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Cardiac overexpression of melusin protects from dilated cardiomyopathy due to long-standing pressure overload.

机译:melusin的心脏过度表达可防止由于长期压力超负荷引起的扩张型心肌病。

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摘要

We have previously shown that genetic ablation of melusin, a muscle specific beta 1 integrin interacting protein, accelerates left ventricle (LV) dilation and heart failure in response to pressure overload. Here we show that melusin expression was increased during compensated cardiac hypertrophy in mice subjected to 1 week pressure overload, but returned to basal levels in LV that have undergone dilation after 12 weeks of pressure overload. To better understand the role of melusin in cardiac remodeling, we overexpressed melusin in heart of transgenic mice. Echocardiography analysis indicated that melusin over-expression induced a mild cardiac hypertrophy in basal conditions (30% increase in interventricular septum thickness) with no obvious structural and functional alterations. After prolonged pressure overload (12 weeks), melusin overexpressing hearts underwent further hypertrophy retaining concentric LV remodeling and full contractile function, whereas wild-type LV showed pronounced chamber dilation with an impaired contractility. Analysis of signaling pathways indicated that melusin overexpression induced increased basal phosphorylation of GSK3beta and ERK1/2. Moreover, AKT, GSK3beta and ERK1/2 were hyper-phosphorylated on pressure overload in melusin overexpressing compared with wild-type mice. In addition, after 12 weeks of pressure overload LV of melusin overexpressing mice showed a very low level of cardiomyocyte apoptosis and stromal tissue deposition, as well as increased capillary density compared with wild-type. These results demonstrate that melusin overexpression allows prolonged concentric compensatory hypertrophy and protects against the transition toward cardiac dilation and failure in response to long-standing pressure overload.
机译:我们以前已经表明,melusin(一种肌肉特异性β1整合素相互作用蛋白)的遗传消融可响应压力超负荷而加速左心室(LV)扩张和心力衰竭。在这里,我们显示在经历1周压力超负荷的小鼠代偿性心肌肥大过程中,melusin表达增加,但是在12周压力超负荷后,LV的基础水平恢复至扩张水平。为了更好地了解melusin在心脏重塑中的作用,我们在转基因小鼠的心脏中过表达了melusin。超声心动图分析表明,melusin的过表达在基础情况下引起轻度的心肌肥大(室间隔厚度增加30%),而结构和功能均无明显改变。长时间的压力超负荷(12周)后,过表达melusin的心脏经历了进一步肥大,保留了同心LV重塑和完全收缩功能,而野生型LV则显示了明显的房室扩张,收缩力受损。信号通路的分析表明,melusin过表达诱导GSK3beta和ERK1 / 2的基础磷酸化增加。此外,与野生型小鼠相比,在过表达melusin的压力过载中,AKT,GSK3beta和ERK1 / 2被过度磷酸化。此外,在压力超负荷12周后,过表达melusin的小鼠的LV与野生型相比,其心肌细胞凋亡和基质组织沉积水平非常低,并且毛细血管密度增加。这些结果表明,melusin过表达允许长期同心代偿性肥大,并防止因长期压力超负荷而向心脏扩张和衰竭过渡。

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