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对葡萄膜黑色素瘤的激酶组学转录谱分析揭示了针对靶向治疗的新弱点。

Kinome-wide transcriptional profiling of uveal melanoma reveals new vulnerabilities to targeted therapeutics.

机构信息

Department of Biochemistry, Institute of Integrative Biology, University of Liverpool, Liverpool, UK.

Computational Biology Facility, Functional and Comparative Genomics, Institute of Integrative Biology, University of Liverpool, Liverpool, UK.

出版信息

Pigment Cell Melanoma Res. 2018 Mar;31(2):253-266. doi: 10.1111/pcmr.12650. Epub 2017 Oct 15.

Abstract

Metastatic uveal melanoma (UM) is invariably fatal, usually within a year of diagnosis. There are currently no effective therapies, and clinical studies employing kinase inhibitors have so far demonstrated limited success. This is despite common activating mutations in GNAQ/11 genes, which trigger signalling pathways that might predispose tumours to a variety of targeted drugs. In this study, we have profiled kinome expression network dynamics in various human ocular melanomas. We uncovered a shared transcriptional profile in human primary UM samples and across a variety of experimental cell-based models. The poor overall response of UM cells to FDA-approved kinase inhibitors contrasted with much higher sensitivity to the bromodomain inhibitor JQ1, a broad transcriptional repressor. Mechanistically, we identified a repressed FOXM1-dependent kinase subnetwork in JQ1-exposed cells that contained multiple cell cycle-regulated protein kinases. Consistently, we demonstrated vulnerability of UM cells to inhibitors of mitotic protein kinases within this network, including the investigational PLK1 inhibitor BI6727. We conclude that analysis of kinome-wide signalling network dynamics has the potential to reveal actionable drug targets and inhibitors of potential therapeutic benefit for UM patients.

摘要

葡萄膜黑色素瘤(UM)转移是不可避免的致命性疾病,通常在诊断后的一年内。目前尚无有效的治疗方法,而使用激酶抑制剂的临床研究迄今为止仅取得了有限的成功。尽管 GNAQ/11 基因存在常见的激活突变,但这些突变触发的信号通路可能使肿瘤容易受到多种靶向药物的影响。在这项研究中,我们对各种人眼黑色素瘤的激酶组表达网络动力学进行了分析。我们在人原发性 UM 样本和各种实验性基于细胞的模型中发现了一个共同的转录谱。UM 细胞对 FDA 批准的激酶抑制剂的总体反应不佳,而对溴结构域抑制剂 JQ1(一种广泛的转录抑制剂)的敏感性要高得多。从机制上讲,我们在 JQ1 暴露的细胞中鉴定出一个受抑制的 FOXM1 依赖性激酶子网,其中包含多个细胞周期调控蛋白激酶。一致地,我们证明了 UM 细胞对该网络中有丝分裂蛋白激酶抑制剂的易感性,包括研究中的 PLK1 抑制剂 BI6727。我们的结论是,对激酶组信号网络动力学的全面分析有可能揭示出针对 UM 患者具有治疗潜力的药物靶点和抑制剂。

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