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Paradoxical resistance of multiple myeloma to proteasome inhibitors by decreased levels of 19S proteasomal subunits

机译:19S蛋白酶体亚基水平降低对多发性骨髓瘤对蛋白酶体抑制剂的悖论抵抗

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摘要

Hallmarks of cancer, including rapid growth and aneuploidy, can result in non-oncogene addiction to the proteostasis network that can be exploited clinically. The defining example is the exquisite sensitivity of multiple myeloma (MM) to 20S proteasome inhibitors, such as carfilzomib. However, MM patients invariably acquire resistance to these drugs. Using a next-generation shRNA platform, we found that proteostasis factors, including chaperones and stress-response regulators, controlled the response to carfilzomib. Paradoxically, 19S proteasome regulator knockdown induced resistance to carfilzomib in MM and non-MM cells. 19S subunit knockdown did not affect the activity of the 20S subunits targeted by carfilzomib nor their inhibition by the drug, suggesting an alternative mechanism, such as the selective accumulation of protective factors. In MM patients, lower 19S levels predicted a diminished response to carfilzomib-based therapies. Together, our findings suggest that an understanding of network rewiring can inform development of new combination therapies to overcome drug resistance.>DOI:
机译:癌症的标志,包括快速生长和非整倍性,可能导致非癌基因上瘾到可以在临床上利用的蛋白质稳定网络。最具代表性的例子是多发性骨髓瘤(MM)对20S蛋白酶体抑制剂(如卡非佐米)的敏感性。但是,MM患者总是对这些药物产生抗药性。使用下一代shRNA平台,我们发现蛋白稳定因子(包括伴侣蛋白和应激反应调节剂)控制着对卡非佐米的反应。矛盾的是,19S蛋白酶体调节基因敲低在MM和非MM细胞中诱导了对卡非佐米的耐药性。 19S亚基的敲除既不影响卡非佐米靶向的20S亚基的活性,也不影响其对药物的抑制作用,这表明存在另一种机制,例如选择性积累保护因子。在MM患者中,较低的19S水平预示了对基于卡非佐米的疗法的反应减弱。在一起,我们的发现表明,对网络重新布线的理解可以为克服耐药性的新联合疗法的开发提供信息。> DOI:

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