Department of Physiology, Yong Loo Lin School of Medicine, National University of Singapore, Singapore, 117593, Singapore.
NUS Center for Cancer Research, Yong Loo Lin School of Medicine, National University of Singapore, Singapore, Singapore.
Cell Death Differ. 2023 Aug;30(8):1973-1987. doi: 10.1038/s41418-023-01192-3. Epub 2023 Jul 19.
MAD2 is a spindle assembly checkpoint protein that participates in the formation of mitotic checkpoint complex, which blocks mitotic progression. RNF8, an established DNA damage response protein, has been implicated in mitotic checkpoint regulation but its exact role remains poorly understood. Here, RNF8 proximity proteomics uncovered a role of RNF8-MAD2 in generating the mitotic checkpoint signal. Specifically, RNF8 competes with a small pool of p31 for binding to the closed conformer of MAD2 via its RING domain, while CAMK2D serves as a molecular scaffold to concentrate the RNF8-MAD2 complex via transient/weak interactions between its p-Thr287 and RNF8's FHA domain. Accordingly, RNF8 overexpression impairs glioma stem cell (GSC) mitotic progression in a FHA- and RING-dependent manner. Importantly, low RNF8 expression correlates with inferior glioma outcome and RNF8 overexpression impedes GSC tumorigenicity. Last, we identify PLK1 inhibitor that mimics RNF8 overexpression using a chemical biology approach, and demonstrate a PLK1/HSP90 inhibitor combination that synergistically reduces GSC proliferation and stemness. Thus, our study has unveiled a previously unrecognized CAMK2D-RNF8-MAD2 complex in regulating mitotic checkpoint with relevance to gliomas, which is therapeutically targetable.
MAD2 是一种纺锤体组装检查点蛋白,参与有丝分裂检查点复合物的形成,该复合物阻止有丝分裂的进行。RNF8 是一种已确立的 DNA 损伤反应蛋白,已被牵连到有丝分裂检查点调控中,但它的确切作用仍知之甚少。在这里,RNF8 邻近蛋白质组学揭示了 RNF8-MAD2 在产生有丝分裂检查点信号中的作用。具体来说,RNF8 通过其 RING 结构域与一小部分 p31 竞争与 MAD2 的封闭构象结合,而 CAMK2D 作为分子支架,通过其 p-Thr287 和 RNF8 的 FHA 结构域之间的瞬时/弱相互作用来浓缩 RNF8-MAD2 复合物。因此,RNF8 的过表达以 FHA 和 RING 依赖性方式损害神经胶质瘤干细胞(GSC)的有丝分裂进展。重要的是,低 RNF8 表达与低级神经胶质瘤预后不良相关,而过表达 RNF8 则会阻碍 GSC 的致瘤性。最后,我们使用化学生物学方法鉴定了一种模拟 RNF8 过表达的 PLK1 抑制剂,并证明了 PLK1/HSP90 抑制剂组合可协同减少 GSC 的增殖和干性。因此,我们的研究揭示了一种以前未被识别的 CAMK2D-RNF8-MAD2 复合物,它在调节有丝分裂检查点方面与神经胶质瘤有关,这是一种有治疗潜力的靶点。