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Transcriptional coactivators PGC-1alpha and PGC-lbeta control overlapping programs required for perinatal maturation of the heart.转录共激活因子PGC-1α和PGC-1β控制着心脏围产期成熟所需的重叠程序。
Genes Dev. 2008 Jul 15;22(14):1948-61. doi: 10.1101/gad.1661708.
2
The transcriptional coactivator PGC-1alpha is essential for maximal and efficient cardiac mitochondrial fatty acid oxidation and lipid homeostasis.转录共激活因子PGC-1α对于最大程度且高效的心脏线粒体脂肪酸氧化及脂质稳态至关重要。
Am J Physiol Heart Circ Physiol. 2008 Jul;295(1):H185-96. doi: 10.1152/ajpheart.00081.2008. Epub 2008 May 16.
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Coactivator function of RIP140 for NFkappaB/RelA-dependent cytokine gene expression.RIP140对NFκB/RelA依赖性细胞因子基因表达的共激活功能。
Blood. 2008 Jul 15;112(2):264-76. doi: 10.1182/blood-2007-11-121699. Epub 2008 May 9.
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Estrogen inhibits cardiac hypertrophy: role of estrogen receptor-beta to inhibit calcineurin.雌激素抑制心肌肥大:雌激素受体β抑制钙调神经磷酸酶的作用。
Endocrinology. 2008 Jul;149(7):3361-9. doi: 10.1210/en.2008-0133. Epub 2008 Mar 27.
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Cardiac plasticity.心脏可塑性
N Engl J Med. 2008 Mar 27;358(13):1370-80. doi: 10.1056/NEJMra072139.
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Energization-dependent endogenous activation of proton conductance in skeletal muscle mitochondria.骨骼肌线粒体中质子传导的能量依赖型内源性激活
Biochem J. 2008 May 15;412(1):131-9. doi: 10.1042/BJ20080006.
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Nuclear receptors PPARbeta/delta and PPARalpha direct distinct metabolic regulatory programs in the mouse heart.核受体PPARβ/δ和PPARα在小鼠心脏中指导不同的代谢调控程序。
J Clin Invest. 2007 Dec;117(12):3930-9. doi: 10.1172/JCI32578.
8
The transcriptional corepressor RIP140 regulates oxidative metabolism in skeletal muscle.转录共抑制因子RIP140调节骨骼肌中的氧化代谢。
Cell Metab. 2007 Sep;6(3):236-45. doi: 10.1016/j.cmet.2007.08.004.
9
Factors controlling cardiac myosin-isoform shift during hypertrophy and heart failure.肥厚与心力衰竭过程中控制心肌肌球蛋白异构体转变的因素。
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10
The nuclear receptor ERRalpha is required for the bioenergetic and functional adaptation to cardiac pressure overload.核受体ERRα是心脏压力超负荷时生物能量和功能适应所必需的。
Cell Metab. 2007 Jul;6(1):25-37. doi: 10.1016/j.cmet.2007.06.005.

代谢调节因子受体相互作用蛋白 140 的表达升高可导致心脏肥大和心脏功能障碍。

Elevated expression of the metabolic regulator receptor-interacting protein 140 results in cardiac hypertrophy and impaired cardiac function.

机构信息

Institute of Reproductive and Developmental Biology, Imperial College London, Du Cane Road, London W12ONN, UK.

出版信息

Cardiovasc Res. 2010 Jun 1;86(3):443-51. doi: 10.1093/cvr/cvp418. Epub 2010 Jan 18.

DOI:10.1093/cvr/cvp418
PMID:20083575
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2868176/
Abstract

AIMS

Receptor-interacting protein 140 (RIP140) is a ligand-dependent cofactor for nuclear receptors that regulate networks of genes involved in cellular processes, including metabolism. An important role for RIP140 in metabolic control has been identified in RIP140 null mice, whose phenotypes include derepression of genes involved in energy mobilization or catabolism in adipocytes and a switch to more oxidative fibres in skeletal muscle. We hypothesized that ubiquitous expression of RIP140 would suppress metabolic processes, leading to defects in development or cellular function.

METHODS AND RESULTS

The primary effect of exogenous expression of RIP140 mRNA (real-time PCR) and protein (western blotting) in transgenic mice is impaired postnatal heart function. There was rapid onset of cardiac hypertrophy and ventricular fibrosis, detected microscopically, in male RIP140 transgenic mice from 4 weeks of age, resulting in 25% mortality by 5 months. RIP140 exogenous expression in the heart leads to decreased mitochondria state III and state IV membrane potential and oxygen consumption. Quantitative PCR showed more than 50% reduced expression of genes involved in mitochondrial activity and fatty acid metabolism, including mitochondrial transcription factor A, cytochrome oxidase VIIa, cytochrome XII, CD36, medium-chain acyl dehydrogenase, and fatty acid transport protein, many of which are known targets for nuclear receptors, including peroxisome proliferator-activated receptors PPARalpha and PPARdelta and oestrogen-related receptors ERRalpha and ERRgamma.

CONCLUSION

This study demonstrates that RIP140 is an important cofactor in postnatal cardiac function and that inhibition of the action of RIP140 may provide a model system to investigate specific interventions designed to prevent or delay the onset of cardiac disease.

摘要

目的

受体相互作用蛋白 140(RIP140)是核受体的配体依赖性辅助因子,可调节涉及细胞过程的基因网络,包括代谢。在 RIP140 缺失小鼠中,已确定 RIP140 在代谢控制中的重要作用,其表型包括脂肪细胞中参与能量动员或分解代谢的基因去抑制以及骨骼肌中向更氧化纤维的转变。我们假设 RIP140 的广泛表达会抑制代谢过程,导致发育或细胞功能缺陷。

方法和结果

在转基因小鼠中外源表达 RIP140 mRNA(实时 PCR)和蛋白质(western blot)的主要影响是损害出生后心脏功能。从 4 周龄开始,雄性 RIP140 转基因小鼠迅速出现心脏肥大和心室纤维化,显微镜下可见,导致 5 个月时死亡率达到 25%。RIP140 在心脏中的外源性表达导致线粒体 III 态和 IV 态膜电位和耗氧量降低。定量 PCR 显示,参与线粒体活性和脂肪酸代谢的基因表达降低了 50%以上,包括线粒体转录因子 A、细胞色素氧化酶 VIIa、细胞色素 XII、CD36、中链酰基辅酶 A 脱氢酶和脂肪酸转运蛋白,其中许多是核受体的已知靶点,包括过氧化物酶体增殖物激活受体 PPARalpha 和 PPARdelta 以及雌激素相关受体 ERRalpha 和 ERRgamma。

结论

本研究表明,RIP140 是出生后心脏功能的重要辅助因子,抑制 RIP140 的作用可能为研究旨在预防或延迟心脏病发作的特定干预措施提供模型系统。