Kolwicz Stephen C, Liu Li, Goldberg Ira J, Tian Rong
Mitochondria and Metabolism Center, Department of Anesthesiology and Pain Medicine, University of Washington, Seattle, WA
Institute of Systems Biomedicine, Peking University, Beijing, China.
Diabetes. 2015 Aug;64(8):2817-27. doi: 10.2337/db14-1943. Epub 2015 Apr 9.
Elevated cardiac triacylglycerol (TAG) content is traditionally equated with cardiolipotoxicity and suggested to be a culprit in cardiac dysfunction. However, previous work demonstrated that myosin heavy-chain-mediated cardiac-specific overexpression of diacylglycerol transferase 1 (MHC-DGAT1), the primary enzyme for TAG synthesis, preserved cardiac function in two lipotoxic mouse models despite maintaining high TAG content. Therefore, we examined whether increased cardiomyocyte TAG levels due to DGAT1 overexpression led to changes in cardiac TAG turnover rates under normoxia and ischemia-reperfusion conditions. MHC-DGAT1 mice had elevated TAG content and synthesis rates, which did not alter cardiac function, substrate oxidation, or myocardial energetics. MHC-DGAT1 hearts had ischemia-induced lipolysis; however, when a physiologic mixture of long-chain fatty acids was provided, enhanced TAG turnover rates were associated with improved functional recovery from low-flow ischemia. Conversely, exogenous supply of palmitate during reperfusion suppressed elevated TAG turnover rates and impaired recovery from ischemia in MHC-DGAT1 hearts. Collectively, this study shows that elevated TAG content, accompanied by enhanced turnover, does not adversely affect cardiac function and, in fact, provides cardioprotection from ischemic stress. In addition, the results highlight the importance of exogenous supply of fatty acids when assessing cardiac lipid metabolism and its relationship with cardiac function.
传统上,心脏三酰甘油(TAG)含量升高被等同于心磷脂毒性,并被认为是心脏功能障碍的一个罪魁祸首。然而,先前的研究表明,在两种脂毒性小鼠模型中,肌球蛋白重链介导的TAG合成主要酶二酰甘油转移酶1(MHC-DGAT1)的心脏特异性过表达,尽管TAG含量维持在较高水平,但仍能保留心脏功能。因此,我们研究了在常氧和缺血再灌注条件下,由于DGAT1过表达导致的心肌细胞TAG水平升高是否会导致心脏TAG周转率的变化。MHC-DGAT1小鼠的TAG含量和合成速率升高,但这并未改变心脏功能、底物氧化或心肌能量代谢。MHC-DGAT1心脏存在缺血诱导的脂解作用;然而,当提供长链脂肪酸的生理混合物时,TAG周转率的提高与低流量缺血后的功能恢复改善相关。相反,在再灌注期间外源性供应棕榈酸会抑制MHC-DGAT1心脏中升高的TAG周转率,并损害缺血后的恢复。总的来说,这项研究表明,升高的TAG含量伴随着周转率的提高,并不会对心脏功能产生不利影响,事实上,还能为心脏提供对缺血应激的保护作用。此外,研究结果突出了在评估心脏脂质代谢及其与心脏功能的关系时,外源性脂肪酸供应的重要性。