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首页> 外文期刊>RSC Advances >Effects of dietary oxidized tyrosine products on insulin secretion via the thyroid hormone T3-regulated TR beta 1-Akt-mTOR pathway in the pancreas
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Effects of dietary oxidized tyrosine products on insulin secretion via the thyroid hormone T3-regulated TR beta 1-Akt-mTOR pathway in the pancreas

机译:膳食氧化酪氨酸产物对胰腺甲状腺激素T3调节TRβ1-AKT-MTOR途径胰岛素分泌的影响

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摘要

Oxidized tyrosine products (OTPs) have been detected in commercial foods with high protein content. Dityrosine (Dityr) is a typical oxidized tyrosine product. The previous studies in our lab demonstrated that dityrosine administration impaired glucose tolerance and suppressed the bio-function of thyroid hormone T3 of mice. The T3-activated Akt-mTOR signaling pathway plays important roles in insulin synthesis in pancreatic beta cells. Due to the structural homology between dityrosine and T3, the molecular binding domain for these two compounds in TR beta 1 might be the same site. Therefore, the present study investigates the potential impact of dietary OTPs on the pancreatic function. Sprague Dawley (SD) rats were fed a diet containing OTPs for 12 weeks. In addition, a 10 week gavage experiment using C57BL/J mice was performed to explore whether dityrosine was responsible for the injury induced by OTPs. The blood glucose, plasma insulin levels, and plasma free thyroid hormones (THs) were then measured. After 12 week dietary OTPs or 10 week OTPs/dityrosine gavage, elevated fasting blood glucose and decreased plasma insulin levels were detected both in rats and mice in the presence of enhanced plasma free THs content, which indicated dysfunction of the pancreatic islets and that the regulation of T3 to insulin synthesis was suppressed by OTPs and dityrosine. A cell experiment using mouse MIN-6 cells was performed to explore the mechanism of the diminished T3 bio-function in pancreatic islets induced by dityrosine. Dityrosine incubation attenuated the T3-mediated insulin synthesis via an indirect way of regulating the mRNA expression of genes related to insulin synthesis and decreasing the protein level of TR beta 1. In addition, dityrosine inhibited the Akt phosphorylation activated by T3 in MIN-6 cells. Dityrosine treatment altered the T3-activated translation factors involved in the Akt-mTOR signaling pathway. These findings indicate that decreased insulin secretion triggered by dietary OTPs may be mediated by suggested T3-stimulated protein synthesis in pancreatic beta cells.
机译:在具有高蛋白质含量的商业食品中检测到氧化酪氨酸产物(OTPS)。 Dityrosine(Dityr)是典型的氧化酪氨酸产物。我们实验室的先前研究证明,敏粒管给药受损葡萄糖耐量和抑制小鼠甲状腺激素T3的生物功能。 T3激活的AKT-MTOR信号通路在胰腺β细胞中起着重要作用在胰岛素合成中起重要作用。由于Dityrosine和T3之间的结构性同源性,TRβ1中这两个化合物的分子结合结构域可能是相同的部位。因此,本研究研究了膳食OTPS对胰腺功能的潜在影响。 Sprague Dawley(SD)大鼠喂养含有OTPS的饮食12周。此外,还进行了使用C57BL / J小鼠的10周的饲养实验,探讨Dityrosine是否对OTPS诱导的损伤负责。然后测量血糖,血浆胰岛素水平和等离子体游离甲状腺激素(THS)。 12周后膳食OTPS或10周OTPS / Dityrosine Gavage,在增强的血浆免费THS含量存在下,在大鼠和小鼠中检测到升高的空腹血糖和降低的血浆胰岛素水平,这表明了胰岛的功能障碍和调节OTPS和Dityrosine抑制了T3至胰岛素合成。进行使用小鼠MIN-6细胞的细胞实验以探讨Dityrosine诱导的胰岛胰岛中的降低T3生物功能的机制。双核苷酸孵育通过调节与胰岛素合成相关的基因的mRNA表达和降低TRβ1的蛋白质水平的间接方法衰减T3介导的胰岛素合成。此外,Dityrosine在Min-6细胞中抑制T3活化的Akt磷酸化。 Dityrosine治疗改变了AKT-MTOR信号通路中涉及的T3激活的翻译因子。这些发现表明,通过在胰腺β细胞中的建议的T3刺激的蛋白质合成,可以通过在胰腺β细胞中的建议的T3刺激的蛋白质合成介导减少膳食OTPS触发的降低。

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  • 来源
    《RSC Advances 》 |2017年第86期| 共16页
  • 作者单位

    Jiangnan Univ Sch Food Sci &

    Technol State Key Lab Food Sci &

    Technol Lihu Ave 1800 Wuxi 214122 Peoples R China;

    Jiangnan Univ Sch Food Sci &

    Technol State Key Lab Food Sci &

    Technol Lihu Ave 1800 Wuxi 214122 Peoples R China;

    Jiangnan Univ Sch Food Sci &

    Technol State Key Lab Food Sci &

    Technol Lihu Ave 1800 Wuxi 214122 Peoples R China;

    Jiangnan Univ Sch Food Sci &

    Technol State Key Lab Food Sci &

    Technol Lihu Ave 1800 Wuxi 214122 Peoples R China;

    Jiangnan Univ Sch Food Sci &

    Technol State Key Lab Food Sci &

    Technol Lihu Ave 1800 Wuxi 214122 Peoples R China;

    Jiangnan Univ Sch Food Sci &

    Technol State Key Lab Food Sci &

    Technol Lihu Ave 1800 Wuxi 214122 Peoples R China;

    Jiangnan Univ Sch Food Sci &

    Technol State Key Lab Food Sci &

    Technol Lihu Ave 1800 Wuxi 214122 Peoples R China;

    Jiangnan Univ Sch Food Sci &

    Technol State Key Lab Food Sci &

    Technol Lihu Ave 1800 Wuxi 214122 Peoples R China;

    Jiangnan Univ Sch Food Sci &

    Technol State Key Lab Food Sci &

    Technol Lihu Ave 1800 Wuxi 214122 Peoples R China;

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  • 正文语种 eng
  • 中图分类 化学 ;
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