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首页> 外文期刊>BioMetals: An International Journal on the Role of Metal Ions in Biology, Biochemistry and Medicine >Dietary selenium regulation of transcript abundance of selenoprotein N and selenoprotein W in chicken muscle tissues
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Dietary selenium regulation of transcript abundance of selenoprotein N and selenoprotein W in chicken muscle tissues

机译:日粮硒调节鸡肌肉组织中硒蛋白N和硒蛋白W的转录本丰度

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摘要

Selenium (Se), selenoprotein N (SelN) and selenoprotein W (SelW) play a crucial role in muscle disorders. Se status highly regulates selenoprotein mRNA levels. However, few attempts have been performed on the effect of dietary Se supplementation on muscle SelN and SelW mRNA levels in birds. To investigate the effects of Se on the regulation of SelN and SelW mRNA levels in muscle tissues, one-day-old male chickens were fed either a commercial diet or a Se-supplemented diet containing 1.0, 2.0, 3.0 or 5.0 mg/kg sodium selenite for 90 days. Muscle tissues (breast, flight, thigh, shank and cardiac muscles) were collected and examined for Se content and mRNA levels of SelN and SelW. Moreover, Selenophosphate synthetase-1 (SPS-1) and selenocysteine-synthase (SecS) mRNA levels were analyzed. Significant increases in SelN mRNA levels were obtained in breast, thigh and shank muscles treated with Se, with maximal effects at 3.0 mg Se/kg diet, but 2.0 mg Se/kg diet resulted in peak levels of Sel N mRNA in flight muscles. Changes in SelW mRNA abundance in thigh and shank muscles increased in response to Se supply. After reaching a maximal level, higher Se supplementation led to a reduction in both SelN and SelW mRNAs. However, SelN and SelW mRNA levels displayed a different expression pattern in different skeletal and cardiac muscles. Thus, it suggested that skeletal and cardiac muscles SelN and SelW mRNA levels were highly regulated by Se supplementation and different muscle tissues showed differential sensitivity. Moreover, Se supplementation also regulated the levels of SPS1 and SecS mRNAs. The mRNA levels of SPS1 and SecS were enhanced in the Se supplemented groups. These data indicate that Se regulates the expression of SelN and SelW gene and affect the mRNA levels of SecS and SPS1.
机译:硒(Se),硒蛋白N(SelN)和硒蛋白W(SelW)在肌肉疾病中起关键作用。硒的状态高度调节硒蛋白mRNA水平。但是,几乎没有尝试过饮食中硒的添加对鸟类肌肉SelN和SelW mRNA水平的影响。为了研究硒对肌肉组织中SelN和SelW mRNA水平的调节作用,对一日龄的雄性鸡饲喂商业饮食或补充含1.0、2.0、3.0或5.0 mg / kg钠的硒饮食亚硒酸盐90天。收集肌肉组织(乳房,飞行,大腿,小腿和心肌),并检查硒含量以及SelN和SelW的mRNA水平。此外,分析了硒代磷酸合成酶-1(SPS-1)和硒代半胱氨酸合成酶(SecS)mRNA的水平。用硒处理的乳房,大腿和小腿肌肉的SelN mRNA水平显着增加,在3.0 mg Se / kg饮食下效果最大,但2.0 mg Se / kg饮食导致飞行肌肉中Sel N mRNA达到峰值。大腿和小腿肌肉中SelW mRNA丰度的变化响应硒的供应而增加。在达到最高水平后,较高的硒补充量导致SelN和SelW mRNA均减少。但是,SelN和SelW mRNA水平在不同的骨骼肌和心肌中显示出不同的表达模式。因此,这表明骨骼和心肌SelN和SelW mRNA的水平受到硒补充的高度调节,不同的肌肉组织显示出不同的敏感性。此外,补充硒还调节SPS1和SecS mRNA的水平。补充硒的组中SPS1和SecS的mRNA水平增加。这些数据表明Se调节SelN和SelW基因的表达,并影响SecS和SPS1的mRNA水平。

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