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首页> 外文期刊>Clinical and experimental pharmacology & physiology >αB-Crystallin R120G variant causes cardiac arrhythmias and alterations in the expression of Ca2+-handling proteins and endoplasmic reticulum stress in mice
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αB-Crystallin R120G variant causes cardiac arrhythmias and alterations in the expression of Ca2+-handling proteins and endoplasmic reticulum stress in mice

机译:αB-CrystallinR120G变体引起小鼠心律不齐以及Ca2 +处理蛋白表达和内质网应激的改变

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Mutations of αB-crystallin (CryαB), a small heat shock protein abundantly expressed in cardiac and skeletal muscles, are known to cause desmin-related myopathies. The CryαB R120G allele has been linked to a familial desminopathy and, in transgenic mice, causes a sudden death at about 28 weeks of age. To investigate the mechanisms of the sudden cardiac arrest of CryαB R120G transgenic mice, we prepared protein samples from left ventricular tissues of two different age groups (10 and 28 weeks) and examined Ca2+-handling proteins. Expression of sarcoplasmic/endoplasmic reticulum calcium ATPase (SERCA) 2, phospholamban, ryanodine receptor 2 and calsequestrin 2 was significantly decreased in 28- versus 10-week-old CryαB R120G transgenic mice. In addition, low heart rate variability, including heart rate, total power and low frequency, was observed and continuous electrocardiogram monitoring revealed cardiac arrhythmias, such as ventricular tachycardia, atrioventricular block and atrial flutter, in 28-week-old CryαB R120G transgenic mice. In contrast, expression of endoplasmic reticulum (ER) degradation enhancing α-mannosidase-like protein, inositol requirement 1 and X-box binding protein 1 were increased significantly in 28- versus 10-week-old CryαBR120G transgenic mice, suggesting that the CryαBR120G transgenic mice exhibit increased ER stress compared with wild-type mice. Together, the data suggest that the CryαB R120G dominant variant induces ER stress and impairs Ca2+ regulation, leading to ageing-related cardiac dysfunction, arrhythmias and decreased autonomic tone with shortened lifespan.
机译:众所周知,αB-晶状体蛋白(CryαB)的突变是一种在心肌和骨骼肌中大量表达的小热激蛋白,可引起结蛋白相关的肌病。 CryαBR120G等位基因与家族性皮肤病相关,在转基因小鼠中,约28周龄导致猝死。为了研究CryαBR120G转基因小鼠心脏骤停的机制,我们从两个不同年龄组(10周和28周)的左心室组织中制备了蛋白质样品,并检查了Ca2 +处理蛋白。在28周龄和10周龄的CryαBR120G转基因小鼠中,肌浆网/内质网钙ATP酶(SERCA)2,磷酸lamban,ryanodine受体2和钙螯合蛋白2的表达明显降低。此外,在28周龄的CryαBR120G转基因小鼠中,观察到了低心率变异性,包括心率,总功率和低频,并且连续心电图监测显示了心律失常,例如室性心动过速,房室传导阻滞和心房扑动。相反,在28周龄和10周龄的CryαBR120G转基因小鼠中,内质网(ER)降解增强型α-甘露糖苷酶样蛋白,肌醇需求量1和X-box结合蛋白1的表达显着增加,表明CryαBR120G转基因与野生型小鼠相比,小鼠表现出增加的ER应激。总之,数据表明CryαBR120G显性变异体诱导ER应激并损害Ca2 +调节,从而导致与衰老相关的心脏功能障碍,心律不齐和自主神经张力降低,寿命缩短。

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