Department of Biological Sciences, University of Toledo, 2801 W. Bancroft Street, MS601, Toledo, OH, 43606, USA.
Sci Rep. 2018 Sep 24;8(1):14259. doi: 10.1038/s41598-018-32435-w.
The mitotic checkpoint ensures proper chromosome segregation; defects in this checkpoint can lead to aneuploidy, a hallmark of cancer. The mitotic checkpoint blocks progression through mitosis as long as chromosomes remain unattached to spindle microtubules. Unattached kinetochores induce the formation of a mitotic checkpoint complex (MCC) composed of Mad2, BubR1, Bub1 and Bub3 which inhibits anaphase onset. Spindle toxins induce prolonged mitotic arrest by creating persistently unattached kinetochores which trigger MCC formation. We find that the multifunctional ser/thr kinase, glycogen synthase kinase 3 (GSK3) is required for a strong mitotic checkpoint. Spindle toxin-induced mitotic arrest is relieved by GSK3 inhibitors SB 415286 (SB), RO 318220 (RO) and lithium chloride. Similarly, targeting GSK3β with knockout or RNAi reduced mitotic arrest in the presence of Taxol. GSK3 was required for optimal localization of Mad2, BubR1, and Bub1 at kinetochores and for optimal assembly of the MCC in spindle toxin-arrested cells. The WNT- and PI3K/Akt signaling pathways negatively regulate GSK3β activity. Inhibition of WNT and PI3K/Akt signaling, in the presence of Taxol, induced a longer mitotic arrest compared to Taxol alone. Our observations provide novel insight into the regulation of the mitotic checkpoint and its connection to growth-signaling pathways.
有丝分裂检查点确保了染色体的正确分离;这个检查点的缺陷会导致非整倍体,这是非典型肿瘤的一个特征。只要染色体没有附着到纺锤体微管上,有丝分裂检查点就会阻止有丝分裂的进展。未附着的动粒会诱导形成一个由 Mad2、BubR1、Bub1 和 Bub3 组成的有丝分裂检查点复合物(MCC),该复合物抑制后期的起始。纺锤体毒素通过形成持久未附着的动粒来诱导有丝分裂的延长停滞,从而触发 MCC 的形成。我们发现多功能丝氨酸/苏氨酸激酶糖原合酶激酶 3(GSK3)是强烈有丝分裂检查点所必需的。GSK3 抑制剂 SB 415286(SB)、RO 318220(RO)和氯化锂可以缓解纺锤体毒素诱导的有丝分裂停滞。同样,用敲除或 RNAi 靶向 GSK3β 也可以减少紫杉醇存在时的有丝分裂停滞。GSK3 对于 Mad2、BubR1 和 Bub1 在动粒处的最佳定位以及在纺锤体毒素阻断的细胞中 MCC 的最佳组装都是必需的。WNT 和 PI3K/Akt 信号通路负调控 GSK3β 的活性。在紫杉醇存在的情况下抑制 WNT 和 PI3K/Akt 信号通路会导致有丝分裂停滞时间比单独使用紫杉醇更长。我们的观察结果为有丝分裂检查点的调节及其与生长信号通路的联系提供了新的见解。