Department of Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus, Aurora, Colorado, USA; Medical Scientist Training Program, University of Colorado Anschutz Medical Campus, Aurora, Colorado, USA; Molecular Biology Program, University of Colorado Anschutz Medical Campus, Aurora, Colorado, USA.
Department of Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus, Aurora, Colorado, USA.
J Biol Chem. 2024 Jul;300(7):107408. doi: 10.1016/j.jbc.2024.107408. Epub 2024 May 23.
The eyes absent (Eya) proteins were first identified as co-activators of the six homeobox family of transcription factors and are critical in embryonic development. These proteins are also re-expressed in cancers after development is complete, where they drive tumor progression. We have previously shown that the Eya3 N-terminal domain (NTD) contains Ser/Thr phosphatase activity through an interaction with the protein phosphatase 2A (PP2A)-B55α holoenzyme and that this interaction increases the half-life of Myc through pT58 dephosphorylation. Here, we showed that Eya3 directly interacted with the NTD of Myc, recruiting PP2A-B55α to Myc. We also showed that Eya3 increased the Ser/Thr phosphatase activity of PP2A-B55α but not PP2A-B56α. Furthermore, we demonstrated that the NTD (∼250 amino acids) of Eya3 was completely disordered, and it used a 38-residue segment to interact with B55α. In addition, knockdown and phosphoproteomic analyses demonstrated that Eya3 and B55α affected highly similar phosphosite motifs with a preference for Ser/Thr followed by Pro, consistent with Eya3's apparent Ser/Thr phosphatase activity being mediated through its interaction with PP2A-B55α. Intriguingly, mutating this Pro to other amino acids in a Myc peptide dramatically increased dephosphorylation by PP2A. Not surprisingly, Myc, a naturally occurring mutation hotspot in several cancers, enhanced Eya3-PP2A-B55α-mediated dephosphorylation of pT58 on Myc, leading to increased Myc stability and cell proliferation, underscoring the critical role of this phosphosite in regulating Myc stability.
Eya 蛋白最初被鉴定为六个同源盒转录因子家族的共激活因子,在胚胎发育过程中起着关键作用。这些蛋白在发育完成后也在癌症中重新表达,在那里它们推动肿瘤的进展。我们之前已经表明,Eya3 的 N 端结构域 (NTD) 通过与蛋白磷酸酶 2A (PP2A)-B55α 全酶的相互作用含有 Ser/Thr 磷酸酶活性,并且这种相互作用通过 pT58 去磷酸化增加 Myc 的半衰期。在这里,我们表明 Eya3 直接与 Myc 的 NTD 相互作用,招募 PP2A-B55α 到 Myc 上。我们还表明,Eya3 增加了 PP2A-B55α 的 Ser/Thr 磷酸酶活性,但不是 PP2A-B56α。此外,我们证明了 Eya3 的 NTD(约 250 个氨基酸)完全无序,它使用 38 个残基片段与 B55α 相互作用。此外,敲低和磷酸蛋白质组学分析表明,Eya3 和 B55α 影响高度相似的磷酸化基序,优先为 Ser/Thr,其次为 Pro,与 Eya3 的明显 Ser/Thr 磷酸酶活性通过其与 PP2A-B55α 的相互作用介导一致。有趣的是,在 Myc 肽中,将这个 Pro 突变为其他氨基酸会显著增加 PP2A 的去磷酸化。毫不奇怪,Myc 是几种癌症中自然发生的突变热点,增强了 Eya3-PP2A-B55α 介导的 Myc 上 pT58 的去磷酸化,导致 Myc 稳定性和细胞增殖增加,强调了这个磷酸化位点在调节 Myc 稳定性方面的关键作用。