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首页> 外文期刊>Journal of Molecular and Cellular Cardiology >High-fat feeding in cardiomyocyte-restricted PPARdelta knockout mice leads to cardiac overexpression of lipid metabolic genes but fails to rescue cardiac phenotypes.
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High-fat feeding in cardiomyocyte-restricted PPARdelta knockout mice leads to cardiac overexpression of lipid metabolic genes but fails to rescue cardiac phenotypes.

机译:在限制心肌细胞的PPARdelta基因敲除小鼠中高脂喂养会导致脂质代谢基因的心脏过度表达,但无法挽救心脏表型。

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摘要

Peroxisome proliferator-activated receptor delta (PPARdelta) is an essential determinant of basal myocardial fatty acid oxidation (FAO) and bioenergetics. We wished to determine whether increased lipid loading affects the PPARdelta deficient heart in transcriptional regulation of FAO and in the development of cardiac pathology. Cardiomyocyte-restricted PPARdelta knockout (CR-PPARdelta(-/-)) and control (alpha-MyHC-Cre) mice were subjected to 48 h of fasting and to a long-term maintenance on a (28 weeks) high-fat diet (HFD). The expression of key FAO proteins in heart was examined. Serum lipid profiles, cardiac pathology, and changes of various transduction signaling pathways were also examined. Mice subjected to fasting exhibited upregulated transcript expression of FAO genes in the CR-PPARdelta(-/-) hearts. Moreover, long-term HFD in CR-PPARdelta(-/-) mice induced a strikingly greater transcriptional response. After HFD, genes encoding key FAO enzymes were expressed remarkably more in CR-PPARdelta(-/-) hearts than in those of control mice. Despite the marked rise of FAO gene expression, corresponding protein expression remained low in the CR-PPARdelta(-/-) heart, accompanied by abnormalities in sarcomere structures and mitochondria that were similar to those of CR-PPARdelta(-/-) hearts with regular chow feeding. The CR-PPARdelta(-/-) mice displayed increased expression of PPARgamma co-activator-1alpha (PGC-1alpha) and PPARalpha in the heart with deactivated Akt and p42/44 MAPK signaling in response to HFD. We conclude that PPARdelta is an essential determinant of myocardial FAO. Increased lipid intake activates cardiac expression of FAO genes via PPARalpha/PGC-1alpha pathway, albeit it is not sufficient to improve cardiac pathology due to PPARdelta deficiency.
机译:过氧化物酶体增殖物激活受体δ(PPARδ)是基础心肌脂肪酸氧化(FAO)和生物能的重要决定因素。我们希望确定增加的脂质负荷是否会影响FAO的转录调控和心脏病理学发展中的PPARδ缺失心脏。限制心肌细胞的PPARdelta基因敲除(CR-PPARdelta(-/-))和对照(alpha-MyHC-Cre)小鼠禁食48 h,并长期食用(28周)高脂饮食( HFD)。检查了心脏中粮农组织关键蛋白质的表达。还检查了血清脂质谱,心脏病理学以及各种转导信号通路的变化。禁食的小鼠在CR-PPARdelta(-/-)心脏中表现出FAO基因的转录表达上调。此外,CR-PPARdelta(-/-)小鼠中的长期HFD诱导惊人的更大的转录反应。在HFD之后,CR-PPARdelta(-/-)心脏中的编码关键FAO酶的基因比对照小鼠中的表达更多。尽管FAO基因表达明显增加,但相应的蛋白表达在CR-PPARdelta(-/-)心脏中仍然很低,伴有肌节结构和线粒体异常,与CR-PPARdelta(-/-)心脏相似定期喂食物。 CR-PPARdelta(-/-)小鼠在心脏中显示出PPARgamma共同激活因子1alpha(PGC-1alpha)和PPARalpha的表达增加,而Akt和p42 / 44 MAPK信号均响应于HFD而失活。我们得出的结论是,PPARdelta是心肌FAO的重要决定因素。脂质摄入增加通过PPARalpha / PGC-1alpha途径激活FAO基因的心脏表达,尽管由于PPARdelta缺乏而不足以改善心脏病理。

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