Torchia Jonathon, Golbourn Brian, Feng Shengrui, Ho King Ching, Sin-Chan Patrick, Vasiljevic Alexandre, Norman Joseph D, Guilhamon Paul, Garzia Livia, Agamez Natalia R, Lu Mei, Chan Tiffany S, Picard Daniel, de Antonellis Pasqualino, Khuong-Quang Dong-Anh, Planello Aline C, Zeller Constanze, Barsyte-Lovejoy Dalia, Lafay-Cousin Lucie, Letourneau Louis, Bourgey Mathieu, Yu Man, Gendoo Deena M A, Dzamba Misko, Barszczyk Mark, Medina Tiago, Riemenschneider Alexandra N, Morrissy A Sorana, Ra Young-Shin, Ramaswamy Vijay, Remke Marc, Dunham Christopher P, Yip Stephen, Ng Ho-Keung, Lu Jian-Qiang, Mehta Vivek, Albrecht Steffen, Pimentel Jose, Chan Jennifer A, Somers Gino R, Faria Claudia C, Roque Lucia, Fouladi Maryam, Hoffman Lindsey M, Moore Andrew S, Wang Yin, Choi Seung Ah, Hansford Jordan R, Catchpoole Daniel, Birks Diane K, Foreman Nicholas K, Strother Doug, Klekner Almos, Bognár Laszló, Garami Miklós, Hauser Péter, Hortobágyi Tibor, Wilson Beverly, Hukin Juliette, Carret Anne-Sophie, Van Meter Timothy E, Hwang Eugene I, Gajjar Amar, Chiou Shih-Hwa, Nakamura Hideo, Toledano Helen, Fried Iris, Fults Daniel, Wataya Takafumi, Fryer Chris, Eisenstat David D, Scheinemann Katrin, Fleming Adam J, Johnston Donna L, Michaud Jean, Zelcer Shayna, Hammond Robert, Afzal Samina, Ramsay David A, Sirachainan Nongnuch, Hongeng Suradej, Larbcharoensub Noppadol, Grundy Richard G, Lulla Rishi R, Fangusaro Jason R, Druker Harriet, Bartels Ute, Grant Ronald, Malkin David, McGlade C Jane, Nicolaides Theodore, Tihan Tarik, Phillips Joanna, Majewski Jacek, Montpetit Alexandre, Bourque Guillaume, Bader Gary D, Reddy Alyssa T, Gillespie G Yancey, Warmuth-Metz Monika, Rutkowski Stefan, Tabori Uri, Lupien Mathieu, Brudno Michael, Schüller Ulrich, Pietsch Torsten, Judkins Alexander R, Hawkins Cynthia E, Bouffet Eric, Kim Seung-Ki, Dirks Peter B, Taylor Michael D, Erdreich-Epstein Anat, Arrowsmith Cheryl H, De Carvalho Daniel D, Rutka James T, Jabado Nada, Huang Annie
Department of Laboratory Medicine and Pathobiology, University of Toronto, Toronto, ON M5G0A4, Canada; Department of Paediatrics, University of Toronto, Toronto, ON M5G0A4, Canada; Division of Hematology/Oncology, Hospital for Sick Children, Toronto, ON M5G1X8, Canada; Arthur and Sonia Labatt Brain Tumour Research Centre, Hospital for Sick Children, Toronto, ON M5G1X8, Canada.
Department of Laboratory Medicine and Pathobiology, University of Toronto, Toronto, ON M5G0A4, Canada; Division of Neurosurgery, Hospital for Sick Children, Toronto, ON M5G1X8, Canada; Arthur and Sonia Labatt Brain Tumour Research Centre, Hospital for Sick Children, Toronto, ON M5G1X8, Canada.
Cancer Cell. 2016 Dec 12;30(6):891-908. doi: 10.1016/j.ccell.2016.11.003.
We recently reported that atypical teratoid rhabdoid tumors (ATRTs) comprise at least two transcriptional subtypes with different clinical outcomes; however, the mechanisms underlying therapeutic heterogeneity remained unclear. In this study, we analyzed 191 primary ATRTs and 10 ATRT cell lines to define the genomic and epigenomic landscape of ATRTs and identify subgroup-specific therapeutic targets. We found ATRTs segregated into three epigenetic subgroups with distinct genomic profiles, SMARCB1 genotypes, and chromatin landscape that correlated with differential cellular responses to a panel of signaling and epigenetic inhibitors. Significantly, we discovered that differential methylation of a PDGFRB-associated enhancer confers specific sensitivity of group 2 ATRT cells to dasatinib and nilotinib, and suggest that these are promising therapies for this highly lethal ATRT subtype.
我们最近报道,非典型畸胎样横纹肌样肿瘤(ATRTs)至少包含两种具有不同临床结局的转录亚型;然而,治疗异质性背后的机制仍不清楚。在本研究中,我们分析了191例原发性ATRTs和10株ATRT细胞系,以确定ATRTs的基因组和表观基因组图谱,并识别亚组特异性治疗靶点。我们发现ATRTs可分为三个表观遗传亚组,它们具有不同的基因组特征、SMARCB1基因型和染色质图谱,这些与对一组信号传导和表观遗传抑制剂的不同细胞反应相关。重要的是,我们发现与血小板衍生生长因子受体B(PDGFRB)相关的增强子的差异甲基化赋予了2型ATRT细胞对达沙替尼和尼洛替尼的特异性敏感性,并表明这些是针对这种高度致命的ATRT亚型的有前景的疗法。