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PP1 and PP2A Use Opposite Phospho-dependencies to Control Distinct Processes at the Kinetochore.PP1 和 PP2A 通过相反的磷酸化依赖性来控制着动粒上的不同过程。
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2
PPM1G forms a PPP-type phosphatase holoenzyme with B56δ that maintains adherens junction integrity.PPM1G 与 B56δ 形成 PPP 型磷酸酶全酶,维持黏着连接的完整性。
EMBO Rep. 2019 Oct 4;20(10):e46965. doi: 10.15252/embr.201846965. Epub 2019 Aug 21.
3
Protein Phosphatase 2A: More Than a Passenger in the Regulation of Epithelial Cell-Cell Junctions.蛋白磷酸酶2A:上皮细胞间连接调控中的作用不止于过客
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4
Division of labour between PP2A-B56 isoforms at the centromere and kinetochore.PP2A-B56 同工型在着丝粒和动粒的分工。
Elife. 2019 Mar 4;8:e42619. doi: 10.7554/eLife.42619.
5
Protocol Update for large-scale genome and gene function analysis with the PANTHER classification system (v.14.0).PANTHER 分类系统(版本 14.0)进行大规模基因组和基因功能分析的方案更新。
Nat Protoc. 2019 Mar;14(3):703-721. doi: 10.1038/s41596-019-0128-8. Epub 2019 Feb 25.
6
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7
STRING v11: protein-protein association networks with increased coverage, supporting functional discovery in genome-wide experimental datasets.STRING v11:具有增强覆盖范围的蛋白质-蛋白质相互作用网络,支持在全基因组实验数据集的功能发现。
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8
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Nucleic Acids Res. 2019 Jan 8;47(D1):D419-D426. doi: 10.1093/nar/gky1038.
9
Proteomic and Phosphoproteomic Changes Induced by Prolonged Activation of Human Eosinophils with IL-3.IL-3 延长激活人嗜酸性粒细胞诱导的蛋白质组学和磷酸化蛋白质组学变化。
J Proteome Res. 2018 Jun 1;17(6):2102-2111. doi: 10.1021/acs.jproteome.8b00057. Epub 2018 May 4.
10
PP2A-B' holoenzyme substrate recognition, regulation and role in cytokinesis.PP2A-B' 全酶在胞质分裂中的底物识别、调控及作用
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降低蛋白磷酸酶 2A(PP2A)复合物的复杂性揭示了 PP2A/B'δ 全酶的细胞功能和去磷酸化基序。

Reduction of protein phosphatase 2A (PP2A) complexity reveals cellular functions and dephosphorylation motifs of the PP2A/B'δ holoenzyme.

机构信息

Department of Neuroscience and Pharmacology and Iowa Neuroscience Institute, University of Iowa, Iowa City, Iowa 52242.

Michael Hooker Proteomics Facility, University of North Carolina, Chapel Hill, North Carolina 27516.

出版信息

J Biol Chem. 2020 Apr 24;295(17):5654-5668. doi: 10.1074/jbc.RA119.011270. Epub 2020 Mar 10.

DOI:10.1074/jbc.RA119.011270
PMID:32156701
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7186168/
Abstract

Protein phosphatase 2A (PP2A) is a large enzyme family responsible for most cellular Ser/Thr dephosphorylation events. PP2A substrate specificity, localization, and regulation by second messengers rely on more than a dozen regulatory subunits (including B/R2, B'/R5, and B″/R3), which form the PP2A heterotrimeric holoenzyme by associating with a dimer comprising scaffolding (A) and catalytic (C) subunits. Because of partial redundancy and high endogenous expression of PP2A holoenzymes, traditional approaches of overexpressing, knocking down, or knocking out PP2A regulatory subunits have yielded only limited insights into their biological roles and substrates. To this end, here we sought to reduce the complexity of cellular PP2A holoenzymes. We used tetracycline-inducible expression of pairs of scaffolding and regulatory subunits with complementary charge-reversal substitutions in their interaction interfaces. For each of the three regulatory subunit families, we engineered A/B charge-swap variants that could bind to one another, but not to endogenous A and B subunits. Because endogenous Aα was targeted by a co-induced shRNA, endogenous B subunits were rapidly degraded, resulting in expression of predominantly a single PP2A heterotrimer composed of the A/B charge-swap pair and the endogenous catalytic subunit. Using B'δ/PPP2R5D, we show that PP2A complexity reduction, but not PP2A overexpression, reveals a role of this holoenzyme in suppression of extracellular signal-regulated kinase signaling and protein kinase A substrate dephosphorylation. When combined with global phosphoproteomics, the PP2A/B'δ reduction approach identified consensus dephosphorylation motifs in its substrates and suggested that residues surrounding the phosphorylation site play roles in PP2A substrate specificity.

摘要

蛋白磷酸酶 2A(PP2A)是一个大型酶家族,负责大多数细胞 Ser/Thr 去磷酸化事件。PP2A 底物特异性、定位和第二信使的调节依赖于十几个调节亚基(包括 B/R2、B'/R5 和 B″/R3),它们通过与由支架(A)和催化(C)亚基组成的二聚体结合形成 PP2A 异源三聚体全酶。由于 PP2A 全酶的部分冗余和高内源性表达,传统的过表达、敲低或敲除 PP2A 调节亚基的方法仅对其生物学作用和底物产生了有限的认识。为此,我们试图降低细胞 PP2A 全酶的复杂性。我们使用四环素诱导表达成对的支架和调节亚基,它们在相互作用界面上具有互补的电荷反转取代。对于三个调节亚基家族中的每一个,我们设计了 A/B 电荷交换变体,它们可以相互结合,但不能与内源性 A 和 B 亚基结合。由于内源性 Aα 被共诱导的 shRNA 靶向,内源性 B 亚基迅速降解,导致主要表达由 A/B 电荷交换对和内源性催化亚基组成的单个 PP2A 异源三聚体。使用 B'δ/PPP2R5D,我们表明,PP2A 复杂性降低,而不是 PP2A 过表达,揭示了这种全酶在抑制细胞外信号调节激酶信号和蛋白激酶 A 底物去磷酸化中的作用。当与全局磷酸蛋白质组学结合使用时,PP2A/B'δ 降低方法在其底物中确定了共识去磷酸化基序,并表明磷酸化位点周围的残基在 PP2A 底物特异性中起作用。