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Naphthoquinone Derivative PPE8 Induces Endoplasmic Reticulum Stress in p53 Null H1299 Cells

机译:萘醌衍生物PPE8诱导p53空H1299细胞内质网应激。

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Endoplasmic reticulum (ER) plays a key role in synthesizing secretory proteins and sensing signal function in eukaryotic cells. Responding to calcium disturbance, oxidation state change, or pharmacological agents, ER transmembrane protein, inositol-regulating enzyme 1 (IRE1), senses the stress and triggers downstream signals. Glucose-regulated protein 78 (GRP78) dissociates from IRE1 to assist protein folding and guard against cell death. In prolonged ER stress, IRE1 recruits and activates apoptosis signal-regulating kinase 1 (ASK1) as well as downstream JNK for cell death. Naphthoquinones are widespread natural phenolic compounds. Vitamin K3, a derivative of naphthoquinone, inhibits variant tumor cell growth via oxygen uptake and oxygen stress. We synthesized a novel naphthoquinone derivative PPE8 and evaluated capacity to induce ER stress in p53 null H1299 and p53 wild-type A549 cells. In H1299 cells, PPE8 induced ER enlargement, GRP78 expression, and transient IER1 activation. Activated IRE1 recruited ASK1 for downstream JNK phosphorylation. IRE1 knockdown by siRNA attenuated PPE8-induced JNK phosphorylation and cytotoxicity. Prolonged JNK phosphorylation may be involved in PPE8-induced cytotoxicity. Such results did not arise in A549 cells, but p53 knockdown by siRNA restored PPE8-induced GRP78 expression and JNK phosphorylation. We offer a novel compound to induce ER stress and cytotoxicity in p53-deficient cancer cells, presenting an opportunity for treatment.
机译:内质网(ER)在真核细胞中合成分泌蛋白和感知信号功能中起着关键作用。响应钙离子紊乱,氧化状态改变或药理作用,ER跨膜蛋白,肌醇调节酶1(IRE1)可以感应压力并触发下游信号。葡萄糖调节蛋白78(GRP78)从IRE1上解离,协助蛋白折叠并防止细胞死亡。在长时间的ER应激中,IRE1募集并激活凋亡信号调节激酶1(ASK1)以及下游JNK来杀死细胞。萘醌是广泛的天然酚类化合物。维生素K3是萘醌的衍生物,可通过氧气吸收和氧气胁迫抑制肿瘤细胞的生长。我们合成了新型萘醌衍生物PPE8,并评估了在p53无效H1299和p53野生型A549细胞中诱导ER应激的能力。在H1299细胞中,PPE8诱导ER增大,GRP78表达和瞬时IER1激活。激活的IRE1募集了ASK1用于下游JNK磷酸化。 siRNA对IRE1的抑制作用减弱了PPE8诱导的JNK磷酸化和细胞毒性。延长的JNK磷酸化可能与PPE8诱导的细胞毒性有关。这样的结果在A549细胞中没有出现,但是siRNA的p53敲低恢复了PPE8诱导的GRP78表达和JNK磷酸化。我们提供了一种新型化合物,可在p53缺陷型癌细胞中诱导ER应激和细胞毒性,为治疗提供了机会。

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