulate the levels of these molecular components of CMA. The latter was followed by an up-regulation of the CMA activity and lysosomal damage. Altogether our data shows that: (i) TDP-43 is a CMA substrate; (ii) CMA can contribute to control the turnover of physiological and pathological forms of TDP-43; and (iii) TDP-43 aggregation can affect CMA performance. Overall, this work contributes to understanding how a dysregulation between CMA and TDP-43 would participate in neuropathological mechanisms associated with TDP-43 aggregation.
dc.languageen
dc.publisherFrontiers Media
dc.rightshttp://creativecommons.org/licenses/by-nc-nd/3.0/cl/
dc.rightsAttribution-NonCommercial-NoDerivs 3.0 Chile
dc.sourceFrontiers in Molecular Neuroscience
dc.subjectTARDBP
dc.subjectProtein aggregation
dc.subjectCellular model
dc.subjectChaperone mediated autophagy
dc.subjectLysosomal damage
dc.subjectAmyotrophic lateral sclerosis
dc.titleChaperone Mediated Autophagy Degrades TDP-43 Protein and Is Affected by TDP-43 Aggregation
dc.typeArtículo de revista


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