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鉴定三阴性乳腺癌中高外显率 Rb 相关合成致死相互作用。

Identification of highly penetrant Rb-related synthetic lethal interactions in triple negative breast cancer.

机构信息

The Breast Cancer Now Toby Robins Breast Cancer Research Centre, London, SW3 6JB, UK.

CRUK Gene Function Laboratory, The Institute of Cancer Research, London, SW3 6JB, UK.

出版信息

Oncogene. 2018 Oct;37(43):5701-5718. doi: 10.1038/s41388-018-0368-z. Epub 2018 Jun 18.

Abstract

Although defects in the RB1 tumour suppressor are one of the more common driver alterations found in triple-negative breast cancer (TNBC), therapeutic approaches that exploit this have not been identified. By integrating molecular profiling data with data from multiple genetic perturbation screens, we identified candidate synthetic lethal (SL) interactions associated with RB1 defects in TNBC. We refined this analysis by identifying the highly penetrant effects, reasoning that these would be more robust in the face of molecular heterogeneity and would represent more promising therapeutic targets. A significant proportion of the highly penetrant RB1 SL effects involved proteins closely associated with RB1 function, suggesting that this might be a defining characteristic. These included nuclear pore complex components associated with the MAD2 spindle checkpoint protein, the kinase and bromodomain containing transcription factor TAF1, and multiple components of the SCF Cullin F box containing complex. Small-molecule inhibition of SCF elicited an increase in p27 levels, providing a mechanistic rationale for RB1 SL. Transcript expression of SKP2, a SCF component, was elevated in RB1-defective TNBCs, suggesting that in these tumours, SKP2 activity might buffer the effects of RB1 dysfunction.

摘要

尽管 RB1 肿瘤抑制因子缺陷是三阴性乳腺癌 (TNBC) 中较常见的驱动基因突变之一,但尚未发现利用这一缺陷的治疗方法。通过整合分子谱数据和多个遗传干扰筛选的数据,我们鉴定了与 TNBC 中 RB1 缺陷相关的候选合成致死 (SL) 相互作用。我们通过鉴定高穿透性效应来改进这一分析,其原因是这些效应在面对分子异质性时会更加稳健,并可能代表更有前途的治疗靶点。高穿透性 RB1 SL 效应的很大一部分涉及与 RB1 功能密切相关的蛋白质,这表明这可能是一个决定性特征。这些包括与 MAD2 纺锤体检查点蛋白相关的核孔复合体成分、具有激酶和溴结构域的转录因子 TAF1,以及含有 SCF Cullin F 盒的多个复合物成分。SCF 的小分子抑制作用会引起 p27 水平的升高,为 RB1 SL 提供了一种机制上的解释。SKP2,一种 SCF 成分的转录表达在 RB1 缺陷型 TNBC 中升高,表明在这些肿瘤中,SKP2 活性可能缓冲 RB1 功能障碍的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ddd2/6202330/145cb978fff9/41388_2018_368_Fig1_HTML.jpg

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