Department of Medicine, Qinghai University, Xining, China.
Department of Ecology, Qinghai University Plateau Biology Jing Ying Class, Grade 19, Xining, China.
High Alt Med Biol. 2023 Mar;24(1):49-58. doi: 10.1089/ham.2022.0003. Epub 2023 Jan 27.
Xu, Jin, Shenhan Gao, Mingyuan Xin, Wenjie Chen, Kaikun Wang, Wenjing Liu, Xinzong Yan, Sinan Peng, and Yanming Ren. Comparative tandem mass tag-based quantitative proteomics analysis of liver against chronic hypoxia: molecular insights into metabolism in rats. . 24:49-58, 2023. Using a metabolomic approach, we uncovered key regulators in metabolism from tandem mass tag (TMT)-based proteomic analysis in animals chronically exposed to hypoxia. Sixteen Sprague-Dawley rats ( = 8 per group) were exposed to chronic normoxia or hypoxia (380 mmHg corresponding to a simulated altitude of 5,500 m) for 35 consecutive days. Hypoxia-induced alterations in metabolic pathways were analyzed from TMT-based proteomic analysis, complemented by western blot validation of key regulators. We profiled biochemical parameters and serum lipids, found that serum alanine aminotransferase and blood glucose were not significantly changed due to chronic hypoxia. However, serum triglycerides, total cholesterol, high-density lipoprotein, and low-density lipoprotein (LDL) were significantly affected by chronic hypoxia. And the levels of LDL nearly doubled ( < 0.05) after hypoxia exposure for 35 days. Through Kyoto Encyclopedia of Genes and Genomes classification, we found several metabolic pathways were enriched, including lipid metabolism, cofactor and vitamin metabolism, amino acids metabolism, carbohydrate metabolism, and energy metabolism. To explore the potential functions of proteins in metabolic pathways that become a coordinated shift under chronic hypoxic conditions, Gene Ontology and pathway analysis were carried out on differentially expressed proteins. As the co-expression network shown in Figure, we identified the most significant differentially expressed proteins after chronic hypoxic changes in the livers of rats. Furthermore, we validated the gene expression profiles at the protein level using western blot. Results of western blot were in accordance with our quantitative polymerase chain reaction findings. The levels of fatty acid synthase and aquaporin 1 were significantly downregulated after 35 days and the levels of ATP citrate lyase, 2'-5'-oligoadenylate synthetase 1A, aldehyde dehydrogenase 2, and Ras-related protein Rap-1A were significantly upregulated after 35 days. Although this study cannot completely account for all the molecular mechanisms in rats, we provide a good analysis of protein expression and profiling of rats under chronic hypoxia conditions.
许进、沈涵高、明远辛、陈文杰、王开坤、刘文静、闫新宗、彭思楠和任艳明。基于串联质量标签的慢性低氧大鼠肝脏定量蛋白质组学比较分析:代谢分子见解。. 24:49-58, 2023. 使用代谢组学方法,我们从慢性低氧暴露动物的串联质量标签 (TMT)-基于蛋白质组学分析中发现了代谢关键调节剂。 16 只 Sprague-Dawley 大鼠(每组 8 只)连续 35 天暴露于慢性常氧或低氧(380 mmHg 对应模拟海拔 5500 m)。通过 TMT 基于蛋白质组学分析分析缺氧诱导的代谢途径变化,并通过 Western blot 验证关键调节剂进行补充。 我们分析了生化参数和血清脂质,发现由于慢性低氧,血清丙氨酸氨基转移酶和血糖没有明显变化。然而,血清甘油三酯、总胆固醇、高密度脂蛋白和低密度脂蛋白(LDL)受到慢性低氧的显著影响。并且在低氧暴露 35 天后,LDL 水平几乎翻了一番(<0.05)。通过京都基因与基因组百科全书分类,我们发现了几种代谢途径被富集,包括脂质代谢、辅因子和维生素代谢、氨基酸代谢、碳水化合物代谢和能量代谢。为了探索在慢性低氧条件下协调变化的代谢途径中蛋白质的潜在功能,我们对差异表达蛋白进行了基因本体论和途径分析。如图所示的共表达网络,我们确定了慢性低氧改变后大鼠肝脏中差异表达最显著的蛋白质。此外,我们使用 Western blot 在蛋白质水平上验证了基因表达谱。Western blot 的结果与我们的定量聚合酶链反应结果一致。脂肪酸合酶和水通道蛋白 1 的水平在 35 天后明显下调,而三磷酸柠檬酸裂解酶、2'-5'-寡聚腺苷酸合成酶 1A、醛脱氢酶 2 和 Ras 相关蛋白 Rap-1A 的水平在 35 天后明显上调。 尽管这项研究不能完全解释大鼠的所有分子机制,但我们为慢性低氧条件下大鼠的蛋白质表达和分析提供了很好的分析。