首页> 外文期刊>The Journal of Physiology >Ablating the Rab‐GTPase activating protein TBC1D1 predisposes rats to high‐fat diet‐induced cardiomyopathy
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Ablating the Rab‐GTPase activating protein TBC1D1 predisposes rats to high‐fat diet‐induced cardiomyopathy

机译:烧蚀Rab-GTP酶活化蛋白TBC1D1促使大鼠高脂肪饮食诱导的心肌病

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Key points Although the role of TBC1D1 within the heart remains unknown, expression of TBC1D1 increases in the left ventricle following an acute infarction, suggesting a biological importance within this tissue. We investigated the mechanistic role of TBC1D1 within the heart, aiming to establish the consequences of attenuating TBC1D1 signalling in the development of diabetic cardiomyopathy, as well as to determine potential sex differences. TBC1D1 ablation increased plasma membrane fatty acid binding protein content and myocardial palmitate oxidation. Following high‐fat feeding, TBC1D1 ablation dramatically increased fibrosis and induced end‐diastolic dysfunction in both male and female rats in the absence of changes in mitochondrial bioenergetics. Altogether, independent of sex, ablating TBC1D1 predisposes the left ventricle to pathological remodelling following high‐fat feeding, and suggests TBC1D1 protects against diabetic cardiomyopathy. Abstract TBC1D1, a Rab‐GTPase activating protein, is involved in the regulation of glucose handling and substrate metabolism within skeletal muscle, and is essential for maintaining pancreatic β‐cell mass and insulin secretion. However, the function of TBC1D1 within the heart is largely unknown. Therefore, we examined the role of TBC1D1 in the left ventricle and the functional consequence of ablating TBC1D1 on the susceptibility to high‐fat diet‐induced abnormalities. Since mutations within TBC1D1 (R125W) display stronger associations with clinical parameters in women, we further examined possible sex differences in the predisposition to diabetic cardiomyopathy. In control‐fed animals, TBC1D1 ablation did not alter insulin‐stimulated glucose uptake, or echocardiogram parameters, but increased accumulation of a plasma membrane fatty acid transporter and the capacity for palmitate oxidation. When challenged with an 8?week high‐fat diet, TBC1D1 knockout rats displayed a four‐fold increase in fibrosis compared to wild‐type animals, and this was associated with diastolic dysfunction, suggesting a predisposition to diet‐induced cardiomyopathy. Interestingly, high‐fat feeding only induced cardiac hypertrophy in male TBC1D1 knockout animals, implicating a possible sex difference. Mitochondrial respiratory capacity and substrate sensitivity to pyruvate and ADP were not altered by diet or TBC1D1 ablation, nor were markers of oxidative stress, or indices of overt heart failure. Altogether, independent of sex, ablation of TBC1D1 not only increased the susceptibility to high‐fat diet‐induced diastolic dysfunction and left ventricular fibrosis, independent of sex, but also predisposed male animals to the development of cardiac hypertrophy. These data suggest that TBC1D1 may exert cardioprotective effects in the development of diabetic cardiomyopathy.
机译:要点虽然TBC1D1的心脏中的作用仍然是未知的,TBC1D1的表达增加在急性心肌梗塞左心室,表明该组织中的生物学意义。我们调查TBC1D1的心脏内的机械作用,旨在建立糖尿病心肌病的发展衰减TBC1D1信号的后果,以及确定潜在的性别差异。 TBC1D1消融增加质膜脂肪酸结合蛋白含量和棕榈酸心肌氧化。继高脂饮食,TBC1D1消融急剧增加纤维化,在没有线粒体生物能量的变化引起的舒张末期功能障碍的男性和女性的影响。总之,自主性,烧蚀TBC1D1易患左心室以下高脂饮食病理重塑,并提出TBC1D1防止糖尿病性心肌病。抽象TBC1D1,一个RAB-GTP酶激活蛋白质,参与的葡萄糖处理和底物代谢骨骼肌内的调节,并且是维持胰岛β细胞的质量和胰岛素分泌是至关重要的。然而,TBC1D1的心脏内的功能主要是未知的。因此,我们研究TBC1D1的左心室和敏感性,以高脂饮食引起的异常烧蚀TBC1D1的功能性结果的作用。由于TBC1D1(R125W)中的突变显示与女性临床参数更强的协会,我们进一步研究的倾向,糖尿病心肌病可能的性别差异。在控制喂养的动物,TBC1D1消融不改变胰岛素刺激的葡萄糖摄取,或超声心动图参数,但质膜脂肪酸转运的积累增加并且对于棕榈酸酯氧化的能力。当与8?周高脂饮食的挑战,TBC1D1基因敲除鼠显示纤维化增加四倍与野生型动物,这与舒张功能障碍有关,提示易患饮食诱导的心肌病。男性TBC1D1有趣的是,高脂饮食不仅心肌肥厚敲除动物,暗示可能的性别差异。线粒体呼吸能力和丙酮酸和ADP基板灵敏度不是由饮食或TBC1D1消融改变,也没有氧化应激的标志物,或公开的心脏衰竭的索引。总之,自主性,TBC1D1的消融不仅增加了易患高脂饮食诱导的舒张功能障碍和左心室纤维化,自主性,也易患雄性动物心肌肥厚的发展。这些数据表明,TBC1D1可能对糖尿病心肌病的发展心脏保护作用。

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