Department of Molecular Microbiology and Immunology, University of Missouri, Columbia, Missouri, USA.
PLoS One. 2013 Jul 22;8(7):e69133. doi: 10.1371/journal.pone.0069133. Print 2013.
Protein phosphatase-1 (PP1) controls many processes in eukaryotic cells. Modulation of mitosis by reversing phosphorylation of proteins phosphorylated by aurora protein kinase is a critical function for PP1. Overexpression of the sole PP1, Glc7, in budding yeast, Saccharomyces cerevisiae, is lethal. This work shows that lethality requires the function of Glc7 regulatory proteins Sds22, Reg2, and phosphorylated Glc8. This finding shows that Glc7 overexpression induced cell death requires a specific subset of the many Glc7-interacting proteins and therefore is likely caused by promiscuous dephosphorylation of a variety of substrates. Additionally, suppression can occur by reducing Glc7 protein levels by high-copy Fpr3 without use of its proline isomerase domain. This divulges a novel function of Fpr3. Most suppressors of GLC7 overexpression also suppress aurora protein kinase, ipl1, temperature-sensitive mutations. However, high-copy mutant SDS22 genes show reciprocal suppression of GLC7 overexpression induced cell death or ipl1 temperature sensitivity. Sds22 binds to many proteins besides Glc7. The N-terminal 25 residues of Sds22 are sufficient to bind, directly or indirectly, to seven proteins studied here including the spindle assembly checkpoint protein, Bub3. These data demonstrate that Sds22 organizes several proteins in addition to Glc7 to perform functions that counteract Ipl1 activity or lead to hyper Glc7 induced cell death. These data also emphasize that Sds22 targets Glc7 to nuclear locations distinct from Ipl1 substrates.
蛋白磷酸酶-1(PP1)控制着真核细胞中的许多过程。通过逆转极光激酶磷酸化的蛋白质的磷酸化来调节有丝分裂,是 PP1 的一个关键功能。在酿酒酵母中过表达唯一的 PP1,Glc7,是致命的。这项工作表明,致死性需要 Glc7 调节蛋白 Sds22、Reg2 和磷酸化 Glc8 的功能。这一发现表明,Glc7 过表达诱导的细胞死亡需要 Glc7 相互作用蛋白的特定子集,因此很可能是由于各种底物的非特异性去磷酸化引起的。此外,通过高拷贝 Fpr3 降低 Glc7 蛋白水平而不使用其脯氨酸异构酶结构域也可以抑制。这揭示了 Fpr3 的一个新功能。大多数 GLC7 过表达的抑制子也抑制极光激酶、ipl1、温度敏感突变。然而,高拷贝突变 SDS22 基因显示出对 GLC7 过表达诱导的细胞死亡或 ipl1 温度敏感性的相互抑制。Sds22 除了 Glc7 之外还与许多蛋白质结合。Sds22 的 N 端 25 个残基足以直接或间接地与这里研究的七种蛋白质结合,包括纺锤体组装检查点蛋白 Bub3。这些数据表明,Sds22 除了 Glc7 之外,还组织了几种蛋白质来执行抵消 Ipl1 活性或导致 Glc7 诱导的细胞死亡的功能。这些数据还强调,Sds22 将 Glc7 靶向到不同于 Ipl1 底物的核定位。