Synaptic failure is considered an early driver of Amyotrophic Lateral Sclerosis (ALS), yet identifying the molecular events initiating synaptic decline remains challenging in end-stage human tissue. Here, we exploit the late involvement of the primary visual cortex (Brodmann Area 17 (BA17)) to investigate early disease-associated changes in human ALS. Structural analyses revealed neuropil compaction, presynaptic terminal shrinkage, and synaptic degeneration despite preservation of local neuronal populations. Deep synaptoneurosome proteomics identified a regional signature characterised by disruption of presynaptic vesicle cycling, which closely resembles early pathological changes observed in the inducible human TDP-43 rNLS8 mouse model. Importantly, suppression of TDP-43 expression in vivo restored these proteomic alterations, highlighting recovery of presynaptic vesicle machinery within preserved synaptic structures. Together, these findings reveal early synaptic pathology as a distinct and potentially reversible stage of ALS neurodegeneration.
Frontotemporal dementia (FTD) and amyotrophic lateral sclerosis (ALS) are linked neurodegenerative diseases characterized by both synaptic dysfunction and TDP-43 pathology. A hexanucleotide repeat expansion (HRE) in the C9ORF72 (C9) gene represents the most common genetic cause of FTD and ALS, yet the synapse-specific...
A. Spillman, E. Alsop, L. M. Gittings et al.· Acta Neuropathologica· 0 citations
The findings establish the retina as an early site of AD synaptopathy and position UCHL1 as a candidate biomarker and mechanistic mediator linking amyloid pathology, neuroinflammation, and synaptic vulnerability.
A. Rentsendorj, Jean-Philippe Vit, Alexandre Hutton et al.· Advancement of science· 0 citations
It is illustrated how tauopathy disrupts the preferential maintenance of well-tuned inputs in healthy neural circuitry, resulting in poorly tuned visual responses.
Liam M. Adsit, Kyle Cekada, Ikuko T. Smith· 0 citations
The endoplasmic reticulum (ER) extends throughout neurons and regulates many functions, including neurite outgrowth, neurotransmission, and synaptic plasticity. Mutations in ER-shaping proteins cause the neurodegenerative disorder Hereditary Spastic Paraplegia (HSP), yet the ultrastructure and dynamics of neuronal ER r...
Mónica C. Quiñones-Frías, Dina M. Ocken, A. Rodal· Journal of Cell Science· 0 citations
The cellular form of the prion protein (PrPC) is known for its involvement in the pathogenesis of prion diseases. Recent research implicates the physiological isoform of PrP in neuronal development, excitability, and synaptic plasticity, as well as in other biological processes. However, its precise function in the dev...
Anna Burato, Alessio Di Clemente, Camilla Lodetti et al.· bioRxiv· 1 citation