Mukai Satomi, Yabuta Norikazu, Yoshida Kaori, Okamoto Ayumi, Miura Daisaku, Furuta Yasuhide, Abe Takaya, Nojima Hiroshi
Department of Molecular Genetics Research Institute for Microbial Diseases, Osaka University, 3-1 Yamadaoka, Suita City, Osaka 565-0871, Japan.
Department of Pharmacy, Hyogo University of Health Sciences, Kobe, Japan.
Sci Rep. 2015 Nov 4;5:16173. doi: 10.1038/srep16173.
Numerical aberration of the centrosome results in chromosome missegregation, eventually leading to chromosomal instability, a hallmark of human tumor malignancy. Large tumor suppressors 1 and 2 (Lats1 and Lats2) are central kinases in the Hippo pathway and regulate development and tumorigenesis by coordinating the balance between cell proliferation and apoptosis. Importantly, Lats1 and Lats2 also play pivotal roles in cell cycle checkpoint and mitosis. The Lats proteins localize at centrosomes, but their centrosomal functions remain elusive. Here, we generated Lats1-null knockout (Lats1(-/-)) mice and established Lats1-null mouse embryonic fibroblasts (MEFs). In Lats1(-/-) MEFs, centrosomes were markedly overduplicated, leading to severe mitotic defects such as chromosome missegregation and cytokinesis failure. We also found that Lats1 physically interacts with Cdc25B phosphatase that localizes both at the centrosome and in the nucleus and regulates the linkage between the centrosome cycle and mitotic progression. Although Lats1 did not phosphorylate Cdc25B, loss of Lats1 in MEFs caused abnormal accumulation of Cdc25B protein and hyperactivation of Cdk2 toward nucleophosmin (NPM/B23), one of the licensing factors involved in centriole duplication. Taken together, these data suggest that Lats1 regulates Cdc25B protein level and subsequent Cdk2 activity, thereby suppressing centrosome overduplication during interphase.
中心体的数值畸变会导致染色体错配,最终导致染色体不稳定,这是人类肿瘤恶性肿瘤的一个标志。大肿瘤抑制因子1和2(Lats1和Lats2)是Hippo信号通路中的核心激酶,通过协调细胞增殖和凋亡之间的平衡来调节发育和肿瘤发生。重要的是,Lats1和Lats2在细胞周期检查点和有丝分裂中也起着关键作用。Lats蛋白定位于中心体,但其中心体功能仍不清楚。在这里,我们生成了Lats1基因敲除(Lats1(-/-))小鼠,并建立了Lats1基因敲除的小鼠胚胎成纤维细胞(MEFs)。在Lats1(-/-) MEFs中,中心体明显过度复制,导致严重的有丝分裂缺陷,如染色体错配和胞质分裂失败。我们还发现,Lats1与Cdc25B磷酸酶发生物理相互作用,Cdc25B磷酸酶定位于中心体和细胞核,并调节中心体周期与有丝分裂进程之间的联系。尽管Lats1没有磷酸化Cdc25B,但MEFs中Lats1的缺失导致Cdc25B蛋白异常积累以及Cdk2对核仁磷酸蛋白(NPM/B23)的过度激活,核仁磷酸蛋白是参与中心粒复制的许可因子之一。综上所述,这些数据表明,Lats1调节Cdc25B蛋白水平及随后的Cdk2活性,从而在间期抑制中心体过度复制。