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USP11 regulates PML stability to control Notch-induced malignancy in brain tumours

机译:USP11调节PML稳定性以控制Notch诱导的脑肿瘤恶性肿瘤

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摘要

The promyelocytic leukaemia (PML) protein controls multiple tumour suppressive functions and is downregulated in diverse types of human cancers through incompletely characterized post-translational mechanisms. Here we identify USP11 as a PML regulator by RNAi screening. USP11 deubiquitinates and stabilizes PML, thereby counteracting the functions of PML ubiquitin ligases RNF4 and the KLHL20–Cul3 (Cullin 3)–Roc1 complex. We find that USP11 is transcriptionally repressed through a Notch/Hey1-dependent mechanism, leading to PML destabilization. In human glioma, Hey1 upregulation correlates with USP11 and PML downregulation and with high-grade malignancy. The Notch/Hey1-induced downregulation of USP11 and PML not only confers multiple malignant characteristics of aggressive glioma, including proliferation, invasiveness and tumour growth in an orthotopic mouse model, but also potentiates self-renewal, tumour-forming capacity and therapeutic resistance of patient-derived glioma-initiating cells. Our study uncovers a PML degradation mechanism through Notch/Hey1-induced repression of the PML deubiquitinase USP11 and suggests an important role for this pathway in brain tumour pathogenesis.
机译:早幼粒细胞白血病(PML)蛋白控制多种肿瘤抑制功能,并通过不完整表征的翻译后机制在多种类型的人类癌症中下调。在这里,我们通过RNAi筛选将USP11鉴定为PML调节剂。 USP11去泛素化并稳定PML,从而抵消PML泛素连接酶RNF4和KLHL20–Cul3(Cullin 3)–Roc1复合体的功能。我们发现USP11通过Notch / Hey1依赖机制被转录抑制,导致PML不稳定。在人类神经胶质瘤中,Hey1上调与USP11和PML下调以及高级别恶性肿瘤相关。 Notch / Hey1诱导的USP11和PML下调不仅赋予侵袭性神经胶质瘤多种恶性特征,包括原位小鼠模型中的增殖,侵袭性和肿瘤生长,而且还增强了患者的自我更新能力,形成肿瘤的能力和治疗抵抗力来源的神经胶质瘤起始细胞。我们的研究揭示了通过Notch / Hey1诱导的PML去泛素化酶USP11的抑制而引起的PML降解机制,并暗示了该途径在脑肿瘤发病中的重要作用。

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