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The Functional Landscape of Hsp27 Reveals New Cellular Processes such as DNA Repair and Alternative Splicing and Proposes Novel Anticancer Targets

机译:Hsp27的功能格局揭示了新的细胞过程例如DNA修复和选择性剪接并提出了新的抗癌靶标

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摘要

Previously, we identified the stress-induced chaperone, Hsp27, as highly overexpressed in castration-resistant prostate cancer and developed an Hsp27 inhibitor (OGX-427) currently tested in phase I/II clinical trials as a chemosensitizing agent in different cancers. To better understand the Hsp27 poorly-defined cytoprotective functions in cancers and increase the OGX-427 pharmacological safety, we established the Hsp27-protein interaction network using a yeast two-hybrid approach and identified 226 interaction partners. As an example, we showed that targeting Hsp27 interaction with TCTP, a partner protein identified in our screen increases therapy sensitivity, opening a new promising field of research for therapeutic approaches that could decrease or abolish toxicity for normal cells. Results of an in-depth bioinformatics network analysis allying the Hsp27 interaction map into the human interactome underlined the multifunctional character of this protein. We identified interactions of Hsp27 with proteins involved in eight well known functions previously related to Hsp27 and uncovered 17 potential new ones, such as DNA repair and RNA splicing. Validation of Hsp27 involvement in both processes in human prostate cancer cells supports our system biology-predicted functions and provides new insights into Hsp27 roles in cancer cells.
机译:先前,我们确定了应激诱导的伴侣蛋白Hsp27在去势抵抗性前列腺癌中高度过表达,并开发了目前在I / II期临床试验中测试的Hsp27抑制剂(OGX-427)作为不同癌症中的化学增敏剂。为了更好地了解Hsp27在癌症中的细胞保护功能定义不清并提高OGX-427药理安全性,我们使用酵母双杂交方法建立了Hsp27-蛋白质相互作用网络,并确定了226个相互作用伙伴。举例来说,我们证明了靶向Hsp27与TCTP相互作用(在我们的筛选中鉴定出的一种伴侣蛋白)可以提高治疗敏感性,从而为可以降低或消除对正常细胞毒性的治疗方法开辟了新的有希望的领域。深入的生物信息学网络分析结果将Hsp27相互作用图谱整合到人类相互作用组中,突显了该蛋白的多功能特性。我们确定了Hsp27与参与先前与Hsp27相关的八个众所周知功能的蛋白质之间的相互作用,并发现了17种潜在的新功能,例如DNA修复和RNA剪接。 Hsp27参与人类前列腺癌细胞的两个过程的验证支持了我们系统生物学预测的功能,并为Hsp27在癌细胞中的作用提供了新的见解。

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