Wasserman Jason S, Faezov Bulat, Patel Kishan R, Kurimchak Alison N, Palacio Seren M, Fowle Holly, McEwan Brennan C, Xu Qifang, Zhao Ziran, Cressey Lauren, Johnson Neil, Duncan James S, Kettenbach Arminja N, Dunbrack Roland L, Graña Xavier
bioRxiv. 2023 Mar 17:2023.03.06.531310. doi: 10.1101/2023.03.06.531310.
The Ser/Thr protein phosphatase 2A (PP2A) is a highly conserved collection of heterotrimeric holoenzymes responsible for the dephosphorylation of many regulated phosphoproteins. Substrate recognition and the integration of regulatory cues are mediated by B regulatory subunits that are complexed to the catalytic subunit (C) by a scaffold protein (A). PP2A/B55 substrate recruitment was thought to be mediated by charge-charge interactions between the surface of B55α and its substrates. Challenging this view, we recently discovered a conserved SLiM [ ]- -x-x-[ ]- in a range of proteins, including substrates such as the retinoblastoma-related protein p107 and TAU (Fowle 2021;10:e63181). Here we report the identification of this SLiM in FAM122A, an inhibitor of B55α/PP2A. This conserved SLiM is necessary for FAM122A binding to B55α and in cells. Computational structure prediction with predicts an interaction consistent with the mutational and biochemical data and supports a mechanism whereby FAM122A uses the 'SLiM' in the form of a short α-helix to dock to the B55α top groove. In this model, FAM122A spatially constrains substrate access by occluding the catalytic subunit with a second α-helix immediately adjacent to helix 1. Consistently, FAM122A functions as a competitive inhibitor as it prevents binding of substrates in competition assays and the dephosphorylation of CDK substrates by B55α/PP2A in cell lysates. Ablation of FAM122A in human cell lines reduces the rate of proliferation, progression through cell cycle transitions and abrogates G1/S and intra-S phase cell cycle checkpoints. FAM122A-KO in HEK293 cells results in attenuation of CHK1 and CHK2 activation in response to replication stress. Overall, these data strongly suggest that FAM122A is a 'SLiM'-dependent, substrate-competitive inhibitor of B55α/PP2A that suppresses multiple functions of B55α in the DNA damage response and in timely progression through the cell cycle interphase.
丝氨酸/苏氨酸蛋白磷酸酶2A(PP2A)是一种高度保守的异源三聚体全酶集合,负责许多受调控的磷酸化蛋白的去磷酸化。底物识别和调控信号的整合由B调节亚基介导,B调节亚基通过支架蛋白(A)与催化亚基(C)复合。PP2A/B55底物募集被认为是由B55α表面与其底物之间的电荷-电荷相互作用介导的。与这种观点不同的是,我们最近在一系列蛋白质中发现了一个保守的短线性基序(SLiM)[ ]- -x-x-[ ]- ,包括视网膜母细胞瘤相关蛋白p107和TAU等底物(Fowle 2021;10:e63181)。在此,我们报告在FAM122A(一种B55α/PP2A的抑制剂)中鉴定出了这个SLiM。这个保守的SLiM对于FAM122A在体外和细胞内与B55α结合是必需的。用 进行的计算结构预测预测了一种与突变和生化数据一致的相互作用,并支持一种机制,即FAM122A以短α螺旋的形式利用“SLiM”停靠在B55α顶部凹槽。在这个模型中,FAM122A通过用紧邻螺旋1的第二个α螺旋封闭催化亚基,在空间上限制了底物的接近。一致地,FAM122A作为一种竞争性抑制剂起作用,因为它在竞争试验中阻止底物结合,并在细胞裂解物中阻止B55α/PP2A对CDK底物的去磷酸化。在人类细胞系中敲除FAM122A会降低增殖速率、通过细胞周期转换的进程,并消除G1/S和S期内细胞周期检查点。HEK293细胞中的FAM122A基因敲除导致对复制应激的CHK1和CHK2激活减弱。总体而言,这些数据强烈表明FAM122A是一种依赖于“SLiM”的、底物竞争性的B55α/PP2A抑制剂,它在DNA损伤反应和细胞周期间期的及时进程中抑制B55α的多种功能。