PO.MCB01.01 · 分子与细胞生物学

将CDK9抑制剂的效应"转化"用于靶向前列腺癌

‘Translating' CDK9 inhibitor effects to target prostate cancer

海报缩略图:将CDK9抑制剂的效应"转化"用于靶向前列腺癌
编号 1896 展板 4 时间 4/20 09:00–12:00 区域 Section 20 主讲 Harri Itkonen, PhD
分会场 Cell Cycle
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作者与单位 Authors & Affiliations

Shivani Yalala1, Pedro Durao2, Agata Carreira2, Joyeeta Chatterjee3, Muskan Kumari1, Antti Sakari Rannikko4, Eileen E. Parkes2, Fadi Issa2, Ian G. Mills2, Harri M. Itkonen1

1University of Helsinki, Helsinki, Finland,2University of Oxford, Oxford, United Kingdom,3University of Oslo, Oslo, Norway,4HUS Helsinki University Hospital, Helsinki, Finland

摘要 Abstract

中文摘要
引言:前列腺癌(PC)是最常见的男性癌症,需要更有效的治疗来控制晚期疾病。在这种致命疾病中,即去势抵抗性前列腺癌(CRPC),尽管存在抗雄激素药物,癌细胞仍维持一个促增殖的基因表达程序。这一基因表达程序最终依赖于CDK9,靶向CDK9的化合物目前正处于针对实体瘤的临床试验中。所有细胞都依赖CDK9来维持基因表达,尽管尚不清楚为何癌细胞对CDK9靶向药物特别敏感。 实验方法:采用对前列腺癌细胞系的多组学分析来了解细胞如何应对CDK9抑制。使用患者样本对部分发现进行相关性验证,同时正在同基因小鼠模型中进行数据验证。 数据摘要:我们发现,CDK9抑制通过病毒模拟激活了PC细胞中的固有免疫反应。正如预期,靶向CDK9抑制了整体转录;然而,在此情况下某些基因的表达水平显著升高。从机制上看,CDK9抑制使mRNA加工机器与RNA聚合酶II解偶联,我们发现在此情况下内含子保留显著增加。所生成的错误剪接RNA易于形成双链RNA(dsRNA),而(dsRNA)激活的激酶的完全活性是CDK9抑制剂诱导的抗增殖效应所必需的。已知dsRNA的累积会激活固有免疫反应,我们确实发现CDK9抑制导致免疫原性细胞因子的过度分泌。 结论:我们的数据揭示,靶向转录延伸激酶CDK9通过选择性增强某些mRNA的翻译,在体外激活了免疫调节信号。我们现正在同基因动物模型、患者来源的类器官中验证这些效应,并探究转录和翻译程序被重新编排的程度。从长远来看,我们的目标是开发一种针对CRPC的有效治疗策略。
查看英文原文 English abstract
Introduction Prostate cancer (PC) is the most common male cancer, and more effective treatments are needed to control the late-stage disease. In the lethal disease, termed castration-resistant PC (CRPC), cancer cells sustain a pro-proliferative gene expression program despite the presence of anti-androgens. This gene expression program is ultimately dependent on CDK9, and compounds targeting it are currently in clinical trials for solid tumors. All cells depend on CDK9 to sustain gene expression, although it is not clear why cancer cells are particularly sensitive to CDK9 targeting drugs. Experimental procedures Multi-omics profiling of prostate cancer cell lines was used to understand how cells respond to CDK9 inhibition. Patient samples were used to correlate some of the findings, with data validation ongoing in syngeneic mouse models. Summary of the data We show that CDK9 inhibition activates the innate immune response through viral mimicry in PC cells. As expected, targeting CDK9 suppresses overall transcription; however, some genes are expressed in significantly higher levels in this situation. Mechanistically, CDK9 inhibition uncouples the mRNA-processing machinery from RNA polymerase II, and we show that in this situation intron retention is significantly increased. The generated mis-spliced RNAs are prone to form double-stranded RNAs (dsRNA), and full activity of (dsRNA)-activated kinase is required for the CDK9 inhibitor-induced anti-proliferative effects. Accumulation of dsRNAs is known to activate the innate immune response and indeed we show that CDK9 inhibition leads to excessive secretion of immunogenic cytokines. Conclusions Our data reveal that targeting the transcription elongation kinase CDK9 activates immuno-modulatory signalling in vitro by selectively augmenting translation of certain mRNAs. We are now validating these effects in syngeneic animal models, patient derived organoids, and probing the extent to which the transcriptional and translational programs are rewired. In the long run, our aim is to develop an effective treatment strategy against CRPC.
利益披露 Disclosure
P. Durao, None.. A. Carreira, None.. J. Chatterjee, None.. M. Kumari, None.. F. Issa, None.. H. M. Itkonen, None.

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