Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, TX 77030, USA.
Whitehead Institute for Biomedical Research, Cambridge, MA 02142, USA.
Cell Rep Med. 2021 Jan 19;2(1):100188. doi: 10.1016/j.xcrm.2020.100188.
Chordomas are rare spinal tumors addicted to expression of the developmental transcription factor brachyury. In chordomas, brachyury is super-enhancer associated and preferentially downregulated by pharmacologic transcriptional CDK inhibition, leading to cell death. To understand the underlying basis of this sensitivity, we dissect the brachyury transcription regulatory network and compare the consequences of brachyury degradation with transcriptional CDK inhibition. Brachyury defines the chordoma super-enhancer landscape and autoregulates through binding its super-enhancer, and its locus forms a transcriptional condensate. Transcriptional CDK inhibition and brachyury degradation disrupt brachyury autoregulation, leading to loss of its transcriptional condensate and transcriptional program. Compared with transcriptional CDK inhibition, which globally downregulates transcription, leading to cell death, brachyury degradation is much to anti-apoptotic inhibition. These data suggest that brachyury downregulation is a core tenet of transcriptional CDK inhibition and motivates developing strategies to target brachyury and its autoregulatory feedback loop.
脊索瘤是一种罕见的脊柱肿瘤,其特征是发育转录因子 brachyury 的表达。在脊索瘤中,bracyury 与超级增强子相关,并被药物转录 CDK 抑制优先下调,导致细胞死亡。为了了解这种敏感性的潜在基础,我们剖析了 brachyury 转录调控网络,并比较了 brachyury 降解与转录 CDK 抑制的后果。Brachyury 定义了脊索瘤的超级增强子景观,并通过与其超级增强子结合进行自身调控,其基因座形成转录凝聚物。转录 CDK 抑制和 brachyury 降解破坏了 brachyury 的自身调控,导致其转录凝聚物和转录程序丢失。与全局下调转录导致细胞死亡的转录 CDK 抑制相比,bracyury 降解对凋亡抑制的作用要小得多。这些数据表明,bracyury 的下调是转录 CDK 抑制的核心原则,并促使人们开发靶向 brachyury 及其自身调节反馈环的策略。