Institute of Basic Medical Sciences, College of Medicine, National Cheng Kung University, Tainan 704, Taiwan.
J Cell Sci. 2013 Nov 1;126(Pt 21):4862-72. doi: 10.1242/jcs.121368. Epub 2013 Aug 22.
Pin1 was the first prolyl isomerase identified that is involved in cell division. The mechanism by which Pin1 acts as a negative regulator of mitotic activity in G2 phase remains unclear. Here, we found that Aurora A can interact with and phosphorylate Pin1 at Ser16, which suppresses the G2/M function of Pin1 by disrupting its binding ability and mitotic entry. Our results also show that phosphorylation of Bora at Ser274 and Ser278 is crucial for binding of Pin1. Through the interaction, Pin1 can alter the cytoplasmic translocation of Bora and promote premature degradation by β-TrCP, which results in a delay in mitotic entry. Together with the results that Pin1 protein levels do not significantly fluctuate during cell-cycle progression and Aurora A suppresses Pin1 G2/M function, our data demonstrate that a gain of Pin1 function can override the Aurora-A-mediated functional suppression of Pin1. Collectively, these results highlight the physiological significance of Aurora-A-mediated Pin1 Ser16 phosphorylation for mitotic entry and the suppression of Pin1 is functionally linked to the regulation of mitotic entry through the Aurora-A-Bora complex.
Pin1 是第一个被鉴定的参与细胞分裂的脯氨酰异构酶。Pin1 在 G2 期作为有丝分裂活性的负调节剂的作用机制尚不清楚。在这里,我们发现 Aurora A 可以与 Pin1 的 Ser16 相互作用并磷酸化它,这通过破坏其结合能力和有丝分裂进入来抑制 Pin1 的 G2/M 功能。我们的结果还表明,Bora 的 Ser274 和 Ser278 磷酸化对于 Pin1 的结合至关重要。通过这种相互作用,Pin1 可以改变 Bora 的细胞质易位,并通过 β-TrCP 促进其过早降解,从而导致有丝分裂进入延迟。与 Pin1 蛋白水平在细胞周期进程中没有明显波动以及 Aurora A 抑制 Pin1 G2/M 功能的结果一致,我们的数据表明 Pin1 功能的获得可以克服 Aurora-A 介导的 Pin1 功能抑制。总之,这些结果强调了 Aurora-A 介导的 Pin1 Ser16 磷酸化对于有丝分裂进入的生理意义,并且通过 Aurora-A-Bora 复合物,Pin1 的抑制在功能上与有丝分裂进入的调节相关联。