首页> 美国卫生研究院文献>Haematologica >The PI3K/Akt signaling pathway regulates the expression of Hsp70 which critically contributes to Hsp90-chaperone function and tumor cell survival in multiple myeloma
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The PI3K/Akt signaling pathway regulates the expression of Hsp70 which critically contributes to Hsp90-chaperone function and tumor cell survival in multiple myeloma

机译:PI3K / Akt信号通路调节Hsp70的表达这在多发性骨髓瘤中对Hsp90-伴侣功能和肿瘤细胞存活至关重要

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摘要

Despite therapeutic advances multiple myeloma remains largely incurable, and novel therapeutic concepts are needed. The Hsp90-chaperone is a reasonable therapeutic target, because it maintains oncogenic signaling of multiple deregulated pathways. However, in contrast to promising preclinical results, only limited clinical efficacy has been achieved through pharmacological Hsp90 inhibition. Because Hsp70 has been described to interact functionally with the Hsp90-complex, we analyzed the suitability of Hsp72 and Hsp73 as potential additional target sites. Expression of Hsp72 and Hsp73 in myeloma cells was analyzed by immunohistochemical staining and western blotting. Short interfering RNA-mediated knockdown or pharmacological inhibition of Hsp72 and Hsp73 was performed to evaluate the role of these proteins in myeloma cell survival and for Hsp90-chaperone function. Furthermore, the role of PI3K-dependent signaling in constitutive and inducible Hsp70 expression was investigated using short interfering RNA-mediated and pharmacological PI3K inhibition. Hsp72 and Hsp73 were frequently overexpressed in multiple myeloma. Knockdown of Hsp72 and/or Hsp73 or treatment with VER-155008 induced apoptosis of myeloma cells. Hsp72/Hsp73 inhibition decreased protein levels of Hsp90-chaperone clients affecting multiple oncogenic signaling pathways, and acted synergistically with the Hsp90 inhibitor NVP-AUY922 in the induction of death of myeloma cells. Inhibition of the PI3K/Akt/GSK3β pathway with short interfering RNA or PI103 decreased expression of the heat shock transcription factor 1 and down-regulated constitutive and inducible Hsp70 expression. Treatment of myeloma cells with a combination of NVP-AUY922 and PI103 resulted in additive to synergistic cytotoxicity. In conclusion, Hsp72 and Hsp73 sustain Hsp90-chaperone function and critically contribute to the survival of myeloma cells. Translation of Hsp70 inhibition into the clinic is therefore highly desirable. Treatment with PI3K inhibitors might represent an alternative therapeutic strategy to target Hsp70.
机译:尽管治疗上取得了进步,但多发性骨髓瘤仍基本上无法治愈,因此需要新颖的治疗概念。 Hsp90-伴侣蛋白是合理的治疗靶标,因为它维持多种失控途径的致癌信号。但是,与有希望的临床前结果相反,通过药理学上的Hsp90抑制作用只能获得有限的临床疗效。由于已经描述了Hsp70与Hsp90复合体在功能上相互作用,因此我们分析了Hsp72和Hsp73作为潜在的其他靶位点的适用性。通过免疫组织化学染色和蛋白质印迹分析骨髓瘤细胞中Hsp72和Hsp73的表达。进行了简短的RNA干扰介导的Hsp72和Hsp73抑制或药理学抑制,以评估这些蛋白在骨髓瘤细胞存活中的作用以及Hsp90-伴侣蛋白的功能。此外,使用短干扰RNA介导的和药理性的PI3K抑制作用,研究了PI3K依赖性信号传导在组成型和诱导型Hsp70表达中的作用。 Hsp72和Hsp73在多发性骨髓瘤中经常过表达。击倒Hsp72和/或Hsp73或用VER-155008处理可诱导骨髓瘤细胞凋亡。 Hsp72 / Hsp73抑制作用降低了Hsp90-伴侣分子的蛋白水平,影响了多个致癌信号通路,并在诱导骨髓瘤细胞死亡中与Hsp90抑制剂NVP-AUY922协同作用。用短干扰RNA或PI103抑制PI3K / Akt /GSK3β途径可降低热休克转录因子1的表达,并下调组成型和诱导型Hsp70表达。用NVP-AUY922和PI103组合治疗骨髓瘤细胞可产生协同的细胞毒性作用。总之,Hsp72和Hsp73维持Hsp90-伴侣分子的功能,并在骨髓瘤细胞的存活中起关键作用。因此,非常需要将Hsp70抑制作用转入临床。 PI3K抑制剂的治疗可能代表靶向Hsp70的替代治疗策略。

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