PO.ET09.01 · 实验与分子治疗

靶向多发性骨髓瘤中的表观遗传衔接蛋白menin

Targeting the epigenetic adaptor protein menin in multiple myeloma

编号 4501 展板 20 时间 4/21 09:00–12:00 区域 Section 14 主讲 Emily Gruber, PhD
分会场 Epigenetic Modulators 1
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作者与单位 Authors & Affiliations

Emily Gruber1, Sree Kumar1, Rheana Franich1, Tiffany Khong2, Daniel Neville1, Andrew Spencer2, Omer Gilan2, Lev Kats1

1Peter MacCallum Cancer Centre, Melbourne, Australia,2Australian Centre for Blood Diseases, Monash University, Melbourne, Australia

摘要 Abstract

中文摘要
表观遗传蛋白Menin与MLL1之间的相互作用对于维持特定亚群急性白血病中自我更新基因的表达至关重要。用Menin抑制剂(iMenin)破坏Menin-MLL1相互作用在白血病临床试验中显示出令人鼓舞的总体应答率,然而iMenin在其他癌症中尚无已知活性。我们分析了DepMap,发现许多多发性骨髓瘤(MM)细胞系在增殖上高度依赖Menin/MLL1。MM是一种常见的浆细胞恶性肿瘤,尽管现有大量治疗手段,但仍在很大程度上无法治愈。我们研究的目的是理解Menin/MLL1复合物在MM中的作用,确定iMenin在MM临床前模型中的疗效,并鉴定应答的生物标志物,以实现iMenin向骨髓瘤治疗领域的快速而成功的转化。 为评估iMenin在MM中的疗效,我们在13种商业化细胞系和9种早期传代患者来源MM细胞(生理相关模型)中进行了生长检测。我们发现约30%对iMenin高度敏感,对活力和增殖有显著影响,另有约40%表现出显著的抗增殖应答。敏感性与MYC t(8;14)易位的缺失显著相关。重要的是,iMenin在异种移植模型和MM的同基因Vk*MYC-32052模型中显示出体内疗效。 RNA测序、ChIP测序和染色质构象测序发现,iMenin敏感性的特征是Menin/MLL1在IRF4超级增强子处的沉积,iMenin将Menin/MLL1从染色质上驱逐,并抑制IRF4及其靶基因。进行了全基因组CRISPR筛选,以鉴定MM中iMenin应答的分子决定因素。这鉴定出EP300/CREBBP/NCOR1轴是iMenin敏感性的关键调节因子。为进一步推进iMenin的转化潜力,我们测试了多种联合策略。其中最有效的是Menin与EP300/CREBBP抑制剂的联用,即使在对单药无应答的模型中(包括体外JJN3细胞和体内同基因Vk*MYC-14551模型)也表现出协同活性。分子分析揭示,通过破坏经典的IRF4超级增强子对IRF4的深度抑制,是Menin与EP300/CREBBP抑制剂之间协同作用的基础机制。 综上所述,Menin调控泛骨髓瘤必需转录因子IRF4,是MM中一个有前景且临床上可靶向的靶点。
查看英文原文 English abstract
The interaction between the epigenetic proteins Menin and MLL1 is critical for sustaining the expression of self-renewal genes in specific subsets of acute leukemias. Disrupting the Menin-MLL1 interaction with Menin inhibitors (iMenin) is showing promising overall response rates in leukemia clinical trials, however, iMenin are not known to be active in other cancers. We analysed DepMap and discovered that many multiple myeloma (MM) cell lines are highly dependent on Menin/MLL1 for proliferation. MM is a common plasma cell malignancy that remains largely incurable, despite the plethora of treatments available. The objectives of our study are to understand the role of the Menin/MLL1 complex in MM, determine the efficacy of iMenin in MM pre-clinical models and identify biomarkers of response to enable the rapid and successful translation of iMenin into the myeloma setting. To assess the efficacy of iMenin in MM, we performed growth assays across 13 commercially available cell lines and 9 early passage patient-derived MM cells (physiologically relevant model). We found that ~30% were highly sensitive to iMenin with a substantial impact on viability and proliferation, with an additional ~40% showing a significant anti-proliferative response. Sensitivity was significantly correlated with the absence of the MYC t(8;14) translocation. Importantly, iMenin showed in vivo efficacy in a xenograft and in the syngeneic Vk*MYC-32052 model of MM. RNA-, ChIP- and chromatin conformation sequencing found that iMenin sensitivity was characterized by the deposition of Menin/MLL1 at the super-enhancer of IRF4, with iMenin evicting Menin/MLL1 from chromatin and suppressing IRF4 and its target genes. Genome-wide CRISPR screening was performed to identify the molecular determinants of iMenin response in MM. This identified the EP300/CREBBP/NCOR1 axis as a key modulator of iMenin sensitivity. To further advance the translational potential of iMenin, we tested several combination strategies. Among the most effective was the combination of Menin and EP300/CREBBP inhibitors, which demonstrated synergistic activity even in models which were unresponsive to the single-agents, including JJN3 cells in vitro and the syngeneic in vivo Vk*MYC-14551 model. Molecular analyses uncovered deep suppression of IRF4, via disruption of the canonical IRF4 super-enhancer, as the mechanism underpinning the synergy between Menin and EP300/CREBBP inhibitors. Taken together, Menin regulates the pan-myeloma essential transcription factor IRF4 and is a promising and clinically actionable target in MM.
利益披露 Disclosure
E. Gruber, None.. S. Kumar, None.. R. Franich, None.. T. Khong, None.. D. Neville, None.. A. Spencer, None.. O. Gilan, None.. L. Kats, None.

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