Synaptic Adhesion Molecule Pcdh-γC5 Mediates Synaptic Dysfunction in Alzheimer's Disease

Синаптическая молекула адгезии Pcdh-γC5 опосредует синаптическую дисфункцию при болезни Альцгеймера
Yanfang Li, Zhicai Chen, Yue Gao, Gaojie Pan, Honghua Zheng, Yun‐wu Zhang, Huaxi Xu, Guojun Bu, Hui Zheng
2017-08-21

Alzheimer’s diseaseGABAergic synaptic dysfunctionPcdh-γC5synaptic excitation/inhibition balanceβ-amyloid
Synaptic dysfunction and neuronal excitatory/inhibitory imbalance have been implicated in Alzheimer's disease (AD) pathogenesis. Although intensive studies have been focused on the excitatory synaptic system, much less is known concerning the mechanisms mediating inhibitory synaptic dysfunction in AD. We reported previously that protocadherin-γC5 (Pcdh-γC5), a member of clustered Pcdh-γ subfamily of cadherin-type synaptic adhesion proteins, functions to promote GABAergic synaptic transmission. We reveal here that Pcdh-γC5 is enriched in vesicular GABA transporter-positive synaptic puncta and its expression levels are increased in neuronal hyperexcitation conditions, upon β-amyloid (Aβ) treatment, and in amyloid precursor protein (APP)/presenilin-1 (PS1)-transgenic mice of both sexes. This is associated with elevated levels of GABAergic proteins and enhanced synaptic inhibition. Genetic knock-down experiments showed that Pcdh-γC5 modulates spontaneous synaptic currents and Aβ-induced synaptic alterations directly. Our results support a model in which Pcdh-γC5 senses neuronal hyperexcitation to augment GABAergic inhibition. This adaptive mechanism may be dysregulated under chronic excitation conditions such as AD, leading to aberrant Pcdh-γC5 expression and associated synaptic dysfunction. SIGNIFICANCE STATEMENTSynaptic dysfunction is causal for Alzheimer's disease (AD). Here, we reveal a novel pathway that contributes GABAergic synaptic dysfunction in AD mediated by protocadherin-γC5. Our study not only identifies a new mechanism mediating excitatory/inhibitory balance in AD, but may also offer a new target for potential therapeutic intervention.
1
Genetic knockdown demonstrates that Pcdh-γC5 directly modulates spontaneous synaptic currents and β-amyloid-induced synaptic alterations.
2
Increased Pcdh-γC5 is associated with elevated GABAergic protein levels and enhanced synaptic inhibition.
3
Pcdh-γC5 expression increases during neuronal hyperexcitation, β-amyloid treatment, and in APP/PS1-transgenic mice of both sexes.
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Pcdh-γC5 is enriched at vesicular GABA transporter-positive synaptic puncta and promotes GABAergic synaptic transmission.
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Pcdh-γC5 may normally sense hyperexcitation and augment inhibition, but chronic excitation in Alzheimer’s disease dysregulates this mechanism and contributes to synaptic dysfunction.

Pcdh-γC5-mediated GABAergic synapses in Alzheimer's disease, including Aβ-treated neurons and APP/PS1-transgenic mice

Pcdh-γC5 regulation of inhibitory synaptic transmission, excitatory/inhibitory balance, and synaptic dysfunction under neuronal hyperexcitation and AD-related conditions

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2017-08-21
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Yanfang Li
Zhicai Chen
Yue Gao
Gaojie Pan
Honghua Zheng
Yun‐wu Zhang
Huaxi Xu
Guojun Bu
Hui Zheng
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