Priority Organization for Innovation and Excellence, Kumamoto University, Japan; Precursory Research for Embryonic Science and Technology (PRESTO) Program, Japan Science and Technology Agency, Tokyo, Japan.
FEBS J. 2014 Feb;281(4):1159-69. doi: 10.1111/febs.12685. Epub 2014 Jan 9.
Progression into M phase requires inhibition of heterotrimeric PP2A containing the regulatory B55 subunit (PP2A-B55) as well as the activation of cyclin-dependent kinase 1 (Cdk1). α-endosulfine (ENSA)/cyclic AMP-regulated 19 kDa phosphoprotein (ARPP-19) family proteins phosphorylated at S67 by Greatwall kinase bind and inhibit PP2A-B55. This study shows that endogenous kinases phosphorylate not only S67 but also two additional sites in ENSA (T28 and S109) with different kinetics at different cell-cycle stages in Xenopus laevis intact cells and cell-free egg extracts. When assayed in vitro, these phosphorylations had qualitatively and/or quantitatively different effects on inhibition of PP2A-B55 by ENSA. Structural analyses revealed that the most-conserved middle region of ENSA containing S67 physically interacts with PP2A-B55 at the interface of the B55 and C subunits, where the catalytic centre of PP2A is located. As non-phosphorylated ENSA has an intrinsic potential for PP2A-B55 inhibition, these three phosphorylations differentially affect physical interaction of the middle region of ENSA with PP2A-B55. These results suggest that the two additional phosphorylation sites together with S67 allow ENSA to function as a 'stepwise tuner' for PP2A-B55, which may be regulated by multiple cellular signals, rather than a simple 'on/off' switch.
进入 M 期需要抑制含有调节亚基 B55 的三聚体 PP2A(PP2A-B55),同时激活周期蛋白依赖性激酶 1(Cdk1)。α-内磺肽(ENSA)/环腺苷酸调节的 19kDa 磷蛋白(ARPP-19)家族蛋白被钙调蛋白依赖性激酶(Greatwall kinase)磷酸化 S67 后,与 PP2A-B55 结合并抑制其活性。本研究表明,内源性激酶不仅磷酸化 ENSA 的 S67,而且在非洲爪蟾完整细胞和无细胞卵提取物的不同细胞周期阶段,以不同的动力学磷酸化 ENSA 的另外两个位点(T28 和 S109)。在体外进行检测时,这些磷酸化作用对 ENSA 抑制 PP2A-B55 的作用具有定性和/或定量的不同影响。结构分析表明,ENSA 最保守的中间区域包含 S67,与 PP2A-B55 在 B55 和 C 亚基的界面处相互作用,PP2A 的催化中心就位于此处。由于非磷酸化的 ENSA 具有内在的抑制 PP2A-B55 的潜力,这三个磷酸化作用会使 ENSA 中间区域与 PP2A-B55 的物理相互作用产生差异。这些结果表明,另外两个磷酸化位点与 S67 一起使 ENSA 成为 PP2A-B55 的“逐步调谐器”,而不是简单的“开/关”开关,它可能受多种细胞信号的调节。