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首页> 外文期刊>Cell death & disease. >Reduced brain UCP2 expression mediated by microRNA-503 contributes to increased stroke susceptibility in the high-salt fed stroke-prone spontaneously hypertensive rat
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Reduced brain UCP2 expression mediated by microRNA-503 contributes to increased stroke susceptibility in the high-salt fed stroke-prone spontaneously hypertensive rat

机译:由microRNA-503介导的大脑UCP2表达的降低有助于高盐喂养易发中风的自发性高血压大鼠的中风易感性

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摘要

UCP2 maps nearby the lod score peak of STR1 -stroke QTL in the SHRSP rat strain. We explored the potential contribution of UCP2 to the high-salt diet (JD)-dependent increased stroke susceptibility of SHRSP. Male SHRSP, SHRSR, two reciprocal SHRSR/SHRSP- STR1/ QTL stroke congenic lines received JD for 4 weeks to detect brain UCP2 gene/protein modulation as compared with regular diet (RD). Brains were also analyzed for NF- κ B protein expression, oxidative stress level and UCP2 -targeted microRNAs expression level. Next, based on knowledge that fenofibrate and Brassica Oleracea (BO) stimulate UCP2 expression through PPAR α activation, we monitored stroke occurrence in SHRSP receiving JD plus fenofibrate versus vehicle, JD plus BO juice versus BO juice plus PPAR α inhibitor. Brain UCP2 expression was markedly reduced by JD in SHRSP and in the (SHRsr.SHRsp-( D1Rat134-Mt1pa )) congenic line, whereas NF- κ B expression and oxidative stress level increased. The opposite phenomenon was observed in the SHRSR and in the (SHRsp.SHRsr -(D1Rat134-Mt1pa) ) reciprocal congenic line. Interestingly, the UCP2 -targeted rno-microRNA-503 was significantly upregulated in SHRSP and decreased in SHRSR upon JD, with consistent changes in the two reciprocal congenic lines. Both fenofibrate and BO significantly decreased brain microRNA-503 level, upregulated UCP2 expression and protected SHRSP from stroke occurrence. In vitro overexpression of microRNA-503 in endothelial cells suppressed UCP2 expression and led to a significant increase of cell mortality with decreased cell viability. Brain UCP2 downregulation is a determinant of increased stroke predisposition in high-salt-fed SHRSP. In this context, UCP2 can be modulated by both pharmacological and nutraceutical agents. The microRNA-503 significantly contributes to mediate brain UCP2 downregulation in JD-fed SHRSP.
机译:UCP2将SHRSP大鼠品系中STR1冲程QTL的lod得分峰定位在附近。我们探讨了UCP2对SHRSP的高盐饮食(JD)依赖性中风敏感性增加的潜在贡献。与常规饮食(RD)相比,雄性SHRSP,SHRSR,两个相互对应的SHRSR / SHRSP-STR1 / QTL中风同系品系接受JD检测4周,以检测脑UCP2基因/蛋白质的调节。还分析了大脑的NF-κB蛋白表达,氧化应激水平和UCP2靶向的microRNA表达水平。接下来,基于非诺贝特和甘蓝(BO)通过PPARα激活刺激UCP2表达的知识,我们监测了接受JD加非诺贝特相对于赋形剂,JD加BO汁相对于BO汁对PPARα抑制剂的SHRSP中卒中的发生。 JD在SHRSP和(SHRsr.SHRsp-(D1Rat134-Mt1pa))同基因系中显着降低了脑UCP2表达,而NF-κB表达和氧化应激水平却升高。在SHRSR和(SHRsp.SHRsr-(D1Rat134-Mt1pa))互惠同系品系中观察到相反的现象。有趣的是,JD后,UCR2靶向的rno-microRNA-503在SHRSP中显着上调,在SHRSR中下降,并且在两个互易同系中发生一致变化。非诺贝特和BO均可显着降低脑microRNA-503水平,上调UCP2表达并保护SHRSP免受中风的影响。 microRNA-503在内皮细胞中的体外过表达抑制了UCP2的表达,并导致细胞死亡率显着增加,而细胞活力却下降。在高盐喂养的SHRSP中,大脑UCP2下调是中风易感性增加的决定因素。在这种情况下,UCP2可以通过药理和营养保健药物进行调节。 microRNA-503在介导JD喂养的SHRSP中显着有助于介导大脑UCP2下调。

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