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iTRAQ-Based Proteomics to Reveal the Mechanism of Hypothalamus in Kidney-Yin Deficiency Rats Induced by Levothyroxine

机译:基于iTRAQ的蛋白质组学揭示左甲状腺素诱发肾阴虚证大鼠下丘脑的机制

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摘要

Kidney-yin deficiency syndrome (KYDS) is a typical syndrome encountered in traditional Chinese medicine (TCM) and is characterized by impaired lipid and glucose homeostasis. The hypothalamus acts as an important regulatory organ by controlling lipid and glucose metabolism in the body. Therefore, proteins in the hypothalamus could play important roles in KYDS development; however, the mechanisms responsible for KYDS remain unclear. Herein, iTRAQ-based proteomics was performed to analyze the protein expression in the hypothalamus of KYDS rats induced by levothyroxine (L-T4). Results revealed a total of 44 downregulated and 18 upregulated proteins in KYDS group relative to the control group. Gene Ontology (GO) analysis revealed that the differently expressed proteins (DEPs) were related to single-organism metabolism process under the biological process (BP), extracellular region part and organelle under the cellular component (CC), and oxidoreductase activity under the molecular function (MF). Kyoto Encyclopedia of Gene and Genomes (KEGG) analysis showed that fatty acid degradation and pyruvate metabolism participated in the metabolism regulation in KYDS rats. RT-PCR validation of five distinctly expressed proteins related to the two pathways was consistent with the results of proteomics analysis. Taken together, the inhibition of fatty acid degradation and pyruvate metabolism in hypothalamus could potentially cause the dysfunction of the lipid and glucose metabolism in KYDS rats. This current study identified some novel potential biomarkers of KYDS and provided the basis for further research of KYDS.
机译:肾阴虚综合症(KYDS)是中医(TCM)遇到的典型综合症,其特征是脂质和葡萄糖体内稳态受损。下丘脑通过控制体内的脂质和葡萄糖代谢,充当重要的调节器官。因此,下丘脑中的蛋白质可能在KYDS发育中起重要作用。但是,负责KYDS的机制仍不清楚。本文中,基于iTRAQ的蛋白质组学被用来分析左甲状腺素(L-T4)诱导的KYDS大鼠下丘脑中的蛋白质表达。结果显示,与对照组相比,KYDS组中共有44个下调蛋白和18个上调蛋白。基因本体论(GO)分析显示,差异表达的蛋白质(DEP)与生物过程(BP)下的单生物代谢过程,细胞成分(CC)下的细胞外区域部分和细胞器以及分子下的氧化还原酶活性有关。功能(MF)。京都基因与基因组百科全书(KEGG)分析表明,脂肪酸降解和丙酮酸代谢参与了KYDS大鼠的代谢调节。两种途径相关的5种不同表达的蛋白质的RT-PCR验证与蛋白质组学分析的结果一致。综上所述,下丘脑中脂肪酸降解和丙酮酸代谢的抑制作用可能会引起KYDS大鼠脂质和葡萄糖代谢功能障碍。这项当前的研究确定了一些新的潜在的KYDS生物标志物,并为进一步研究KYDS提供了基础。

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