Alberts A S, Thorburn A M, Shenolikar S, Mumby M C, Feramisco J R
Department of Medicine, University of California, San Diego, La Jolla 92093-0636.
Proc Natl Acad Sci U S A. 1993 Jan 15;90(2):388-92. doi: 10.1073/pnas.90.2.388.
Decreased affinity of the retinoblastoma protein (RB) for the nuclear compartment has been correlated with cell cycle-dependent phosphorylation of the RB protein during the G1/S phase of the cell cycle. We examined the effects of microinjected protein-serine/threonine phosphatases types 1 (PP1) and 2A (PP2A) on nuclear association of RB monitored as the resistance of RB to extraction at the G1/S transition. Microinjection of PP1 into either the nucleus or the cytoplasm of cells synchronized in G1 increased the amount of RB that was resistant to extraction from the nucleus. Microinjection of PP2A, however, required direct injection into the nucleus to generate this effect. In addition, we found that nuclear injection of only the PP2A catalytic subunit (PP2AC) and not the complex containing the A and C subunits inhibited RB extraction. Microinjection of either PP1 or PP2A and the resultant increased affinity of RB for the nucleus corresponded with the inhibition of cell cycle progression into S phase. Injection of either phosphatase into cells that had entered S phase did not block DNA synthesis, suggesting that the effect of the injected phosphatases on cell cycle arrest was specific. In vitro biochemical studies with purified PP1 and PP2A showed that intact RB protein phosphorylated by cdc2 kinase served as a substrate for both protein phosphatases. Our results suggest that protein phosphatases may be important regulators of RB function and support the idea that cell cycle progression is regulated by the phosphorylation state of the RB protein.
视网膜母细胞瘤蛋白(RB)与细胞核区室的亲和力降低,这与细胞周期G1/S期RB蛋白的细胞周期依赖性磷酸化有关。我们研究了显微注射1型蛋白丝氨酸/苏氨酸磷酸酶(PP1)和2A型蛋白丝氨酸/苏氨酸磷酸酶(PP2A)对RB核结合的影响,通过监测RB在G1/S转换时对提取的抗性来进行评估。将PP1显微注射到G1期同步化细胞的细胞核或细胞质中,增加了对从细胞核中提取具有抗性的RB量。然而,PP2A的显微注射需要直接注入细胞核才能产生这种效果。此外,我们发现仅将PP2A催化亚基(PP2AC)而非包含A和C亚基的复合物注入细胞核会抑制RB的提取。PP1或PP2A的显微注射以及由此导致的RB对细胞核亲和力增加,与细胞周期进入S期的抑制相对应。将任何一种磷酸酶注入已进入S期的细胞中并不会阻断DNA合成,这表明注入的磷酸酶对细胞周期停滞的影响是特异性的。用纯化的PP1和PP2A进行的体外生化研究表明,被cdc2激酶磷酸化的完整RB蛋白是这两种蛋白磷酸酶的底物。我们的结果表明,蛋白磷酸酶可能是RB功能的重要调节因子,并支持细胞周期进程受RB蛋白磷酸化状态调节的观点。