bioRxiv Science⌕ Search

Biology subjects

Londero, A.

Publications and source records attributed to Londero, A..

2 recordsLinked to original sources

Alpha-2-Macroglobulin/LRP1 signaling promotes mitochondrial clearance and autophagic extracellular vesicle release in erythroid cells

Despite advances in the understanding of the cellular and molecular mechanisms involved in erythropoiesis, there are still unanswered questions regarding the coordination between autophagy, vesicular trafficking, and endocytic signaling during this process. The complexity of these events suggests the existence of regulatory mechanisms capable of integrating these pathways. In this context, low-density lipoprotein receptor-related protein 1 (LRP1) emerges as a potential modulator given its function as a multifunctional endocytic receptor and its involvement in the regulation of degradation and signaling processes in various cellular models. However, its role in modulating mitophagy, a particular type of autophagy, and its link to vesicular trafficking associated with multivesicular bodies (MVBs) and the release of exosomes during erythroid maturation has been poorly explored. In this regard, alpha-2-Macroglobulin (2M), the main physiological ligand of LRP1, has been identified in extracellular vesicles (EVs) in various pathophysiological contexts, suggesting that it may be involved in vesicular dynamics and cellular clearance. In this study, we demonstrate that activated 2M (2M*), induces autophagy and particularly mitophagy, in K562 cells, and that LRP1 is directly responsible for this activation. Furthermore, we observed that 2M* stimulates the interaction of autophagosomes with MVBs/amphisomes and that EVs from K562 cells are positive for LC3, supporting a close relationship between the endocytic pathway and the autophagic pathway mediated by the 2M-LRP1 interaction. Taken together, these findings expand our understanding of erythroid biology and provide a conceptual foundation for exploring altered mechanisms in erythropoietic diseases and for the development of diagnostic and therapeutic strategies.

Molecular Biology↗

Tinnitus perception is linked to arousal system dysfunction

Tinnitus, the perception of sound in the absence of an external source, affects 14% of the population and is often associated with concentration and emotional difficulties. However, the characterization of the associated cognitive difficulties remains unclear. We hypothesize that attentional complaints are due to a dysfunction of the exogenous or endogenous orientation of attention, or of the arousal system. In this study, 200 participants (100 with chronic tinnitus and 100 matched controls) completed a battery of cognitive tasks assessing attention, alertness and executive functions, including the Attentional Network Task (ANT), Sustained Attention to Response Task (SART) with mind wandering evaluations, Stroop, and Trail Making Test. Tinnitus comorbidities, including hearing loss, sleep quality, anxiety, and hyperacusis were controlled. The results showed that individuals with tinnitus had a reduced sensitivity to alert signals, and lower sustained attention abilities, both suggesting lower levels of arousal. Mind-wandering analyses revealed fewer planning-related thoughts in the tinnitus group, suggesting higher needed cognitive resources to perform the task. Contrary to prior findings, we found no evidence of deficits in executive functioning specific to tinnitus; rather, executive impairments were associated with hearing loss and sleep disturbances. Overall, these findings support the hypothesis that tinnitus is linked to a dysfunction in the arousal system--likely involving the locus coeruleus-noradrenergic network. This work proposes a new theoretical framework implicating arousal dysregulation as a core mechanism in tinnitus-related cognitive complaints. Significance StatementTinnitus, the perception of sound without an external source, affects millions worldwide and is often accompanied by concentration difficulties. By rigorously controlling for hearing loss, sleep deprivation, and anxiety, we isolate the core cognitive changes linked to tinnitus itself. Our study reveals that attentional deficits in tinnitus primarily arise from dysregulation in the brains arousal system. We propose a novel integrative framework in which arousal system dysfunction underlies the cognitive and emotional symptoms associated with tinnitus, providing a new perspective for understanding the complex interactions between attention, sleep, and anxiety in this condition.

neuroscience↗