Braman Family Breast Cancer Institute, University of Miami Sylvester Comprehensive Cancer Center and Department of Biochemistry and Molecular Biology, UM Miller School of Medicine, Miami, FL, USA.
Cell Cycle. 2009 Nov 1;8(21):3455-61. doi: 10.4161/cc.8.21.9789. Epub 2009 Nov 11.
p27 is a key regulator of cell proliferation. While it opposes cell cycle progression by binding to and inhibiting cyclin E-Cdk2, T157/T198 phosphorylation of p27 promotes its assembly of D-type cyclin-CDKs. In addition to its actions on the cell cycle, p27 regulates CDK-independent cytoplasmic functions. In human cancers, oncogenic activation of the PI3K signaling pathway often results in cytoplasmic mislocalization of p27. Cytoplasmic p27 plays an important role in cell motility and migration; it binds RhoA and modulates activation of the RhoA/ROCK cascade. p27:RhoA binding is facilitated by p27 phosphorylation at threonine 198. Accumulation of cytoplasmic p27 leads to increased cellular motility, a critical event in tumor metastasis. Further characterization of post-translational modifications governing p27 localization and its action on RhoA and the actin cytoskeleton may provide critical insights into human cancer metastasis.
p27 是细胞增殖的关键调节因子。虽然它通过与 cyclin E-Cdk2 结合并抑制 cyclin E-Cdk2 来反对细胞周期进程,但 p27 的 T157/T198 磷酸化促进了 D 型细胞周期蛋白-CDK 的组装。除了对细胞周期的作用外,p27 还调节 CDK 非依赖性细胞质功能。在人类癌症中,PI3K 信号通路的致癌激活通常导致 p27 的细胞质定位错误。细胞质 p27 在细胞运动和迁移中起着重要作用;它与 RhoA 结合并调节 RhoA/ROCK 级联的激活。p27 在苏氨酸 198 的磷酸化促进了 p27 与 RhoA 的结合。细胞质 p27 的积累导致细胞运动性增加,这是肿瘤转移的关键事件。进一步表征调节 p27 定位及其对 RhoA 和肌动蛋白细胞骨架作用的翻译后修饰可能为人类癌症转移提供重要的见解。