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首页> 外文期刊>Animal Genetics >Effects of cannabinoid receptor 1 (brain) on lipid accumulation by transcriptional control of CPT1A and CPT1B.
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Effects of cannabinoid receptor 1 (brain) on lipid accumulation by transcriptional control of CPT1A and CPT1B.

机译:大麻素受体1(脑)通过CPT1A和CPT1B的转录控制对脂质蓄积的影响。

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摘要

CB1 (also known as CNR1), a main receptor for cannabinoids acting at PPARs, can enhance fat deposition. Carnitine palmitoyltransferase-1 (CPT1), an enzyme responsible for the transport of long-chain fatty acids for beta -oxidation, is closely related to fat deposition. Whether CB1 can regulate intramuscular adipocytes lipid accumulation through regulation of CPT1 is unclear. Based on the investigation of tissue- and breed-specific CPT1A and CPT1B mRNA expression levels in Jinhua and Landrace pigs, we studied the effects of CB1 on lipid accumulation and CPT1B expression by treating porcine intramuscular adipocytes with CB1 antagonist Delta 9-THC and antagonist SR141716. Results showed that muscle CPT1 mRNA was expressed at higher levels in the longissimus dorsi and subcutaneous fat. Liver CPT1A mRNA expression levels were higher in the pancreas, duodenum and liver. Compared with Landrace pigs, CPT1A and CPT1B in the longissimus dorsi of Jinhua pigs were significantly higher and positively correlated with intramuscular fat content. However, for subcutaneous fat, CPT1 levels were significantly lower and negatively correlated with body fat percentage. Delta 9-THC significantly increased CB1 mRNA levels and lipid accumulation but decreased CPT1A and CPT1B mRNA levels. Conversely, SR141716 reduced CB1 mRNA levels but increased CPT1A and CPT1B mRNA levels, resulting in decreased lipid accumulation. The CPT1 antagonist etomoxir did not affect CB1 expression, suggesting that CB1 is likely upstream of CPT1A and CPT1B. Meanwhile, PPARA expression was greatly decreased when CPT1A and CPT1B were inhibited and enhanced when CPT1A and CPT1B were activated. Taken together, these data indicate that CB1 can affect intramuscular fat deposition by regulating both CPT1A and CPT1B mRNA expression, with the PPARA signal pathway likely playing a major role in this process.
机译:CB1(也称为CNR1)是作用于PPAR的大麻素的主要受体,可增强脂肪沉积。肉碱棕榈酰转移酶-1(CPT1)是负责运输长链脂肪酸以进行β氧化的酶,与脂肪沉积密切相关。目前尚不清楚CB1是否可以通过调节CPT1来调节肌内脂肪细胞的脂质蓄积。在调查金华和长白猪的组织和品种特异性CPT1A和CPT1B mRNA表达水平的基础上,我们通过用CB1拮抗剂Delta 9-THC和SR141716拮抗剂处理猪肌内脂肪细胞,研究了CB1对脂质蓄积和CPT1B表达的影响。 。结果显示,肌肉CPT1 mRNA在背最长肌和皮下脂肪中表达较高。胰腺,十二指肠和肝脏中肝脏CPT1A mRNA表达水平较高。与长白猪相比,金华猪背最长肌中的CPT1A和CPT1B显着升高,与肌内脂肪含量呈正相关。但是,对于皮下脂肪,CPT1水平显着降低,并且与体脂百分比呈负相关。 Delta 9-THC显着增加CB1 mRNA水平和脂质蓄积,但降低CPT1A和CPT1B mRNA水平。相反,SR141716降低CB1 mRNA水平,但增加CPT1A和CPT1B mRNA水平,从而导致脂质蓄积减少。 CPT1拮抗剂依托莫昔没有影响CB1的表达,表明CB1可能在CPT1A和CPT1B的上游。同时,当抑制CPT1A和CPT1B时,PPARA表达大大降低,而当激活CPT1A和CPT1B时,PPARA表达增强。综上所述,这些数据表明CB1可以通过调节CPT1A和CPT1B mRNA表达来影响肌肉内脂肪沉积,而PPARA信号途径可能在此过程中起主要作用。

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