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Cardiac troponin T mutations result in allele-specific phenotypes in a mouse model for hypertrophic cardiomyopathy

机译:心肌肌钙蛋白T突变导致肥厚型心肌病的小鼠模型中的等位基因特异性表型

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摘要

Multiple mutations in cardiac troponin T (cTnT) can cause familial hypertrophic cardiomyopathy (FHC). Patients with cTnT mutations generally exhibit mild or no ventricular hypertrophy, yet demonstrate a high frequency of early sudden death. To understand the functional basis of these phenotypes, we created transgenic mouse lines expressing 30%, 67%, and 92% of their total cTnT as a missense (R92Q) allele analogous to one found in FHC. Similar to a mouse FHC model expressing a truncated cTnT protein, the left ventricles of all R92Q lines are smaller than those of wild-type. In striking contrast to truncation mice, however, the R92Q hearts demonstrate significant induction of atrial natriuretic factor and β-myosin heavy chain transcripts, interstitial fibrosis, and mitochondrial pathology. Isolated cardiac myocytes from R92Q mice have increased basal sarcomeric activation, impaired relaxation, and shorter sarcomere lengths. Isolated working heart data are consistent, showing hypercontractility and diastolic dysfunction, both of which are common findings in patients with FHC. These mice represent the first disease model to exhibit hypercontractility, as well as a unique model system for exploring the cellular pathogenesis of FHC. The distinct phenotypes of mice with different TnT alleles suggest that the clinical heterogeneity of FHC is at least partially due to allele-specific mechanisms.
机译:心肌肌钙蛋白T(cTnT)的多个突变可引起家族性肥厚性心肌病(FHC)。具有cTnT突变的患者通常表现出轻度或无心室肥大,但表现出早期猝死的高频率。为了了解这些表型的功能基础,我们创建了转基因小鼠品系,它们表达其总cTnT的30%,67%和92%作为错义(R92Q)等位基因,类似于在FHC中发现的一种。与表达截短的cTnT蛋白的小鼠FHC模型相似,所有R92Q系的左心室均小于野生型。与截短小鼠形成鲜明对比的是,R92Q心脏表现出对心钠素和β-肌球蛋白重链转录本,间质纤维化和线粒体病理学的显着诱导。从R92Q小鼠分离的心肌细胞具有增加的基础肌节激活,受损的松弛和更短的肌节长度。孤立的工作心脏数据是一致的,显示出过度收缩和舒张功能障碍,这两者都是FHC患者的常见发现。这些小鼠代表了首个表现出过度收缩的疾病模型,以及探索FHC细胞发病机理的独特模型系统。具有不同TnT等位基因的小鼠的不同表型表明FHC的临床异质性至少部分归因于等位基因特异性机制。

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