Lesage Bart, Beullens Monique, Pedelini Leda, Garcia-Gimeno Maria Adelaida, Waelkens Etienne, Sanz Pascual, Bollen Mathieu
Laboratory of Biosignaling and Therapeutics, Department of Molecular Cell Biology, Faculty of Medicine, Catholic University of Leuven, B-3000 Leuven, Belgium.
Biochemistry. 2007 Aug 7;46(31):8909-19. doi: 10.1021/bi7003119. Epub 2007 Jul 14.
Protein Ser/Thr phosphatase-1 (PP1) associates with a host of proteins to form substrate-specific holoenzymes. Sds22 and Inhibitor-3 (I3) are two independently described ancient interactors of PP1. We show here by various approaches that Sds22 and I3 form a heterotrimeric complex with PP1, both in cell lysates and after purification. The stability of the complex depended on functional PP1 interaction sites in Sds22 and I3, indicating that PP1 is sandwiched between Sds22 and I3. Intriguingly, I3 could not be replaced in this complex by another PP1 interactor with the same PP1 binding motif. In vitro, Sds22 and I3 were potent inhibitors of PP1, but with only some substrates. The inhibition by Sds22 could be reproduced with synthetic Sds22 fragments comprising leucine-rich repeats (LRR) 2 and 5. Sds22 and LRR5 also slowly converted PP1 into a conformation that was inactive with all tested substrates. Cell lysates that were prepared under conditions that prevented the Sds22-induced inactivation of PP1 contained a catalytically inactive complex of Sds22, PP1, and I3, indicating that this complex exists in vivo. Therefore, our studies show that a pool of PP1 is complexly controlled by both Sds22 and I3.
蛋白丝氨酸/苏氨酸磷酸酶-1(PP1)与多种蛋白质结合形成底物特异性全酶。Sds22和抑制剂-3(I3)是两个独立描述的PP1古老相互作用蛋白。我们在此通过各种方法表明,Sds22和I3在细胞裂解物中以及纯化后均与PP1形成异源三聚体复合物。该复合物的稳定性取决于Sds22和I3中功能性PP1相互作用位点,这表明PP1夹在Sds22和I3之间。有趣的是,在该复合物中,I3不能被具有相同PP1结合基序的另一个PP1相互作用蛋白取代。在体外,Sds22和I3是PP1的有效抑制剂,但仅对某些底物有效。Sds22的抑制作用可以用包含富含亮氨酸重复序列(LRR)2和5的合成Sds22片段重现。Sds22和LRR5还能缓慢地将PP1转变为对所有测试底物均无活性的构象。在防止Sds22诱导的PP1失活的条件下制备细胞裂解物,其中含有Sds22、PP1和I3的催化无活性复合物,这表明该复合物存在于体内。因此,我们的研究表明,一部分PP1受到Sds22和I3的复杂调控。