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首页> 外文期刊>Cell death & disease. >Altering the sphingolipid acyl chain composition prevents LPS/GLN-mediated hepatic failure in mice by disrupting TNFR1 internalization
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Altering the sphingolipid acyl chain composition prevents LPS/GLN-mediated hepatic failure in mice by disrupting TNFR1 internalization

机译:改变鞘脂酰基链组成可通过破坏TNFR1内在作用来防止LPS / GLN介导的小鼠肝衰竭

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The involvement of ceramide in death receptor-mediated apoptosis has been widely examined with most studies focusing on the role of ceramide generated from sphingomyelin hydrolysis. We now analyze the effect of the ceramide acyl chain length by studying tumor necrosis factor α receptor-1 (TNFR1)-mediated apoptosis in a ceramide synthase 2 (CerS2) null mouse, which cannot synthesize very-long acyl chain ceramides. CerS2 null mice were resistant to lipopolysaccharide/galactosamine-mediated fulminant hepatic failure even though TNF α secretion from macrophages was unaffected. Cultured hepatocytes were also insensitive to TNF α -mediated apoptosis. In addition, in both liver and in hepatocytes, caspase activities were not elevated, consistent with inhibition of TNFR1 pro-apoptotic signaling. In contrast, Fas receptor activation resulted in the death of CerS2 null mice. Caspase activation was blocked because of the inability of CerS2 null mice to internalize the TNFR1; whereas Fc-TNF α was internalized to a perinuclear region in hepatocytes from wild-type mice, no internalization was detected in CerS2 null mice. Our results indicate that altering the acyl chain composition of sphingolipids inhibits TNFR1 internalization and inhibits selective pro-apoptotic downstream signaling for apoptosis.
机译:已广泛检查了神经酰胺在死亡受体介导的细胞凋亡中的参与,大多数研究集中于鞘磷脂水解产生的神经酰胺的作用。我们现在通过研究神经酰胺合酶2(CerS2)空小鼠中的肿瘤坏死因子α受体1(TNFR1)介导的细胞凋亡来分析神经酰胺酰基链长度的影响,该小鼠无法合成很长的酰基链神经酰胺。 CerS2无效的小鼠对脂多糖/半乳糖胺介导的暴发性肝衰竭具有抵抗力,即使巨噬细胞的TNFα分泌不受影响。培养的肝细胞对TNFα介导的凋亡也不敏感。另外,在肝脏和肝细胞中,胱天蛋白酶活性均未升高,与对TNFR1促凋亡信号的抑制一致。相反,Fas受体激活导致CerS2无效小鼠死亡。由于CerS2无效小鼠无法内化TNFR1,因此Caspase激活被阻断。而Fc-TNFα被内化至野生型小鼠肝细胞的核周区域,而在CerS2缺失小鼠中未检测到内化。我们的结果表明,改变鞘脂的酰基链组成可抑制TNFR1内在化并抑制细胞凋亡的选择性促凋亡下游信号传导。

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