首页> 外文期刊>Biochimica et Biophysica Acta. Molecular and cell biology of Lipids >Isolated Plin5-deficient cardiomyocytes store less lipid droplets than normal, but without increased sensitivity to hypoxia
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Isolated Plin5-deficient cardiomyocytes store less lipid droplets than normal, but without increased sensitivity to hypoxia

机译:孤立的Plin5缺陷的心肌细胞比正常储存更少的脂液体,但不增加对缺氧的敏感性

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摘要

Plin5 is abundantly expressed in the heart where it binds to lipid droplets (LDs) and facilitates physical interaction between LDs and mitochondria. We isolated cardiomyocytes from adult Plin5(+/+) and Plin5(-/-) mice to study the role of Plin5 for fatty acid uptake, LD accumulation, fatty acid oxidation, and tolerance to hypoxia. Cardiomyocytes isolated from Plin5(-/-) mice cultured with oleic acid stored less LDs than Plin5(+/+), but comparable levels to Plin5(+/+) cardiomyocytes when adipose triglyceride lipase activity was inhibited. The ability to oxidize fatty acids into CO2 was similar between Plin5(+/+) and Plin5(-/-) cardiomyocytes, but Plin5(-/-) cardiomyocytes had a transient increase in intracellular fatty acid oxidation intermediates. After pre-incubation with oleic acids, Plin5(-/-) cardiomyocytes retained a higher content of glycogen and showed improved tolerance to hypoxia compared to Plin5(+/+). In isolated, perfused hearts, deletion of Plin5 had no important effect on ventricular pressures or infarct size after ischemia. Old Plin5(-/-) mice had reduced levels of cardiac triacylglycerides, increased heart weight, and apart from modest elevated expression of mRNAs for beta myosin heavy chain Myh7 and the fatty acid transporter Cd36, other genes involved in fatty acid oxidation, glycogen metabolism and glucose utilization were essentially unchanged by removal of Plin5. Plin5 seems to facilitate cardiac LD storage primarily by repressing adipose triglyceride lipase activity without altering cardiac fatty acid oxidation capacity. Expression of Plin5 and cardiac LD content of isolated cardiomyocytes has little importance for tolerance to acute hypoxia and ischemia, which contrasts the protective role for Plin5 in mouse models during myocardial ischemia.
机译:PLIN5在内心中大量表达,其中它与脂液滴(LDS)结合并促进LDS和线粒体之间的物理相互作用。我们从成人PLIN5(+ / +)和PLIN5( - / - )小鼠中孤立心肌细胞,研究PLIN5对脂肪酸摄取,LD积累,脂肪酸氧化和缺氧耐受性的作用。从PLIN5( - / - )小鼠中分离的心肌细胞与油酸培养的小鼠比PLIN5(+ / +)储存,而是在脂肪甘油三酯脂肪酶活性时与PLIN5(+ / +)心肌细胞相当的水平抑制。在PLIN5(+ / +)和PLIN5( - / - )心肌细胞之间氧化脂肪酸进入CO 2中的能力,但PLIN5( - / - )心肌细胞在细胞内脂肪酸氧化中间体具有瞬时增加。与油酸预孵育后,PLIN5( - / - )心肌细胞保留更高的糖原含量,与PLIN5(+ / +)相比,对缺氧的改善耐受性。在孤立的,灌注的心中,缺失Plin5对缺血后心室压力或梗死大小没有重要影响。旧的PLIN5( - / - )小鼠的心脏三酰基甘油酯水平降低,心脏重量增加,除了适度的β肌苷重链MYH7和脂肪酸转运蛋白CD36的MRNA的升高表达外,其他基因涉及脂肪酸氧化,糖原代谢通过去除PLIN5基本上没有改变葡萄糖利用。 PLIN5似乎促进了心脏LD储存,主要通过压制脂肪甘油三酯脂肪酶活性而不改变心脏脂肪酸氧化能力。孤立心肌细胞的PLIN5和心脏LD含量的表达对急性缺氧和缺血的耐受性尤其重要,这对比在心肌缺血期间的小鼠模型中PLIN5的保护作用。

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