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Troponin Mutation Caused Diastolic Dysfunction and Experimental Treatment in Transgenic Mice with Cardiomyopathy. 肌钙蛋白突变引起转基因心肌病小鼠舒张功能障碍及实验治疗。
Pub Date : 2014-01-01 Epub Date: 2015-07-09 DOI: 10.7603/s40782-014-0017-6
Yang Xu, Jie Tian, Xupei Huang

Troponin, a contractile protein of the thin filament of striated muscle, consists of three subunits: troponin C (TnC), troponin T (TnT), and troponin I (TnI). Cardiac troponin I (cTnI) plays a critical role in regulation of cardiac function. The physiological effect of cTnI, as an inhibitory subunit of troponin complex, is to prevent the interaction between myosin heavy chain heads and actins, i.e. the cross-bridge formation, and to ensure a proper relaxation of cardiac myofilaments. In pathological conditions, the deficiency of cTnI or mutations in cTnI especially in the C-terminus of cTnI is associated with diastolic dysfunction caused by myofibril hypersensitivity to Ca2+. Our laboratory has generated cTnI knockout mouse model to investigate the cellular and molecular function of cTnI and created cTnI mutant disease mouse models to explore the pathophysiology caused by cTnI mutations in the heart. Here, we present our recent studies on physiological function of cTnI in the heart and the pathological consequences caused by the cTnI mutations in the diseased heart using the transgenic mouse models. The mechanisms underlying diastolic dysfunction and heart failure caused by cTnI mutations are explored in cell-based assays and in transgenic animal models. These studies provide us with useful information in searching for therapeutic strategies and target-oriented medication for the treatment of diastolic dysfunction and heart failure.

肌钙蛋白是横纹肌细丝的一种可收缩蛋白,由三个亚基组成:肌钙蛋白C (TnC)、肌钙蛋白T (TnT)和肌钙蛋白I (TnI)。心肌肌钙蛋白I (cTnI)在心脏功能的调节中起着关键作用。cTnI作为肌钙蛋白复合物的抑制亚基,其生理作用是防止肌球蛋白重链头与肌动蛋白的相互作用,即交叉桥的形成,保证心肌肌丝的适当松弛。在病理条件下,cTnI缺乏或cTnI突变,特别是在cTnI的c端,与肌原纤维对Ca2+过敏引起的舒张功能障碍有关。我们实验室建立了cTnI敲除小鼠模型,研究cTnI的细胞和分子功能;建立了cTnI突变型疾病小鼠模型,探索cTnI突变在心脏引起的病理生理。在这里,我们介绍了我们最近使用转基因小鼠模型对cTnI在心脏中的生理功能和cTnI突变在患病心脏中引起的病理后果的研究。cTnI突变引起的舒张功能障碍和心力衰竭的潜在机制在基于细胞的实验和转基因动物模型中进行了探索。这些研究为我们寻找治疗舒张功能障碍和心力衰竭的治疗策略和靶向药物提供了有用的信息。
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GSTF journal of advances in medical research
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