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Palmitoyl-ceramide accumulation with necrotic cell death in A549 cells followed by a steep increase in sphinganine content

机译:棕榈酰神经酰胺蓄积A549细胞中坏死性细胞死亡随后鞘氨醇含量急剧增加

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摘要

Ceramides (Cers) have recently been identified as key signaling molecules that mediate biological functions such as cell growth, differentiation, senescence, apoptosis, and autophagy. However, the functions of Cer accumulation in necrotic cell death remain unknown. The aim of this study was to clarify the relationship between Cer accumulation with inhibition of the conversion pathway of Cer and concomitant necrotic cell death. In order to minimize the effect of apoptosis against necrotic cell death, A549 cells having the inhibiting effect of caspase 9 by survivin were used in this study. Consequently, Cer accumulation in A549 cells would likely be associated with a pathway other than the mitochondrial caspase-dependent pathway of apoptosis. Here, we showed that the dual addition of a glucosyl-Cer synthase inhibitor and a ceramidase inhibitor to A549 cell culture induced palmitoyl-Cer accumulation with Cer synthase 5 expression and necrotic cell death with lysosomal rupture together with leakage of cathepsin B/alkalization after 2–3 h, although it is unknown in this study whether the necrotic cell death was caused by the lysosomal rupture. This Cer accumulation was followed by a steep increase in sphinganine base levels via the activation of serine palmitoyltransferase activity brought about by the increase in palmitoyl-coenzyme A concentration as a substrate after 5–6 h. The increase in palmitoyl-coenzyme A concentration was achieved by activation of the fatty acid synthetic pathway from acetyl coenzyme A.
机译:神经酰胺(Cers)最近被确定为介导诸如细胞生长,分化,衰老,凋亡,自噬等生物学功能的关键信号分子。但是,Cer积累在坏死细胞死亡中的功能仍然未知。这项研究的目的是澄清Cer积累与抑制Cer转化途径和伴随的坏死细胞死亡之间的关系。为了使凋亡对坏死细胞死亡的影响最小化,在本研究中使用了具有survivin抑制胱天蛋白酶9作用的A549细胞。因此,Cer在A549细胞中的蓄积可能与线粒体半胱天冬酶依赖性细胞凋亡途径不同。在这里,我们表明,向A549细胞培养物中同时添加葡糖基-Cer合酶抑制剂和神经酰胺酶抑制剂可诱导棕榈酰-Cer积聚,并表达Cer合酶5,坏死性细胞死亡并伴随溶酶体破裂以及组织蛋白酶B /碱化2 –3小时,尽管在这项研究中尚不清楚坏死细胞的死亡是否是由溶酶体破裂引起的。在这种Cer积累之后,通过激活5-6小时后作为基质的棕榈酰辅酶A浓度增加,丝氨酸棕榈酰转移酶活性被激活,从而使狮身残基碱水平急剧增加。棕榈酰辅酶A浓度的增加是通过激活乙酰辅酶A的脂肪酸合成途径来实现的。

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