Bin Liu, Zhiyuan Chen, Zhaoxing Li, Xinya Zhao, Weigang Zhang, Ao Zhang, Longxing Wen, Xiaoming Wang, Shuying Zhou, Daohai Qian
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引用次数: 0
摘要
化疗耐药性是胰腺癌(PC)患者预后不良的主要原因。最近的研究表明,铁蛋白沉积可改善化疗耐药性,但其潜在机制仍不清楚。本研究发现,在化疗耐药 PC 患者的外周血和组织样本中,热休克蛋白 90α(Hsp90α)表达明显上调。进一步的研究发现,Hsp90α通过抑制铁突变促进了化疗耐药胰腺细胞系(Panc-1-gem)的增殖、迁移和侵袭。Hsp90α 与 Kelch-like ECH-associated protein 1(Keap1)竞争性结合,将核因子红细胞 2 相关因子 2(Nrf2)从 Keap1 的封闭中释放出来。Nrf2 随后转位到细胞核中,激活谷胱甘肽过氧化物酶 4(GPX4)通路,从而抑制铁氧化。这一过程进一步加剧了 PC 细胞的化疗抗性。这项研究为克服PC化疗耐药性的潜在分子靶点提供了宝贵的见解。它揭示了Hsp90α和铁突变与PC化疗耐药性之间错综复杂的机制,为开发新型治疗策略提供了理论基础。
Hsp90α promotes chemoresistance in pancreatic cancer by regulating Keap1-Nrf2 axis and inhibiting ferroptosis.
Chemoresistance is the primary reason for poor prognosis in patients with pancreatic cancer (PC). Recent studies have indicated that ferroptosis may improve chemoresistance, but the underlying mechanisms remain unclear. In this study, significant upregulation of heat shock protein 90α (Hsp90α) expression is detected in the peripheral blood and tissue samples of patients with chemoresistant PC. Further studies reveal that Hsp90α promotes the proliferation, migration, and invasion of a chemoresistant pancreatic cell line (Panc-1-gem) by suppressing ferroptosis. Hsp90α competitively binds to Kelch-like ECH-associated protein 1 (Keap1), liberating nuclear factor erythroid 2-related factor 2 (Nrf2) from Keap1 sequestration. Nrf2 subsequently translocates into the nucleus and activates the glutathione peroxidase 4 (GPX4) pathway, thereby suppressing ferroptosis. This process further worsens the chemoresistance of PC cells. This study provides valuable insight into potential molecular targets to overcome chemoresistance in PC. It sheds light on the intricate mechanisms linking Hsp90α and ferroptosis to chemoresistance in PC and provides a theoretical foundation for the development of novel therapeutic strategies.
期刊介绍:
Acta Biochimica et Biophysica Sinica (ABBS) is an internationally peer-reviewed journal sponsored by the Shanghai Institute of Biochemistry and Cell Biology (CAS). ABBS aims to publish original research articles and review articles in diverse fields of biochemical research including Protein Science, Nucleic Acids, Molecular Biology, Cell Biology, Biophysics, Immunology, and Signal Transduction, etc.