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综合蛋白质组学分析揭示了裂殖酵母 clp1/cdc14 磷酸酶的新底物和调节剂。

Comprehensive proteomics analysis reveals new substrates and regulators of the fission yeast clp1/cdc14 phosphatase.

机构信息

Howard Hughes Medical Institute and Department of Cell and Developmental Biology, Vanderbilt University School of Medicine, 1161 21 Avenue South, MCN B2309, Nashville, Tennessee 37232, USA.

出版信息

Mol Cell Proteomics. 2013 May;12(5):1074-86. doi: 10.1074/mcp.M112.025924. Epub 2013 Jan 7.

Abstract

The conserved family of Cdc14 phosphatases targets cyclin-dependent kinase substrates in yeast, mediating late mitotic signaling events. To discover substrates and regulators of the Schizosaccharomyces pombe Cdc14 phosphatase Clp1, TAP-tagged Clp1, and a substrate trapping mutant (Clp1-C286S) were purified from asynchronous and mitotic (prometaphase and anaphase) cells and binding partners were identified by 2D-LC-MS/MS. Over 100 Clp1-interacting proteins were consistently identified, over 70 of these were enriched in Clp1-C286S-TAP (potential substrates) and we and others detected Cdk1 phosphorylation sites in over half (44/73) of these potential substrates. According to GO annotations, Clp1-interacting proteins are involved in many essential cellular processes including mitosis, cytokinesis, ribosome biogenesis, transcription, and trafficking among others. We confirmed association and dephosphorylation of multiple candidate substrates, including a key scaffolding component of the septation initiation network called Cdc11, an essential kinase of the conserved morphogenesis-related NDR kinase network named Shk1, and multiple Mlu1-binding factor transcriptional regulators. In addition, we identified Sal3, a nuclear β-importin, as the sole karyopherin required for Clp1 nucleoplasmic shuttling, a key mode of Cdc14 phosphatase regulation. Finally, a handful of proteins were more abundant in wild type Clp1-TAP versus Clp1-C286S-TAP, suggesting that they may directly regulate Clp1 signaling or serve as scaffolding platforms to localize Clp1 activity.

摘要

保守的 Cdc14 磷酸酶家族在酵母中靶向细胞周期蛋白依赖性激酶底物,介导有丝分裂后期信号事件。为了发现裂殖酵母 Cdc14 磷酸酶 Clp1 的底物和调节剂,用 TAP 标记 Clp1 和一个底物捕获突变体(Clp1-C286S)从异步和有丝分裂(早前期和后期)细胞中纯化,并用 2D-LC-MS/MS 鉴定结合伙伴。一致鉴定出超过 100 种 Clp1 相互作用蛋白,其中超过 70 种在 Clp1-C286S-TAP 中富集(潜在底物),我们和其他人在超过一半(44/73)的这些潜在底物中检测到 Cdk1 磷酸化位点。根据 GO 注释,Clp1 相互作用蛋白参与许多重要的细胞过程,包括有丝分裂、胞质分裂、核糖体生物发生、转录和运输等。我们证实了多个候选底物的关联和去磷酸化,包括有丝分裂起始网络的关键支架成分 Cdc11、保守形态发生相关 NDR 激酶网络的必需激酶 Shk1 以及多个 Mlu1 结合因子转录调节剂。此外,我们还鉴定出核β-输入蛋白 Sal3 是 Clp1 核质穿梭所必需的唯一核孔蛋白伴侣,这是 Cdc14 磷酸酶调节的关键模式。最后,有少数蛋白质在野生型 Clp1-TAP 中比在 Clp1-C286S-TAP 中更为丰富,这表明它们可能直接调节 Clp1 信号或作为支架平台来定位 Clp1 活性。

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