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Updated: Feb 20, 2026

Monocular Visual Deprivation and Ocular Dominance Plasticity Measurement in the Mouse Primary Visual Cortex
Published on: February 8, 2020
Inhibition of Cdk5 rejuvenates inhibitory circuits and restores experience-dependent plasticity in adult visual
Yue Li1, Laijian Wang2, Xinxin Zhang1
1CAS Key Laboratory of Brain Function and Diseases, School of Life Sciences, University of Science and Technology of China, Hefei, Anhui 230027, China.
Abstract:
Cyclin-dependent kinase 5 (Cdk5) acts as an essential modulator for neural development and neurological disorders. Here we show that Cdk5 plays a pivotal role in modulating GABAergic signaling and the maturation of visual system. In adult mouse primary visual cortex, Cdk5 formed complex with the GABA synthetic enzyme glutamate decarboxylase GAD67, but not with GAD65. In addition to enhancement in the surface level of NR2B-containing NMDA receptors, inhibition of Cdk5 reduced the protein levels of GADs and Otx2, while leaving intact the expression of vesicular GABA transporter and subunits of GABAA or AMPA receptors. Whole-cell patch-clamp recording in layer II/III pyramidal neurons revealed a decrease in the frequency of miniature inhibitory postsynaptic current (mIPSC). Consequently, pharmacological inhibition and genetic knockdown of Cdk5 in adult mice led to a restoration of juvenile-like ocular dominance plasticity in vivo and long-term synaptic potential in layer II/III induced by white matter stimulation in vitro. Interestingly, we did not observe an alteration of perineuronal nets of extracellular matrix, but a reinstatement of the capability to evoke long-term depression at inhibitory synapses (iLTD), which depended on presynaptic endocannabinoid receptors and was a sign of the rejuvenated GABAergic synapses. Enhancement of GABA signaling by diazepam impeded ocular dominance plasticity rescued by Cdk5 inhibition. These results thus suggest that a physiological role of Cdk5 in visual cortex is to consolidate and stabilize neural circuits through controlling GABAergic signaling.
Insights
Cyclin-dependent kinase 5 (Cdk5) stabilizes neural circuits by controlling GABAergic signaling in the adult visual cortex. Inhibiting Cdk5 rejuvenates visual plasticity, restoring juvenile-like responses.
Area of Science:
- Neuroscience
- Molecular Biology
- Developmental Biology
Background:
- Cyclin-dependent kinase 5 (Cdk5) is crucial for neural development and neurological disorders.
- GABAergic signaling and visual system maturation are key aspects of neural function.
Purpose of the Study:
- To investigate the role of Cdk5 in modulating GABAergic signaling and visual system maturation in adult mice.
- To determine if Cdk5 inhibition can restore plasticity in the adult visual cortex.
Main Methods:
- Studied Cdk5 complex formation with GAD67 in adult mouse primary visual cortex.
- Assessed protein levels of GABAergic components and Otx2 after Cdk5 inhibition.
- Performed whole-cell patch-clamp recordings to measure miniature inhibitory postsynaptic current (mIPSC) frequency.
- Utilized pharmacological inhibition and genetic knockdown of Cdk5 in vivo and in vitro.
Main Results:
- Cdk5 forms a complex with GAD67 and regulates GABAergic signaling by affecting GADs and Otx2 levels.
- Cdk5 inhibition decreased mIPSC frequency and restored juvenile-like ocular dominance plasticity and long-term synaptic potentiation.
- Inhibiting Cdk5 reinstated long-term depression at inhibitory synapses (iLTD), indicating rejuvenated GABAergic synapses.
Conclusions:
- Cdk5 plays a physiological role in consolidating and stabilizing neural circuits in the visual cortex by controlling GABAergic signaling.
- Cdk5 inhibition rejuvenates GABAergic synapses and restores plasticity in the adult visual cortex.
- Targeting Cdk5 may offer therapeutic potential for neurological disorders involving visual system dysfunction.
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