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Myocardial Adipose Triglyceride Lipase Overexpression Protects against Burn-Induced Cardiac Lipid Accumulation and Injury

机译:心肌脂肪甘油三酸酯脂酶的过度表达可防止烧伤诱导的心脏脂质蓄积和损伤

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摘要

Maladaptive cardiac metabolism is a common trigger of cardiac lipid accumulation and cardiac injury under serious burn challenge. Adipose triglyceride lipase (ATGL) is the key enzyme that catalyzes triglyceride hydrolysis; however, its alteration and impact on cardiac function following serious burn injury are still unknown. Here, we found that the cardiac fatty acid (FA) metabolism increased, accompanied by augmented FA accumulation and ATGL expression, after serious burn injury. We generated heterozygous ATGL knockout and heterozygous cardiac-specific ATGL overexpression thermal burn mice. The results demonstrated that partial loss of ATGL could not relieve burn-induced cardiac lipid accumulation and cardiac injury, possibly due to the suppression of cardiac FA metabolism plus insufficient compensatory glucose utilization. In contrast, cardiac-specific overexpression of ATGL alleviated cardiac lipid accumulation and cardiac injury following burn challenge by switching the substrate preference from FA towards increased glucose utilization. The underlying mechanism was possibly related to increased glucose transporter-1 expression and reduced cardiac lipid accumulation induced by ATGL overexpression. Our data first demonstrated that elevated cardiac ATGL expression after serious burn injury is an adaptive, albeit insufficient, response to compensate for the increase in energy consumption and that further overexpression of ATGL is beneficial for ameliorating cardiac injury, indicating its therapeutic potential.
机译:在严重烧伤挑战下,适应性不良的心脏代谢是引起心脏脂质积聚和心脏损伤的常见诱因。脂肪甘油三酸酯脂肪酶(ATGL)是催化甘油三酸酯水解的关键酶。然而,严重烧伤后其改变和对心脏功能的影响仍未知。在这里,我们发现严重烧伤后心脏脂肪酸(FA)代谢增加,同时FA积累和ATGL表达增加。我们生成了杂合ATGL基因敲除和杂合心脏特异性ATGL过表达热烧伤小鼠。结果表明,ATGL的部分丧失不能缓解烧伤引起的心脏脂质蓄积和心脏损伤,这可能是由于心脏FA代谢受到抑制以及代偿性葡萄糖利用不足所致。相比之下,ATGL的心脏特异性过表达通过将底物偏好从FA转换为增加的葡萄糖利用率,减轻了烧伤后的心脏脂质蓄积和心脏损伤。潜在的机制可能与葡萄糖转运蛋白1的表达增加和ATGL过表达诱导的心脏脂质蓄积减少有关。我们的数据首次证明,严重烧伤后心脏ATGL表达升高是一种适应性反应,尽管不足以补偿能量消耗的增加,并且ATGL的进一步过表达有利于减轻心脏损伤,表明其治疗潜力。

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