PLK1 的 polo 盒结构域中一个隐蔽的疏水性口袋调节底物识别和有丝分裂染色体分离。
A cryptic hydrophobic pocket in the polo-box domain of the polo-like kinase PLK1 regulates substrate recognition and mitotic chromosome segregation.
机构信息
The Medical Research Council Cancer Unit, University of Cambridge, Hills Road, Cambridge, CB2 0XZ, United Kingdom.
Department of Biochemistry, University of Cambridge, 80 Tennis Court Road, Cambridge, CB2 1GA, United Kingdom.
出版信息
Sci Rep. 2019 Nov 4;9(1):15930. doi: 10.1038/s41598-019-50702-2.
The human polo-like kinase PLK1 coordinates mitotic chromosome segregation by phosphorylating multiple chromatin- and kinetochore-binding proteins. How PLK1 activity is directed to specific substrates via phosphopeptide recognition by its carboxyl-terminal polo-box domain (PBD) is poorly understood. Here, we combine molecular, structural and chemical biology to identify a determinant for PLK1 substrate recognition that is essential for proper chromosome segregation. We show that mutations ablating an evolutionarily conserved, Tyr-lined pocket in human PLK1 PBD trigger cellular anomalies in mitotic progression and timing. Tyr pocket mutations selectively impair PLK1 binding to the kinetochore phosphoprotein substrate PBIP1, but not to the centrosomal substrate NEDD1. Through a structure-guided approach, we develop a small-molecule inhibitor, Polotyrin, which occupies the Tyr pocket. Polotyrin recapitulates the mitotic defects caused by mutations in the Tyr pocket, further evidencing its essential function, and exemplifying a new approach for selective PLK1 inhibition. Thus, our findings support a model wherein substrate discrimination via the Tyr pocket in the human PLK1 PBD regulates mitotic chromosome segregation to preserve genome integrity.
人类 Polo 样激酶 PLK1 通过磷酸化多种染色质和着丝粒结合蛋白来协调有丝分裂染色体分离。PLK1 活性如何通过其羧基末端 Polo 框结构域(PBD)对磷酸肽的识别来定向到特定的底物,这一点知之甚少。在这里,我们结合分子、结构和化学生物学来鉴定 PLK1 底物识别的决定因素,该决定因素对于正确的染色体分离至关重要。我们表明,在人类 PLK1 PBD 中消除一个进化上保守的、由 Tyr 线组成的口袋会触发有丝分裂进程和时间的细胞异常。Tyr 口袋突变选择性地损害了 PLK1 与着丝粒磷酸蛋白底物 PBIP1 的结合,而不影响中心体底物 NEDD1。通过结构导向方法,我们开发了一种小分子抑制剂 Polotyrin,它占据了 Tyr 口袋。Polotyrin 再现了 Tyr 口袋突变引起的有丝分裂缺陷,进一步证明了其重要功能,并例证了一种选择性 PLK1 抑制的新方法。因此,我们的发现支持这样一种模型,即人类 PLK1 PBD 中的 Tyr 口袋通过底物识别来调节有丝分裂染色体分离,以保持基因组完整性。