Date published: 2025-10-15

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PSD-95 Inhibitors

PSD-95 inhibitors belong to a chemical class of compounds designed to interact with and modulate the activity of Postsynaptic Density-95 (PSD-95), a protein that plays a pivotal role in synaptic signaling and neuronal communication. PSD-95 is a scaffold protein found in the postsynaptic density of neurons, where it clusters neurotransmitter receptors and various signaling molecules, facilitating efficient neurotransmission and synapse formation. These inhibitors are designed to target specific binding sites or regions on PSD-95, disrupting its interactions with other synaptic proteins and interfering with the assembly of functional synapses.

By studying PSD-95 inhibitors, researchers aim to unravel the intricate mechanisms underlying synaptic plasticity, a fundamental process in learning and memory. These compounds provide valuable tools for investigating the role of PSD-95 in mediating synaptic strength, neurotransmitter receptor trafficking, and the molecular organization of synapses. Exploring the effects of PSD-95 inhibitors can lead to a deeper understanding of how synapses adapt and change in response to neuronal activity, contributing to the complex processes of learning, memory formation, and neural network remodeling. Through the study of PSD-95 inhibitors, scientists can gain insights into the molecular basis of synaptic function and uncover avenues for further research in the field of neurobiology.

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Inhibits the interaction between PSD-95 and PKC, potentially affecting synaptic NMDA receptor trafficking and function.

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Disrupts the interaction between PSD-95 and the serotonin transporter (SERT), potentially modulating SERT function in serotonin neurotransmission.