Cancer Research UK Cambridge Institute, University of Cambridge, Li Ka Shing Centre, Cambridge, England.
Department of Pediatrics, Section of Hematology-Oncology, Baylor College of Medicine, Houston, Texas.
Cancer Discov. 2021 Sep;11(9):2216-2229. doi: 10.1158/2159-8290.CD-20-1052. Epub 2021 Mar 19.
()-a gene of unknown function-partners with a variety of transcriptional coactivators in translocations that drive supratentorial ependymoma, a frequently lethal brain tumor. Understanding the function of is key to developing therapies that inhibit these fusion proteins. Here, using a combination of transcriptomics, chromatin immunoprecipitation sequencing, and proteomics, we interrogated a series of deletion-mutant genes to identify a tripartite transformation mechanism of ZFTA-containing fusions, including: spontaneous nuclear translocation, extensive chromatin binding, and SWI/SNF, SAGA, and NuA4/Tip60 HAT chromatin modifier complex recruitment. Thereby, ZFTA tethers fusion proteins across the genome, modifying chromatin to an active state and enabling its partner transcriptional coactivators to promote promiscuous expression of a transforming transcriptome. Using mouse models, we validate further those elements of ZFTA-fusion proteins that are critical for transformation-including ZFTA zinc fingers and partner gene transactivation domains-thereby unmasking vulnerabilities for therapeutic targeting. SIGNIFICANCE: Ependymomas are hard-to-treat brain tumors driven by translocations between and a variety of transcriptional coactivators. We dissect the transforming mechanism of these fusion proteins and identify protein domains indispensable for tumorigenesis, thereby providing insights into the molecular basis of ependymoma tumorigenesis and vulnerabilities for therapeutic targeting..
()——一个功能未知的基因——与各种转录共激活因子在易位中结合,驱动幕上室管膜瘤,这是一种常见的致命脑肿瘤。了解的功能是开发抑制这些融合蛋白的治疗方法的关键。在这里,我们使用转录组学、染色质免疫沉淀测序和蛋白质组学的组合,研究了一系列缺失突变基因,以确定包含 ZFTA 的融合的三分体转化机制,包括:自发核易位、广泛的染色质结合以及 SWI/SNF、SAGA 和 NuA4/Tip60 HAT 染色质修饰复合物的募集。因此,ZFTA 将融合蛋白固定在整个基因组上,将染色质修饰为激活状态,并使它们的伴侣转录共激活因子能够促进转化转录组的混杂表达。通过使用小鼠模型,我们进一步验证了 ZFTA-融合蛋白转化所必需的那些元件,包括 ZFTA 锌指和伴侣基因转录激活结构域,从而揭示了治疗靶向的脆弱性。意义:室管膜瘤是由和各种转录共激活因子之间的易位驱动的难以治疗的脑肿瘤。我们剖析了这些融合蛋白的转化机制,并确定了肿瘤发生所必需的蛋白结构域,从而深入了解了室管膜瘤肿瘤发生的分子基础和治疗靶向的脆弱性。