Xing Yongna, Li Zhu, Chen Yu, Stock Jeffry B, Jeffrey Philip D, Shi Yigong
Department of Molecular Biology, Princeton University, Lewis Thomas Laboratory, Princeton, NJ 08544, USA.
Cell. 2008 Apr 4;133(1):154-63. doi: 10.1016/j.cell.2008.02.041.
Protein phosphatase 2A (PP2A) is an important serine/threonine phosphatase that plays a role in many biological processes. Reversible carboxyl methylation of the PP2A catalytic subunit is an essential regulatory mechanism for its function. Demethylation and negative regulation of PP2A is mediated by a PP2A-specific methylesterase PME-1, which is conserved from yeast to humans. However, the underlying mechanism of PME-1 function remains enigmatic. Here we report the crystal structures of PME-1 by itself and in complex with a PP2A heterodimeric core enzyme. The structures reveal that PME-1 directly binds to the active site of PP2A and that this interaction results in the activation of PME-1 by rearranging the catalytic triad into an active conformation. Strikingly, these interactions also lead to inactivation of PP2A by evicting the manganese ions that are required for the phosphatase activity of PP2A. These observations identify a dual role of PME-1 that regulates PP2A activation, methylation, and holoenzyme assembly in cells.
蛋白磷酸酶2A(PP2A)是一种重要的丝氨酸/苏氨酸磷酸酶,在许多生物学过程中发挥作用。PP2A催化亚基的可逆羧基甲基化是其功能的一种重要调节机制。PP2A特异性甲酯酶PME-1介导PP2A的去甲基化和负调控,该酶从酵母到人类都保守存在。然而,PME-1功能的潜在机制仍然不明。在此,我们报道了PME-1自身以及与PP2A异源二聚体核心酶复合物的晶体结构。这些结构表明,PME-1直接结合到PP2A的活性位点,并且这种相互作用通过将催化三联体重排成活性构象而导致PME-1活化。令人惊讶的是,这些相互作用还通过逐出PP2A磷酸酶活性所需的锰离子而导致PP2A失活。这些观察结果确定了PME-1在细胞中调节PP2A活化、甲基化和全酶组装的双重作用。