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Targeting CREB-binding protein (CBP) loss of function as a therapeutic strategy in neurological disorders
Caroline Rouaux1, Jean-Philippe Loeffler, Anne-Laurence Boutillier
1Laboratoire de Signalisation Moléculaire et Neurodégénérescence-EA#3433 11, rue Humann, 67085 Strasbourg Cedex, France.
Abstract:
Histone acetylation/deacetylation is a master regulation of gene expression. Among the enzymes involved in this process, the CREB-binding protein (CBP) displays important functions during central nervous system development. Increasing evidence shows that CBP function is altered during neurodegenerative processes. CBP loss of function has now been reported in several diseases characterized by neurological disorders such as the Rubinstein-Taybi syndrome or polyglutamine-related pathologies (Huntington's disease). Our recent work suggests that CBP loss of function could also be involved in Alzheimer's disease and amyotrophic lateral sclerosis. In a simplified apoptotic model of primary neurons, we described CBP as a substrate of apoptotic caspases, an alternative to its classical proteasomal degradation. In these neuronal death contexts, histone acetylation levels were decreased as well. Altogether, these data point to a central role of CBP loss of function during neurodegeneration. In order to restore proper acetylation levels, a proposed therapeutic strategy relies on HDAC inhibition. Nevertheless, this approach lacks of specificity. Therefore new drugs targeted at counteracting CBP loss of function could stand as a valid therapeutic approach in neurodegenerative disorders. The challenge will be to respect the fine-tuning between cellular HAT/HDAC activities.
Insights
CREB-binding protein (CBP) loss is implicated in neurodegenerative diseases. Caspase-mediated degradation of CBP in neurons leads to decreased histone acetylation, suggesting CBP restoration as a therapeutic target.
Area of Science:
- Neuroscience
- Molecular Biology
- Genetics
Background:
- Histone acetylation regulates gene expression.
- CREB-binding protein (CBP) is crucial for central nervous system development.
- Altered CBP function is linked to neurodegenerative diseases like Huntington's, Alzheimer's, and ALS.
Purpose of the Study:
- Investigate the role of CBP in neurodegeneration.
- Explore CBP as a substrate of apoptotic caspases.
- Identify potential therapeutic strategies for neurodegenerative disorders targeting CBP.
Main Methods:
- Utilized a simplified apoptotic model of primary neurons.
- Examined CBP degradation pathways (caspase-mediated vs. proteasomal).
- Assessed histone acetylation levels in neuronal death contexts.
Main Results:
- CBP functions as a substrate of apoptotic caspases in neurons.
- Caspase-mediated CBP degradation occurs as an alternative to proteasomal degradation.
- Neuronal death is associated with decreased histone acetylation levels.
Conclusions:
- CBP loss of function plays a central role in neurodegeneration.
- Targeting CBP to counteract its loss of function presents a potential therapeutic strategy.
- Developing specific drugs to restore CBP function is a promising avenue for treating neurodegenerative disorders.
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