首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Targeted deletion of titin N2B region leads to diastolic dysfunction and cardiac atrophy
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Targeted deletion of titin N2B region leads to diastolic dysfunction and cardiac atrophy

机译:肌钙蛋白N2B区的目标缺失导致舒张功能障碍和心脏萎缩

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摘要

Titin is a giant protein that is in charge of the assembly and passive mechanical properties of the sarcomere. Cardiac titin contains a unique N2B region, which has been proposed to modulate elasticity of the titin filament and to be important for hypertrophy signaling and the ischemic stress response through its binding proteins FHL2 and αB-crystallin, respectively. To study the role of the titin N2B region in systole and diastole of the heart, we generated a knockout (KO) mouse deleting only the N2B exon 49 and leaving the remainder of the titin gene intact. The resulting mice survived to adulthood and were fertile. Although KO hearts were small, they produced normal ejection volumes because of an increased ejection fraction. FHL2 protein levels were significantly reduced in the KO mice, a finding consistent with the reduced size of KO hearts. Ultrastructural analysis revealed an increased extension of the remaining spring elements of titin (tandem Ig segments and the PEVK region), which, together with the reduced sarcomere length and increased passive tension derived from skinned cardi-omyocyte experiments, translates to diastolic dysfunction as documented by echocardiography. We conclude from our work that the titin N2B region is dispensable for cardiac development and systolic properties but is important to integrate trophic and elastic functions of the heart. The N2B-KO mouse is the first titin-based model of diastolic dysfunction and, considering the high prevalence of diastolic heart failure, it could provide future mechanistic insights into the disease process.
机译:Titin是一种巨大的蛋白质,负责肌小节的组装和被动机械性能。心脏纤蛋白包含一个独特的N2B区,已被提议调节其纤丝的弹性,并通过其结合蛋白FHL2和αB-crystallin分别对肥大信号和缺血应激反应具有重要意义。为了研究titin N2B区在心脏的心脏收缩和舒张中的作用,我们产生了一个敲除(KO)小鼠,仅删除了N2B外显子49,而其余titin基因则完整无缺。所得小鼠存活至成年并繁殖。尽管KO心脏很小,但由于射血分数增加,它们产生正常的射血量。 FHL2蛋白水平在KO小鼠中显着降低,这一发现与KO心脏的大小减小是一致的。超微结构分析显示,纤溶蛋白剩余弹簧元件(串联Ig片段和PEVK区域)的延伸增加,再加上皮下的心肌细胞实验产生的减少的肌节长度和增加的被动张力,转化为舒张功能障碍,超声心动图。从我们的工作中得出结论,titin N2B区对于心脏发育和收缩特性是必不可少的,但对整合心脏的营养和弹性功能很重要。 N2B-KO小鼠是第一个基于titin的舒张功能障碍模型,考虑到舒张性心力衰竭的高患病率,它可以为疾病过程提供未来的机理见解。

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