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偏瘫性偏头痛中Cav3.3功能障碍的研究

Investigation of Cav3.3 Dysfunction in Hemiplegic Migraine.

作者信息

Maksemous Neven, Blayney Claire D, Sutherland Heidi G, Smith Robert A, Lea Rod A, Tran Kim Ngan, Ibrahim Omar, McArthur Jeffrey R, Haupt Larisa M, Cader M Zameel, Finol-Urdaneta Rocio K, Adams David J, Griffiths Lyn R

机构信息

Genomics Research Centre, The Centre for Genomics and Personalised Health, School of Biomedical Sciences, Queensland University of Technology, Brisbane, QLD, Australia.

Illawarra Health and Medical Research Institute, University of Wollongong, Wollongong, NSW, Australia.

出版信息

Front Mol Neurosci. 2022 Jul 19;15:892820. doi: 10.3389/fnmol.2022.892820. eCollection 2022.

Abstract

Familial hemiplegic migraine (FHM) is a severe neurogenetic disorder for which three causal genes, , , and , have been implicated. However, more than 80% of referred diagnostic cases of hemiplegic migraine (HM) are negative for exonic mutations in these known FHM genes, suggesting the involvement of other genes. Using whole-exome sequencing data from 187 mutation-negative HM cases, we identified rare variants in the gene encoding the T-type calcium channel Cav3.3. Burden testing of variants showed a statistically significant increase in allelic burden in the HM case group compared to gnomAD (OR = 2.30, = 0.00005) and the UK Biobank (OR = 2.32, = 0.0004) databases. Dysfunction in T-type calcium channels, including Cav3.3, has been implicated in a range of neurological conditions, suggesting a potential role in HM. Using patch-clamp electrophysiology, we compared the biophysical properties of five Cav3.3 variants (p.R111G, p.M128L, p.D302G, p.R307H, and p.Q1158H) to wild-type (WT) channels expressed in HEK293T cells. We observed numerous functional alterations across the channels with Cav3.3-Q1158H showing the greatest differences compared to WT channels, including reduced current density, right-shifted voltage dependence of activation and inactivation, and slower current kinetics. Interestingly, we also found significant differences in the conductance properties exhibited by the Cav3.3-R307H and -Q1158H variants compared to WT channels under conditions of acidosis and alkalosis. In light of these data, we suggest that rare variants in may contribute to HM etiology.

摘要

家族性偏瘫性偏头痛(FHM)是一种严重的神经遗传性疾病,已发现三个致病基因,即 、 和 。然而,超过80%的转诊诊断为偏瘫性偏头痛(HM)的病例在这些已知的FHM基因的外显子突变检测中呈阴性,这表明可能涉及其他基因。利用187例突变阴性的HM病例的全外显子测序数据,我们在编码T型钙通道Cav3.3的基因中鉴定出罕见变异。对这些变异进行的负荷测试显示,与gnomAD数据库(优势比[OR]=2.30,P=0.00005)和英国生物银行数据库(OR=2.32,P=0.0004)相比,HM病例组的等位基因负荷在统计学上显著增加。包括Cav3.3在内的T型钙通道功能障碍与一系列神经系统疾病有关,提示其在HM中可能发挥作用。利用膜片钳电生理学技术,我们比较了在HEK293T细胞中表达的五个Cav3.3变异体(p.R111G、p.M128L、p.D302G、p.R307H和p.Q1158H)与野生型(WT)通道的生物物理特性。我们观察到这些通道存在多种功能改变,其中Cav3.3-Q1158H与WT通道相比差异最大,包括电流密度降低、激活和失活的电压依赖性右移以及电流动力学减慢。有趣的是,我们还发现,在酸中毒和碱中毒条件下,Cav3.3-R307H和-Q1158H变异体与WT通道相比,其电导特性存在显著差异。鉴于这些数据,我们认为 基因中的罕见变异可能有助于HM的病因学研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e24/9345121/76eaf0da9d00/fnmol-15-892820-g001.jpg

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