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Heme Oxygenase-1 May Affect Cell Signalling via Modulation of Ganglioside Composition

机译:血红素加氧酶-1可能通过调节神经节苷脂组成影响细胞信号转导。

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摘要

Heme oxygenase 1 (Hmox1), a ubiquitous enzyme degrading heme to carbon monoxide, iron, and biliverdin, is one of the cytoprotective enzymes induced in response to a variety of stimuli, including cellular oxidative stress. Gangliosides, sialic acid-containing glycosphingolipids expressed in all cells, are involved in cell recognition, signalling, and membrane stabilization. Their expression is often altered under many pathological and physiological conditions including cell death, proliferation, and differentiation. The aim of this study was to assess the possible role of Hmox1 in ganglioside metabolism in relation to oxidative stress. The content of liver and brain gangliosides, their cellular distribution, and mRNA as well as protein expression of key glycosyltransferases were determined in Hmox1 knockout mice as well as their wild-type littermates. To elucidate the possible underlying mechanisms between Hmox1 and ganglioside metabolism, hepatoblastoma HepG2 and neuroblastoma SH-SY5Y cell lines were used for in vitro experiments. Mice lacking Hmox1 exhibited a significant increase in concentrations of liver and brain gangliosides and in mRNA expression of the key enzymes of ganglioside metabolism. A marked shift of GM1 ganglioside from the subsinusoidal part of the intracellular compartment into sinusoidal membranes of hepatocytes was shown in Hmox1 knockout mice. Induction of oxidative stress by chenodeoxycholic acid in vitro resulted in a significant increase in GM3, GM2, and GD1a gangliosides in SH-SY5Y cells and GM3 and GM2 in the HepG2 cell line. These changes were abolished with administration of bilirubin, a potent antioxidant agent. These observations were closely related to oxidative stress-mediated changes in sialyltransferase expression regulated at least partially through the protein kinase C pathway. We conclude that oxidative stress is an important factor modulating synthesis and distribution of gangliosides in vivo and in vitro which might affect ganglioside signalling in higher organisms.
机译:血红素加氧酶1(Hmox1)是一种将血红素降解为一氧化碳,铁和胆绿素的普遍存在的酶,是对多种刺激(包括细胞氧化应激)的反应诱导的细胞保护酶之一。神经节苷脂是在所有细胞中表达的含唾液酸的糖鞘脂,参与细胞识别,信号传导和膜稳定。它们的表达经常在许多病理和生理条件下改变,包括细胞死亡,增殖和分化。这项研究的目的是评估Hmox1在神经节苷脂代谢中与氧化应激有关的可能作用。测定了Hmox1基因敲除小鼠及其野生型同窝仔中肝脏和大脑神经节苷脂的含量,它们的细胞分布,mRNA以及关键糖基转移酶的蛋白表达。为了阐明Hmox1和神经节苷脂代谢之间可能的潜在机制,肝母细胞瘤HepG2和神经母细胞瘤SH-SY5Y细胞系用于体外实验。缺乏Hmox1的小鼠肝脏和大脑神经节苷脂的浓度以及神经节苷脂代谢关键酶的mRNA表达均显着增加。在Hmox1基因敲除小鼠中显示出GM1神经节苷脂从细胞内区室的正弦下部分向肝细胞的正弦膜有明显的转移。鹅去氧胆酸体外诱导的氧化应激导致SH-SY5Y细胞中GM3,GM2和GD1a神经节苷脂显着增加,HepG2细胞系中的GM3和GM2显着增加。胆红素(一种有效的抗氧化剂)的使用消除了这些变化。这些观察与氧化应激介导的至少部分通过蛋白激酶C途径调节的唾液酸转移酶表达变化密切相关。我们得出结论,氧化应激是调节神经节苷脂在体内和体外的合成和分布的重要因素,它可能影响高等生物中神经节苷脂的信号传导。

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