Haploinsufficiency of Cyfip2 Causes Lithium-Responsive Prefrontal Dysfunction.
basic_science · Level V
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- Record sourced from PubMed, PMID 32562430.
- Also identified by DOI 10.1002/ana.25827.
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Abstract
Genetic variants of the cytoplasmic FMR1-interacting protein 2 (CYFIP2) encoding an actin-regulatory protein are associated with brain disorders, including intellectual disability and epilepsy. However, specific in vivo neuronal defects and potential treatments for CYFIP2-associated brain disorders remain largely unknown. Here, we characterized Cyfip2 heterozygous (Cyfip2<sup>+/-</sup> ) mice to understand their neurobehavioral phenotypes and the underlying pathological mechanisms. Furthermore, we examined a potential treatment for such phenotypes of the Cyfip2<sup>+/-</sup> mice and specified a neuronal function mediating its efficacy. We performed behavioral analyses of Cyfip2<sup>+/-</sup> mice. We combined molecular, ultrastructural, and in vitro and in vivo electrophysiological analyses of Cyfip2<sup>+/-</sup> prefrontal neurons. We also selectively reduced CYFIP2 in the prefrontal cortex (PFC) of mice with virus injections. Adult Cyfip2<sup>+/-</sup> mice exhibited lithium-responsive abnormal behaviors. We found increased filamentous actin, enlarged dendritic spines, and enhanced excitatory synaptic transmission and excitability in the adult Cyfip2<sup>+/-</sup> PFC that was restricted to layer 5 (L5) neurons. Consistently, adult Cyfip2<sup>+/-</sup> mice showed increased seizure susceptibility and auditory steady-state responses from the cortical electroencephalographic recordings. Among the identified prefrontal defects, lithium selectively normalized the hyperexcitability of Cyfip2<sup>+/-</sup> L5 neurons. RNA sequencing revealed reduced expression of potassium channel genes in the adult Cyfip2<sup>+/-</sup> PFC. Virus-mediated reduction of CYFIP2 in the PFC was sufficient to induce L5 hyperexcitability and lithium-responsive abnormal behavior. These results suggest that L5-specific prefrontal dysfunction, especially hyperexcitability, underlies both the pathophysiology and the lithium-mediated amelioration of neurobehavioral phenotypes in adult Cyfip2<sup>+/-</sup> mice, which can be implicated in CYFIP2-associated brain disorders. ANN NEUROL 2020;88:526-543.
Medical subject headings
- Adaptor Proteins, Signal Transducing
- Lithium Compounds
- Prefrontal Cortex
- Seizures