首页> 外文OA文献 >Oxidative inhibition of Hsp90 disrupts the super-chaperone\ud complex and attenuates pancreatic adenocarcinoma in vitro\ud and in vivo
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Oxidative inhibition of Hsp90 disrupts the super-chaperone\ud complex and attenuates pancreatic adenocarcinoma in vitro\ud and in vivo

机译:Hsp90的氧化抑制破坏了超伴侣 复杂并减轻胰腺腺癌的体外作用 和体内

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摘要

Pancreatic cancer is almost always fatal, in part because of its delayed diagnosis, poor prognosis, rapid progression and chemoresistance. Oncogenic proteins are stabilized by the Hsp90, making it a potential therapeutic target. We investigated the oxidative stress-mediated dysfunction of Hsp90 and the hindrance of its chaperonic activity by a carbazole alkaloid,mahanine, as a strategic therapeutic in pancreatic cancer. Mahanine exhibited antiproliferative activity against several pancreatic cancer cell lines through apoptosis. It induced early accumulation of reactive oxygen species (ROS) leading to thiol oxidation, aggregation and dysfunction of Hsp90 in MIAPaCa-2. N-acetyl-L-cysteine prevented mahanine-induced ROS\udaccumulation, aggregation of Hsp90, degradation of client proteins and cell death. Mahanine disrupted Hsp90-Cdc37 complex in MIAPaCa-2 as a consequence of ROS generation. Client proteins were restored by MG132, suggesting a possible role of ubiquitinylated protein degradation pathway. Surface plasmon resonance study demonstrated that the rate of interaction of mahanine with recombinant Hsp90 is in the range of seconds. Molecular dynamics simulation showed its weak interactions\udwith Hsp90. However, no disruption of the Hsp90-Cdc37 complex was observed at an early time point, thus ruling out that mahanine directly disrupts the complex. It did not impede the ATP binding pocket of Hsp90. Mahanine also reduced in vitro migration and tube formation in cancer cells. Further, it inhibited orthotopic pancreatic tumor growth in nude mice. Taken together, these results provide evidence for mahanine-induced ROS-mediated destabilization of Hsp90 chaperone activity resulting in Hsp90-Cdc37 disruption leading to apoptosis, suggesting its potential as a specific target in pancreatic cancer\ud\ud\ud\ud.\ud\ud\ud\ud\ud\ud\ud\ud
机译:胰腺癌几乎总是致命的,部分原因是它的诊断延迟,预后差,进展迅速和化学耐药性。 Hsp90可稳定致癌蛋白,使其成为潜在的治疗靶标。我们调查了氧化应激介导的Hsp90的功能障碍和咔唑生物碱,大黄嘌呤,作为胰腺癌的战略治疗对其伴侣活动的阻碍。甲基嘌呤通过细胞凋亡对几种胰腺癌细胞系表现出抗增殖活性。它诱导了活性氧(ROS)的早期积累,导致MIAPaCa-2中Hsp90的硫醇氧化,聚集和功能障碍。 N-乙酰基-L-半胱氨酸可防止由机器感引起的ROS累积,Hsp90聚集,客体蛋白降解和细胞死亡。由于ROS的产生,Mahanine破坏了MIAPaCa-2中的Hsp90-Cdc37复合物。客户蛋白被MG132恢复,表明泛素化蛋白降解途径可能具有作用。表面等离振子共振研究表明,花菁与重组Hsp90的相互作用速率在几秒钟的范围内。分子动力学模拟显示其与Hsp90的相互作用较弱。然而,在早期时间点未观察到对Hsp90-Cdc37复合物的破坏,因此排除了花菁直接破坏了该复合物。它不妨碍Hsp90的ATP结合口袋。机器还减少了癌细胞中的体外迁移和管形成。此外,它抑制裸鼠中原位胰腺肿瘤的生长。两者合计,这些结果提供了证据,证明由甘氨酸诱导的ROS介导的Hsp90伴侣活性的不稳定导致Hsp90-Cdc37破坏,导致细胞凋亡,表明其作为胰腺癌特定靶标的潜力\ ud \ ud \ ud \ ud。\ ud \ ud \ ud \ ud \ ud \ ud \ ud \ ud

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