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高 MITF 表达与超级增强子相关,并被 CDK7 抑制所抑制在黑色素瘤中。

High MITF Expression Is Associated with Super-Enhancers and Suppressed by CDK7 Inhibition in Melanoma.

机构信息

Wellman Center for Photomedicine and Department of Dermatology, Massachusetts General Hospital, Harvard Medical School, Boston, Massachusetts, USA; Department of Dermatology, Weill Cornell Medical College, New York, New York, USA; Signature Healthcare Brockton Hospital, Brockton, Massachusetts, USA.

Whitehead Institute for Biomedical Research, Cambridge, Massachusetts, USA.

出版信息

J Invest Dermatol. 2018 Jul;138(7):1582-1590. doi: 10.1016/j.jid.2017.09.056. Epub 2018 Feb 8.

Abstract

Cutaneous melanoma is an aggressive tumor that accounts for most skin cancer deaths. Among the physiological barriers against therapeutic success is a strong survival program driven by genes such as MITF that specify melanocyte identity, a phenomenon known in melanoma biology as lineage dependency. MITF overexpression is occasionally explained by gene amplification, but here we show that super-enhancers are also important determinants of MITF overexpression in some melanoma cell lines and tumors. Although compounds that directly inhibit MITF are unavailable, a covalent CDK7 inhibitor, THZ1, has recently been shown to potently suppress the growth of various cancers through the depletion of master transcription-regulating oncogenes and the disruption of their attendant super-enhancers. We also show that melanoma cells are highly sensitive to CDK7 inhibition both in vitro and in vivo and that THZ1 can dismantle the super-enhancer apparatus at MITF and SOX10 in some cell lines, thereby extinguishing their intracellular levels. Our results show a dimension to MITF regulation in melanoma cells and point to CDK7 inhibition as a potential strategy to deprive oncogenic transcription and suppress tumor growth in melanoma.

摘要

皮肤黑色素瘤是一种侵袭性肿瘤,是导致大多数皮肤癌死亡的主要原因。在影响治疗效果的生理障碍中,有一种由 MITF 等基因驱动的强大生存程序,这些基因指定了黑素细胞的特征,这在黑色素瘤生物学中被称为谱系依赖性。MITF 的过表达偶尔可以通过基因扩增来解释,但在这里我们表明,超级增强子也是一些黑色素瘤细胞系和肿瘤中 MITF 过表达的重要决定因素。尽管直接抑制 MITF 的化合物尚不可用,但最近一种共价 CDK7 抑制剂 THZ1 已被证明通过耗尽主要转录调节致癌基因及其伴随的超级增强子,有效地抑制各种癌症的生长。我们还表明,黑色素瘤细胞在体外和体内对 CDK7 抑制高度敏感,并且 THZ1 可以在一些细胞系中破坏 MITF 和 SOX10 的超级增强子装置,从而使其细胞内水平熄灭。我们的研究结果表明,黑色素瘤细胞中的 MITF 调节存在一个维度,并指出 CDK7 抑制可能是剥夺致癌转录和抑制黑色素瘤肿瘤生长的潜在策略。

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