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Cell-based screen for altered nuclear phenotypes reveals senescence progression in polyploid cells after Aurora kinase B inhibition

机译:基于细胞的核表型改变的筛查揭示了Aurora激酶B抑制后多倍体细胞的衰老进程

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摘要

Cellular senescence is a widespread stress response and is widely considered to be an alternative cancer therapeutic goal. Unlike apoptosis, senescence is composed of a diverse set of subphenotypes, depending on which of its associated effector programs are engaged. Here we establish a simple and sensitive cell-based prosenescence screen with detailed validation assays. We characterize the screen using a focused tool compound kinase inhibitor library. We identify a series of compounds that induce different types of senescence, including a unique phenotype associated with irregularly shaped nuclei and the progressive accumulation of G1 tetraploidy in human diploid fibroblasts. Downstream analyses show that all of the compounds that induce tetraploid senescence inhibit Aurora kinase B (AURKB). AURKB is the catalytic component of the chromosome passenger complex, which is involved in correct chromosome alignment and segregation, the spindle assembly checkpoint, and cytokinesis. Although aberrant mitosis and senescence have been linked, a specific characterization of AURKB in the context of senescence is still required. This proof-of-principle study suggests that our protocol is capable of amplifying tetraploid senescence, which can be observed in only a small population of oncogenic RAS-induced senescence, and provides additional justification for AURKB as a cancer therapeutic target.
机译:细胞衰老是一种广泛的应激反应,被广泛认为是另一种癌症治疗目标。与凋亡不同,衰老由多种亚表型组成,具体取决于参与其相关效应程序的亚型。在这里,我们建立了一个简单而又敏感的基于细胞的衰老筛选,并进行了详细的验证分析。我们使用聚焦的工具化合物激酶抑制剂库来表征屏幕。我们鉴定出一系列诱导不同类型衰老的化合物,包括与不规则形状的核相关的独特表型和人类二倍体成纤维细胞中G1四倍体的逐步积累。下游分析显示,所有诱导四倍体衰老的化合物均抑制Aurora激酶B(AURKB)。 AURKB是染色体乘客复合体的催化成分,它参与正确的染色体排列和分离,纺锤体组装检查点和胞质分裂。尽管异常的有丝分裂和衰老已经联系在一起,但仍然需要在衰老的背景下对AURKB进行特定的表征。这项原理验证研究表明,我们的方案能够扩增四倍体衰老,仅在少数致癌RAS诱导的衰老中可以观察到该四倍体衰老,并为AURKB作为癌症治疗靶标提供了进一步的理由。

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