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首页> 外文期刊>International immunopharmacology >Arsenic trioxide induces endoplasmic reticulum stress-related events in neutrophils.
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Arsenic trioxide induces endoplasmic reticulum stress-related events in neutrophils.

机译:三氧化二砷诱导中性粒细胞内质网应激相关事件。

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We recently reported that the endoplasmic reticulum (ER)-induced cell pathway of apoptosis is operational in human neutrophils and that some ER stressors can accelerate this process. Recent data suggest that arsenic trioxide (As(2)O(3) or ATO), may also act as an ER stressor. The aims of the present study were to elucidate if other ER stress-related events occur in ATO-induced neutrophils, and to determine the role of caspase-4 in the proapoptotic activity of ATO. We found that ATO induced ubiquitination of proteins, and increased calcium concentration and gene expression of calcineurin in neutrophils. In addition to caspase-4, activities of caspase-3, -8 and -9 were increased by ATO. The processing of caspase-4 was reversed by a caspase-8 inhibitor, indicating that caspase-4 activation requires the action of upstream initiator components, questioning on the role of caspase-4 in ATO-induced ER stress-mediated cell apoptosis. Using caspase-4 deficient THP-1 cells, we demonstrated that the proapoptotic effect of ATO was similar to that of control caspase-4-positive cells. We conclude that ATO is an ER stressor that can induce cell apoptosis by a mechanism which does not require caspase-4. In addition, we conclude that caspase-4 activation in ATO-induced neutrophils could be involved in functions other than apoptosis.
机译:我们最近报道,内质网(ER)诱导的细胞凋亡的细胞途径在人类嗜中性粒细胞中起作用,并且一些ER应激源可以加速该过程。最新数据表明,三氧化二砷(As(2)O(3)或ATO)也可能充当ER应激源。本研究的目的是阐明在ATO诱导的中性粒细胞中是否发生其他与ER应激相关的事件,并确定caspase-4在ATO促凋亡活性中的作用。我们发现ATO诱导蛋白质的泛素化,并增加中性粒细胞钙调神经磷酸酶的钙浓度和基因表达。除caspase-4外,ATO还提高了caspase-3,-8和-9的活性。 caspase-8抑制剂逆转了caspase-4的加工过程,表明caspase-4激活需要上游启动子成分的作用,质疑caspase-4在ATO诱导的ER应激介导的细胞凋亡中的作用。使用caspase-4缺陷型THP-1细胞,我们证明了ATO的促凋亡作用与对照caspase-4阳性细胞相似。我们得出结论,ATO是一种ER应激源,可以通过不需要caspase-4的机制诱导细胞凋亡。此外,我们得出结论,在ATO诱导的中性粒细胞中caspase-4激活可能参与细胞凋亡以外的功能。

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