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Published on: January 7, 2014
p75NTR Modulation by LM11A-31 Counteracts Oxidative Stress and Cholesterol Dysmetabolism in a Rotenone-Induced Cell
Daniele Pensabene1, Noemi Martella1, Giuseppe Scavo1
1Department of Biosciences and Territory, University of Molise, Contrada Fonte Lappone, 86090, Pesche, Italy.
Abstract:
The p75 neurotrophin receptor (p75NTR) plays a dual role in regulating both pro-survival and pro-apoptotic cascades in various physiological and pathological conditions, including within dopaminergic neuronal population. Notably, its overexpression has been documented in post-mortem Parkinson's disease (PD) brains, where it correlates with a significant downregulation in neuroprotective intracellular mediators. In this study, we aimed at investigating the neuroprotective effects of p75NTR modulation by the small molecule LM11A-31 in a rotenone-induced neuronal model of PD. Differentiated SH-SY5Y cells were treated with 100 nM rotenone, with or without 500 nM LM11A-31. Our results show that LM11A-31 effectively mitigates PD phenotype by enhancing cell viability, reducing apoptosis, mitigating α-synuclein aggregation, and partially restoring neuromorphological features. Mitochondrial integrity was preserved, likely through the upregulation of transcription factors involved in mitochondrial biogenesis, namely PGC-1α and PPARs. LM11A-31 treatment also reduced oxidative damage to macromolecules, normalizing Nrf2 expression and enhancing protein S-glutathionylation. The antioxidant effect of p75NTR modulation may be partially attributed to the suppression of the NADPH oxidase regulatory subunits p22PHOX and p47PHOX. Additionally, LM11A-31 restored cholesterol homeostasis disrupted by rotenone, as evidenced by the increased NPC1 expression and lysosomal localization, normalized HMGCR levels, and reduced intracellular cholesterol accumulation. Collectively, these findings demonstrate that p75NTR modulation via LM11A-31 exerts neuroprotective effects by targeting key pathological features of PD, including oxidative damage, mitochondrial derangements, and cholesterol dysmetabolism, supporting its potential as a promising therapeutic tool in PD treatment.
Insights
The small molecule LM11A-31 protects against Parkinson's disease (PD) by modulating the p75 neurotrophin receptor (p75NTR). This treatment enhances cell viability, reduces apoptosis, and mitigates key PD pathologies like aggregation and oxidative stress.
Area of Science:
- Neuroscience
- Molecular Biology
- Pharmacology
Background:
- The p75 neurotrophin receptor (p75NTR) has a dual role in neuronal survival and apoptosis.
- p75NTR is overexpressed in Parkinson's disease (PD) brains, correlating with reduced neuroprotection.
- Investigating p75NTR modulation offers a potential therapeutic strategy for PD.
Purpose of the Study:
- To investigate the neuroprotective effects of the small molecule LM11A-31 targeting p75NTR in a rotenone-induced PD model.
- To assess LM11A-31's impact on cellular viability, apoptosis, alpha-synuclein aggregation, and mitochondrial function.
- To evaluate LM11A-31's effects on oxidative stress and cholesterol homeostasis in the context of PD.
Main Methods:
- Utilized a rotenone-induced neuronal model of PD using differentiated SH-SY5Y cells.
- Treated cells with rotenone alone or in combination with the p75NTR modulator LM11A-31.
- Assessed cell viability, apoptosis markers, alpha-synuclein aggregation, mitochondrial integrity, oxidative damage, and cholesterol metabolism.
Main Results:
- LM11A-31 significantly enhanced cell viability and reduced apoptosis in rotenone-treated cells.
- Treatment mitigated alpha-synuclein aggregation and partially restored neuromorphological features.
- LM11A-31 preserved mitochondrial integrity, upregulated PGC-1α and PPARs, reduced oxidative damage via Nrf2 and NADPH oxidase inhibition, and restored cholesterol homeostasis.
- NPC1 expression, lysosomal localization, and HMGCR levels were normalized, reducing intracellular cholesterol accumulation.
Conclusions:
- p75NTR modulation by LM11A-31 demonstrates significant neuroprotective effects in a cellular model of PD.
- LM11A-31 targets key pathological hallmarks of PD, including oxidative stress, mitochondrial dysfunction, and cholesterol dysmetabolism.
- LM11A-31 shows promise as a therapeutic agent for Parkinson's disease treatment.
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