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Paradoxical effect of diphenyleneiodonium in inducing DNA damage and apoptosis.

机译:联苯二碘鎓在诱导DNA损伤和凋亡中的悖论作用。

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Diphenyleneiodonium (DPI) is often used as a molecular tool in unravelling redox-sensitive cellular events involving NADPH oxidase. However, to better understand unexpected actions of DPI, it was ascertained if DPI affects cellular DNA. DPI induced single-strand breaks in DNA of HCT-116 cells, although this only slightly increased GADD153 expression. Nevertheless, after sustaining DNA damage, the DPI-treated cells subsequently had features characteristic of apoptosis, such as translocated membrane phospholipid and nuclei containing condensed chromatin. Paradoxically, DPI attenuated the DNA damage and overall ROS production caused by sodium deoxycholate (DOC), although DPI did not inhibit DOC-induced generation of mitochondrial [image omitted] . Furthermore, DPI prevented the occurrence of apoptosis caused by DOC. However, other known chemical inhibitors of NADPH oxidase did not produce the same results as DPI in negating the effects of DOC. Collectively, these disparate findings suggest that DPI can act not in accord with conventional wisdom depending on the experimental conditions.
机译:联苯二碘铵(DPI)通常用作揭开涉及NADPH氧化酶的氧化还原敏感细胞事件的分子工具。但是,为了更好地理解DPI的意外作用,已确定DPI是否影响细胞DNA。 DPI诱导HCT-116细胞DNA的单链断裂,尽管这仅略微增加了GADD153的表达。然而,在遭受DNA损伤后,经DPI处理的细胞随后具有凋亡特征,例如易位的膜磷脂和含有浓缩染色质的细胞核。矛盾的是,尽管DPI不​​会抑制DOC诱导的线粒体生成,但DPI​​减弱了由脱氧胆酸钠(DOC)引起的DNA损伤和总体ROS产生。此外,DPI防止了由DOC引起的细胞凋亡的发生。但是,其他已知的NADPH氧化酶化学抑制剂在抵消DOC的作用方面未产生与DPI相同的结果。总的来说,这些不同的发现表明,根据实验条件,DPI的行为可能与传统观点不符。

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