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HCN3中癫痫相关变异的分析——功能影响及临床观察

Analysis of epilepsy-associated variants in HCN3 - Functional implications and clinical observations.

作者信息

Zhao Peiwei, Xiong Hongbo, Kuang Gunagtao, Sun Chen, Zhang Xiankai, Huang Yufeng, Luo Sukun, Zhang Lei, Jiang Jun, He Xuelian

机构信息

Precision Medical Center, Wuhan Children's Hospital (Wuhan Maternal and Child Healthcare Hospital), Tongji Medical College, Huazhong University of Science & Technology, Wuhan, China.

Department of Cardiology, Zhongnan Hospital, Wuhan University, Wuhan, China.

出版信息

Epilepsia Open. 2024 Dec;9(6):2294-2305. doi: 10.1002/epi4.13049. Epub 2024 Oct 3.

Abstract

OBJECTIVE

This case study investigates the role of hyperpolarization-activated, cyclic nucleotide-gated (HCN) ion channels, which are integral membrane proteins crucial for regulating neuronal excitability. HCN channels are composed of four subunits (HCN1-4), with HCN1, HCN2, and HCN4 previously linked to epilepsy. However, the role of the HCN3 in epileptogenesis remains underexplored.

METHODS

We recruited a cohort of 298 epilepsy patients to screen for genetic variants in the HCN3 (NM_020897.3) using Sanger sequencing. We identified rare variants and conducted functional assays to evaluate their pathogenicity.

RESULTS

We identified three rare heterozygous variants in HCN3: c.1370G > A (R457H), c.1982G > A (R661Q), and c.1982G > A(P630L). In vitro functional analyses demonstrated that these variants affected the expression level of HCN3 protein without altering its membrane localization. Whole-cell voltage-clamp experiments showed that two variants (R457H and R661Q) significantly reduced current density in cells, while P630L has no effect on ion channel current.

SIGNIFICANCE

Our findings suggest that the identified HCN3 genetic variants disrupt HCN ion channel function, highlighting HCN3 as a novel candidate gene involved in epileptic disorders. This expands the genetic landscape of epilepsy and provides new insights into its molecular underpinnings.

PLAIN LANGUAGE SUMMARY

Epilepsy is a brain disease that can be caused by mutations in specific genes. We found three rare variants in HCN3 gene in 298 patients with epilepsy, and two of the three mutations could be pathogenic and cause epilepsy and another one is single-nucleotide polymorphism, which could have no effect and no contribution to the development of epilepsy.

摘要

目的

本案例研究调查超极化激活的环核苷酸门控(HCN)离子通道的作用,这些通道是调节神经元兴奋性的关键整合膜蛋白。HCN通道由四个亚基(HCN1 - 4)组成,其中HCN1、HCN2和HCN4先前已与癫痫相关联。然而,HCN3在癫痫发生中的作用仍未得到充分研究。

方法

我们招募了298名癫痫患者,使用桑格测序法筛选HCN3(NM_020897.3)中的基因变异。我们鉴定出罕见变异并进行功能测定以评估其致病性。

结果

我们在HCN3中鉴定出三个罕见的杂合变异:c.1370G>A(R457H)、c.1982G>A(R661Q)和c.1982G>A(P630L)。体外功能分析表明,这些变异影响了HCN3蛋白的表达水平,但未改变其膜定位。全细胞膜片钳实验表明,两个变异(R457H和R661Q)显著降低了细胞中的电流密度,而P630L对离子通道电流没有影响。

意义

我们的研究结果表明,鉴定出的HCN3基因变异破坏了HCN离子通道功能,突出了HCN3作为参与癫痫疾病的新候选基因。这扩展了癫痫的遗传图谱,并为其分子基础提供了新的见解。

通俗易懂的总结

癫痫是一种可由特定基因突变引起的脑部疾病。我们在298名癫痫患者的HCN3基因中发现了三个罕见变异,其中三个突变中的两个可能是致病性的,可导致癫痫,另一个是单核苷酸多态性,可能对癫痫的发展没有影响且无作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ecae/11633725/112d2e251459/EPI4-9-2294-g004.jpg

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