Shen M, Stukenberg P T, Kirschner M W, Lu K P
Cancer Biology Program, Division of Hematology/Oncology, Department of Medicine, Beth Israel Deaconess Medical Center and Division on Aging, Harvard Medical School, Boston, Massachusetts 02215 USA.
Genes Dev. 1998 Mar 1;12(5):706-20. doi: 10.1101/gad.12.5.706.
Phosphorylation of mitotic proteins on the Ser/Thr-Pro motifs has been shown to play an important role in regulating mitotic progression. Pin1 is a novel essential peptidyl-prolyl isomerase (PPIase) that inhibits entry into mitosis and is also required for proper progression through mitosis, but its substrate(s) and function(s) remain to be determined. Here we report that in both human cells and Xenopus extracts, Pin1 interacts directly with a subset of mitotic phosphoproteins on phosphorylated Ser/Thr-Pro motifs in a phosphorylation-dependent and mitosis-specific manner. Many of these Pin1-binding proteins are also recognized by the monoclonal antibody MPM-2, and they include the important mitotic regulators Cdc25, Myt1, Wee1, Plk1, and Cdc27. The importance of this Pin1 interaction was tested by constructing two Pin1 active site point mutants that fail to bind a phosphorylated Ser/Thr-Pro motif in mitotic phosphoproteins. Wild-type, but not mutant, Pin1 inhibits both mitotic division in Xenopus embryos and entry into mitosis in Xenopus extracts. We have examined the interaction between Pin1 and Cdc25 in detail. Pin1 not only binds the mitotic form of Cdc25 on the phosphorylation sites important for its activity in vitro and in vivo, but it also inhibits its activity, offering one explanation for the ability of Pin1 to inhibit mitotic entry. In a separate paper, we have shown that Pin1 is a phosphorylation-dependent PPIase that can recognize specifically the phosphorylated Ser/Thr-Pro bonds present in mitotic phosphoproteins. Thus, Pin1 likely acts as a general regulator of mitotic proteins that have been phosphorylated by Cdc2 and other mitotic kinases.
有丝分裂蛋白在丝氨酸/苏氨酸-脯氨酸基序上的磷酸化已被证明在调节有丝分裂进程中起重要作用。Pin1是一种新型的必需肽基脯氨酰异构酶(PPIase),它抑制进入有丝分裂,并且在有丝分裂的正常进程中也是必需的,但其底物和功能仍有待确定。在此我们报告,在人类细胞和非洲爪蟾提取物中,Pin1以磷酸化依赖性和有丝分裂特异性方式直接与磷酸化丝氨酸/苏氨酸-脯氨酸基序上的一部分有丝分裂磷酸化蛋白相互作用。许多这些Pin1结合蛋白也被单克隆抗体MPM-2识别,它们包括重要的有丝分裂调节因子Cdc25、Myt1、Wee1、Plk1和Cdc27。通过构建两个不能与有丝分裂磷酸化蛋白中的磷酸化丝氨酸/苏氨酸-脯氨酸基序结合的Pin1活性位点点突变体,测试了这种Pin1相互作用的重要性。野生型而非突变型Pin1抑制非洲爪蟾胚胎中的有丝分裂以及非洲爪蟾提取物中进入有丝分裂。我们详细研究了Pin1与Cdc25之间的相互作用。Pin1不仅在体外和体内对其活性重要的磷酸化位点结合有丝分裂形式的Cdc25,而且还抑制其活性,这为Pin1抑制有丝分裂进入的能力提供了一种解释。在另一篇论文中,我们表明Pin1是一种磷酸化依赖性PPIase,它可以特异性识别存在于有丝分裂磷酸化蛋白中的磷酸化丝氨酸/苏氨酸-脯氨酸键。因此,Pin1可能作为已被Cdc2和其他有丝分裂激酶磷酸化的有丝分裂蛋白的一般调节因子发挥作用。