PO.ET09.01 · 实验与分子治疗
PRMT5抑制改变细胞染色质格局并驱动套细胞淋巴瘤对BH3模拟物的易感性
PRMT5 inhibition alters cellular chromatin landscape and drives vulnerability to BH3 mimetics in mantle cell lymphoma
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
背景:套细胞淋巴瘤(MCL)是一种罕见且无法治愈的血液癌症,占非霍奇金淋巴瘤的10%。尤其在复发情况下,仍迫切需要新型治疗方法。蛋白精氨酸甲基转移酶5(PRMT5)是MCL中的一种致癌驱动因子,靶向组蛋白和非组蛋白进行翻译后对称精氨酸二甲基化(me2s)。BCL2家族蛋白调控凋亡,其失调是MCL的一个标志,但使用药理学抑制剂(BH3模拟物)治疗的成效有限。我们假设通过PRMT5抑制剂(PRMT5i)进行的转录和表观基因组扰动会使MCL细胞对BH3模拟物致敏,从而产生协同药物作用。
方法:采用基于平板和流式细胞术的BH3分析来读取n=5个MCL细胞系和n=2个原代患者样本的凋亡致敏状态。通过BH3分析、转录组学(RNA测序)和全基因组组蛋白修饰分析(针对H3K4me3、H3K27me3、H3K27ac及两种me2s标记H3R8me2s和H4R3me2s的CUT&RUN测序)评估了小分子PRMT5i PRT382的效应。在MCL细胞系(n=5)中测试了PRT382与BH3模拟物(navitoclax、A852/A-1331852、PRT1419)的药物组合效应。在侵袭性、复发性MCL的小鼠患者来源异种移植(PDX)模型中评估了navitoclax和相关PRMT5i PRT808单独或联合使用的疗效。
结果:组蛋白修饰和RNA表达的全局分析揭示了转录起始位点周围的强烈关联(校正后p<0.0001),包括PRMT5介导的H4R3me2s(校正后p<0.0001),但未显示PRT382作用下组蛋白精氨酸甲基化的明显全局丧失。对PRT382的表观基因组反应在MCL模型Z-138和CCMCL1中截然不同,后者显示在特异性富集于细胞周期通路(校正后p<0.0001)的基因座上全局H3K4me3降低(p<0.0001)。BH3分析揭示了细胞系、PDX细胞和患者样本对线粒体损伤的易感性,这与促生存BCL2家族RNA和蛋白表达相关(p<0.01)。Z-138中PRT382对去极化的显著致敏(而CCMCL1中没有)反映了这些模型中的转录组差异。我们观察到n=16种不同的PRMT5i/BH3模拟物组合可强烈协同地降低细胞活力(p<0.01)。在我们的PDX模型中,PRT808/navitoclax组合在生存(中位93天 vs. PRT808/navitoclax单药分别为65/75天,p<0.01)和循环疾病(p<0.01)方面均优于单药治疗队列。
结论:我们的研究显示了在体外和体内联合PRMT5i与BH3模拟物的广泛协同潜力。PRMT5i导致染色质状态的全表观基因组调节,有可能对靶向药物产生易感性。
查看英文原文 English abstract
Background: Mantle cell lymphoma (MCL) is a rare and incurable blood cancer, comprising 10% of Non-Hodgkin lymphomas. Especially in relapse settings, there remains a crucial need for novel treatments. The enzyme protein arginine methyltransferase 5 (PRMT5) is an oncogenic driver in MCL which targets both histones and non-histone proteins for posttranslational symmetric arginine dimethylation (me2s). BCL2 family proteins govern apoptosis and their dysregulation is a hallmark of MCL, but treatment with pharmacological inhibitors (BH3 mimetics) has had limited success. We hypothesized that transcriptional and epigenomic perturbations via PRMT5 inhibitors (PRMT5i) will sensitize MCL cells to BH3 mimetics for synergistic drug action.
Methods: Plate- and flow-cytometry-based BH3 profiling was used to read out the apoptotic priming state of n=5 MCL cell lines and n=2 primary patient samples. Effects of the small molecule PRMT5i PRT382 were assessed via BH3 profiling, transcriptomics (RNA sequencing) and genome-wide histone modification profiling (CUT&RUN sequencing for H3K4me3, H3K27me3, H3K27ac and two me2s marks H3R8me2s and H4R3me2s). Drug combination effects of PRT382 and BH3-mimetics (navitoclax, A852/A-1331852, PRT1419) were tested in MCL cell lines (n=5). Efficacy of navitoclax and PRT808, a related PRMT5i, was assessed alone or in combination in a murine patient-derived xenograft (PDX) model of aggressive, relapsed MCL.
Results: Global analysis of histone modifications and RNA expression revealed strong association around transcription start sites (adjusted p<0.0001), including for PRMT5-mediated H4R3me2s (adjusted p<0.0001), but revealed no pronounced global loss of histone arginine methylation under PRT382. Epigenomic responses to PRT382 were highly distinct in MCL models Z-138 and CCMCL1, with the latter revealing lowered global H3K4me3 (p<0.0001) at loci specifically enriched for cell cycle pathways (adjusted p<0.0001). BH3 profiling revealed vulnerabilities to mitochondrial insults in cell lines, PDX cells, and patient samples, which was correlated with pro-survival BCL2 family RNA- and protein expression (p<0.01). Pronounced sensitization to depolarization with PRT382 in Z-138, but not CCMCL1, was reflective of transcriptomic differences in these models. We observed strong synergistic reduction in cell viability with n=16 distinct PRMT5i/BH3 mimetic combinations (p<0.01). In our PDX model, the PRT808/navitoclax combination outperformed single treatment cohorts in survival (median 93 vs. 65/75 days for PRT808/navitoclax alone, p<0.01) and circulating disease (p<0.01).
Conclusions: Our study showed the broad synergistic potential of combining PRMT5i and BH3 mimetics both in vitro and in vivo. PRMT5i lead to epigenome-wide modulation of chromatin states with potential to create vulnerabilities to targeted agents.
利益披露 Disclosure
C. Weigel, None..
C. Hinterschied, None..
S. Koirala, None..
M. Long, None..
S. Sloan, None..
J. Weist, None..
L. Villagomez, None..
A. La Ferlita, None..
C. Gao, None..
I. Hout, None..
S. Leon, None..
F. Brown-Burke, None..
B. Pray, None..
M. Harper, None.
N. Bhagwat,
Prelude Therapeutics Employment.
K. Vaddi,
Prelude Therapeutics Employment.
P. A. Scherle,
Prelude Therapeutics Employment.
C. Meydan, None..
S. Chen-Kiang, None..
M. DiLiberto, None..
O. Elemento, None..
C. E. Mason, None..
J. Paik, None..
L. Alinari, None..
R. Lapalombella, None..
L. Sehgal, None..
R. Baiocchi, None.