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Metabolomics and Lipidomics Reveal the Effect of Hepatic Vps33b Deficiency on Bile Acids and Lipids Metabolism

机译:代谢组学和脂质组学揭示了肝Vps33b缺乏对胆汁酸和脂质代谢的影响

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摘要

Vascular protein sorting-associated protein 33B (VPS33B) plays important roles in hepatic polarity, which directly maintains the functional structure of the liver. It has reported that VPS33B has close association with arthrogryposis, renal dysfunction and cholestasis (ARC) syndrome. Unfortunately, no further studies were conducted to reveal the role of Vps33b in the homeostasis of bile acids. In the current study, hepatic Vps33b-depleted male mice were used to investigate the metabolomics and lipidomics profiles of hepatic Vps33b deficiency based on ultrahigh-performance liquid chromatography coupled with an electrospray ionization high-resolution mass spectrometry (UHPLC-ESI-HRMS) system. Hepatic Vps33b-depleted male mice displayed cholestasis and slight liver damage with increased serum levels of ALT, AST, ALP and T-Bili compared to wild-type mice. Targeted metabolomics analysis of bile acids revealed that increased taurine-conjugated bile acids accumulated in the serum of hepatic Vps33b-depleted mice, while unconjugated bile acids were prone to decrease, accompanied by the regulation of bile acid homeostasis-related genes. In addition, lipid profiles were significantly altered with the lack of Vps33b in the liver. A variety of lipids, such as triglycerides and sphingomyelins, were significantly decreased in the liver and increased in the serum of hepatic Vps33b-depleted mice compared to those in wild-type mice. Our study demonstrated that Vps33b influences the progress of liver metabolism both in bile acid circulation and lipid metabolism, which is involved in the progression of liver cholestasis in mice.
机译:血管蛋白分选相关蛋白33B(VPS33B)在肝极性中起重要作用,它直接维持肝脏的功能结构。据报道,VPS33B与关节炎,肾功能不全和胆汁淤积(ARC)综合征密切相关。不幸的是,没有进行进一步的研究来揭示Vps33b在胆汁酸稳态中的作用。在当前研究中,基于超高效液相色谱结合电喷雾电离高分辨率质谱(UHPLC-ESI-HRMS)系统,使用贫肝Vps33b的雄性小鼠研究肝Vps33b缺乏的代谢组学和脂质组学概况。与野生型小鼠相比,肝Vps33b耗竭的雄性小鼠表现出胆汁淤积和轻微的肝损伤,血清ALT,AST,ALP和T-Bili水平升高。胆汁酸的目标代谢组学分析显示,在牛肝Vps33b耗尽的小鼠血清中积累的牛磺酸-胆汁-胆汁酸增加,而未结合的胆汁酸则倾向于减少,并伴有胆汁酸稳态相关基因的调节。此外,由于肝脏中缺乏Vps33b,血脂水平显着改变。与野生型小鼠相比,肝Vps33b耗竭小鼠肝脏中的各种脂质(如甘油三酸酯和鞘磷脂)显着降低,而血清中升高。我们的研究表明,Vps33b影响胆汁酸循环和脂质代谢中肝脏代谢的进展,这与小鼠肝胆汁淤积的进展有关。

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