The spreading of misfolded protein species contributes to the propagation of harmful mediators in proteinopathies, including Alzheimer’s disease (AD). Cellular stress circumstances, such as abnormal protein accumulation or nutrient deprivation, elicit the secretion of soluble misprocessed proteins and insoluble aggregates via multiple mechanisms of unconventional secretion. One of them consists in the rerouting of autophagic vacuoles towards exocytosis, an unconventional type of autophagy mediated by caspase-3 activation under starvation. Ischemic injury is a starvation condition characterized by oxygen/nutrient deprivation, whose contribution in AD onset has definitely been endorsed. Thus, we investigated the effect of oxygen–glucose deprivation (OGD), an experimental condition mimicking cerebral ischemia, in search of alteration in Tau processing and secretion in hippocampal neurons primary cultures. Our results showed that OGD caused alterations in Tau phosphorylation and processing, paralleled by an induction of its secretion. Interestingly, together with caspase-3 activation, full-length (FL) and fragmented Tau forms were secreted by their own or through a heterogeneous population of microvesicles (MVs), including autophagosome marker LC3-positive vesicles. Accordingly, confocal microscopy revealed a partial colocalization of intracellular Tau and LC3. Summarizing, our findings indicate that OGD alters Tau intracellular levels and protein processing. Consequently, Tau clearance was stimulated through multiple mechanisms related to unconventional Tau secretion, including exophagy. However, the activation of this response represent a double edge sword, because it could contribute to the spreading of misfolded Tau, a neurodegeneration pathway in AD and other tauopathies.

Lonati, E., Sala, G., Tresoldi, V., Coco, S., Salerno, D., Milani, C., et al. (2018). Ischemic Conditions Affect Rerouting of Tau Protein Levels: Evidences for Alteration in Tau Processing and Secretion in Hippocampal Neurons. JOURNAL OF MOLECULAR NEUROSCIENCE, 66(4), 604-616 [10.1007/s12031-018-1199-7].

Ischemic Conditions Affect Rerouting of Tau Protein Levels: Evidences for Alteration in Tau Processing and Secretion in Hippocampal Neurons

Lonati, E
Membro del Collaboration Group
;
Sala, G;Coco, S
Membro del Collaboration Group
;
Salerno, D
Membro del Collaboration Group
;
Milani, C;Losurdo, M
Membro del Collaboration Group
;
Farina, F;Botto, L
Membro del Collaboration Group
;
Ferrarese, C
Membro del Collaboration Group
;
Palestini, P
Membro del Collaboration Group
;
Bulbarelli, A
Membro del Collaboration Group
2018

Abstract

The spreading of misfolded protein species contributes to the propagation of harmful mediators in proteinopathies, including Alzheimer’s disease (AD). Cellular stress circumstances, such as abnormal protein accumulation or nutrient deprivation, elicit the secretion of soluble misprocessed proteins and insoluble aggregates via multiple mechanisms of unconventional secretion. One of them consists in the rerouting of autophagic vacuoles towards exocytosis, an unconventional type of autophagy mediated by caspase-3 activation under starvation. Ischemic injury is a starvation condition characterized by oxygen/nutrient deprivation, whose contribution in AD onset has definitely been endorsed. Thus, we investigated the effect of oxygen–glucose deprivation (OGD), an experimental condition mimicking cerebral ischemia, in search of alteration in Tau processing and secretion in hippocampal neurons primary cultures. Our results showed that OGD caused alterations in Tau phosphorylation and processing, paralleled by an induction of its secretion. Interestingly, together with caspase-3 activation, full-length (FL) and fragmented Tau forms were secreted by their own or through a heterogeneous population of microvesicles (MVs), including autophagosome marker LC3-positive vesicles. Accordingly, confocal microscopy revealed a partial colocalization of intracellular Tau and LC3. Summarizing, our findings indicate that OGD alters Tau intracellular levels and protein processing. Consequently, Tau clearance was stimulated through multiple mechanisms related to unconventional Tau secretion, including exophagy. However, the activation of this response represent a double edge sword, because it could contribute to the spreading of misfolded Tau, a neurodegeneration pathway in AD and other tauopathies.
Articolo in rivista - Articolo scientifico
Autophagy; Caspase-3; Microvesicles; Oxygen and glucose deprivation; Tau; Unconventional secretion;
Autophagy; Caspase-3; Microvesicles; Oxygen and glucose deprivation; Tau; Unconventional secretion; Cellular and Molecular Neuroscience
English
12-nov-2018
2018
66
4
604
616
none
Lonati, E., Sala, G., Tresoldi, V., Coco, S., Salerno, D., Milani, C., et al. (2018). Ischemic Conditions Affect Rerouting of Tau Protein Levels: Evidences for Alteration in Tau Processing and Secretion in Hippocampal Neurons. JOURNAL OF MOLECULAR NEUROSCIENCE, 66(4), 604-616 [10.1007/s12031-018-1199-7].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/211707
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