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Neurexin/Neuroligin Synaptic Adhesion Modulator Therapy in Neurodegeneration

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Neurexin/Neuroligin Synaptic Adhesion Modulator Therapy in Neurodegeneration

Overview

Neurexins (NRXN1/2/3) and neuroligins (NLGN1/2/3/4X/4Y) are a conserved pair of synaptic adhesion molecules that form trans-synaptic bridges linking presynaptic and postsynaptic terminals. These proteins are central to synapse formation, specification, maintenance, and plasticity. Disruption of neurexin-neuroligin (NRXN-NLGN) complexes has been implicated across a broad spectrum of neurodegenerative and neurodevelopmental disorders, including Alzheimer's disease (AD), Parkinson's disease (PD), amyotrophic lateral sclerosis (ALS), frontotemporal dementia (FTD), CBS/PSP, autism spectrum disorder (ASD), and schizophrenia [@sudhof2008].

The NRXN-NLGN complex represents a compelling therapeutic target because it serves as the master organizer of synaptic architecture — directing where neurotransmitter vesicles fuse, which receptors cluster, and how synapses are maintained over decades of neuronal activity. Restoring or enhancing NRXN-NLGN function offers a strategy to preserve synaptic integrity that is upstream of, and complementary to, disease-specific pathological cascades like amyloid-beta, tau, and alpha-synuclein.

This mechanism page covers the molecular biology of neurexins and neuroligins, their established roles in neurodegeneration across multiple diseases, and the therapeutic strategies — including small molecules, gene therapy, biologics, and cell-based approaches — being developed to target these complexes.

Molecular Architecture

Neurexin Family


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