Noureddine Maya, Broadway-Stringer Sophie, O'Shea Christopher, Jones Bethany A I, Hayes Abbie, Denning Chris, Loughna Siobhan, Mohammed Fiyaz, Pavlovic Davor, Gehmlich Katja
Department of Cardiovascular Sciences, School of Medical Sciences, College of Medicine and Health, University of Birmingham, Birmingham, UK.
Division of Biomedical Sciences, Warwick Medical School, Clinical Sciences Research Laboratory, Coventry, UK.
J Mol Cell Cardiol Plus. 2025 May 17;12:100455. doi: 10.1016/j.jmccpl.2025.100455. eCollection 2025 Jun.
Missense variants of -disk protein, alpha-actinin-2 (ACTN2), have been linked to hypertrophic cardiomyopathy (HCM). A novel missense variant, M228T, was identified in family members presenting with HCM and/or atrial arrhythmias. Embryonic lethality was previously shown in mice expressing this variant homozygously, whereas heterozygous (Het) expression did not manifest an overt HCM phenotype. Importantly, the atrial arrhythmias observed in the identified family have not been explored in the context of M228T, despite many patients exhibiting electrical abnormalities prior to the clinical onset of HCM.
Six-month-old Het M228T and wild-type (WT) mice were used to evaluate electrophysiological properties using electrocardiography (ECG) and atrial optical mapping. Echocardiography and strain analysis were employed to assess cardiac structure and function.
Het mice exhibited a prolongation in action potential duration and depolarisation time at 30, 50, and 70 % repolarisation in both the left and right atria. No significant alterations in atrial conduction velocity were observed. No changes in atrial ECG parameters were detected. Het mice displayed no evidence of structural remodelling, nor were there any changes in systolic parameters or overt diastolic dysfunction, as assessed by conventional echocardiography and strain analysis. Signs of contractile dyssynchrony were present, specifically at the apex relative to WT controls.
The Het M228T mouse model demonstrated atrial electrical alterations that occurred independently of any overt cardiac structural or functional remodelling. These findings may support the causative role for atrial electric phenotypes identified in a subset of patients carrying the variant.
肌动蛋白盘状蛋白α - 辅肌动蛋白 - 2(ACTN2)的错义变异与肥厚型心肌病(HCM)有关。在患有HCM和/或房性心律失常的家庭成员中发现了一种新的错义变异M228T。先前已证明纯合表达该变异的小鼠具有胚胎致死性,而异合子(Het)表达并未表现出明显的HCM表型。重要的是,尽管许多患者在HCM临床发病前就表现出电异常,但在M228T的背景下,尚未对已识别家族中观察到的房性心律失常进行研究。
使用6个月大的Het M228T和野生型(WT)小鼠,通过心电图(ECG)和心房光学标测来评估电生理特性。采用超声心动图和应变分析来评估心脏结构和功能。
Het小鼠在左、右心房的动作电位持续时间以及复极化30%、50%和70%时的去极化时间均延长。未观察到心房传导速度有显著改变。未检测到心房ECG参数的变化。通过传统超声心动图和应变分析评估,Het小鼠没有结构重塑的证据,收缩参数或明显的舒张功能障碍也没有变化。存在收缩不同步的迹象,特别是相对于WT对照组,在心房尖部。
Het M228T小鼠模型显示心房电改变独立于任何明显的心脏结构或功能重塑而发生。这些发现可能支持在携带该变异的部分患者中所识别的心房电表型的致病作用。