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Identification of Candidate Casein Kinase 2 Substrates in Mitosis by Quantitative Phosphoproteomics

机译:通过定量磷酸化蛋白质组学鉴定有丝分裂中的候选酪蛋白激酶2底物

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摘要

Protein phosphorylation is a crucial regulatory mechanism that controls many aspects of cellular signaling. Casein kinase 2 (CK2), a constitutively expressed and active kinase, plays key roles in an array of cellular events including transcription and translation, ribosome biogenesis, cell cycle progression, and apoptosis. CK2 is implicated in cancerous transformation and is a therapeutic target in anti-cancer therapy. The specific and selective CK2 ATP competitive inhibitor, CX-4945 (silmitaseratib), is currently in phase 2 clinical trials. While many substrates and interactors of CK2 have been identified, less is known about CK2 substrates in mitosis. In the present work, we utilize CX-4945 and quantitative phosphoproteomics to inhibit CK2 activity in mitotically arrested HeLa cells and determine candidate CK2 substrates. We identify 330 phosphorylation sites on 202 proteins as significantly decreased in abundance upon inhibition of CK2 activity. Motif analysis of decreased sites reveals a linear kinase motif with aspartic and glutamic amino acids downstream of the phosphorylated residues, which is consistent with known substrate preferences for CK2. To validate specific candidate CK2 substrates, we perform in vitro kinase assays using purified components. Furthermore, we identified CK2 interacting proteins by affinity purification-mass spectrometry (AP-MS). To investigate the biological processes regulated by CK2 in mitosis, we perform network analysis and identify an enrichment of proteins involved in chromosome condensation, chromatin organization, and RNA processing. We demonstrate that overexpression of CK2 in HeLa cells affects proper chromosome condensation. Previously, we found that phosphoprotein phosphatase 6 (PP6), but not phosphoprotein phosphatase 2A (PP2A), opposes CK2 phosphorylation of the condensin I complex, which is essential for chromosome condensation. Here, we extend this observation and demonstrate that PP6 opposition of CK2 is a more general cellular regulatory mechanism.
机译:蛋白质磷酸化是控制细胞信号传导许多方面的关键调节机制。酪蛋白激酶2(CK2),一种组成型表达和活性激酶,在一系列细胞事件中起关键作用,包括转录和翻译,核糖体生物发生,细胞周期进程和凋亡。 CK2涉及癌变,并且是抗癌治疗中的治疗靶标。特异性和选择性CK2 ATP竞争性抑制剂CX-4945(silmitaseratib)目前处于2期临床试验中。尽管已经确定了CK2的许多底物和相互作用因子,但对有丝分裂中CK2底物的了解却很少。在本工作中,我们利用CX-4945和定量磷酸化蛋白质组学技术来抑制有丝分裂阻滞的HeLa细胞中的CK2活性,并确定候选CK2底物。我们发现202蛋白上的330个磷酸化位点在抑制CK2活性后大量减少。对减少的位点的基序分析揭示了在磷酸化残基下游具有天冬氨酸和谷氨酸氨基酸的线性激酶基序,这与已知的CK2底物偏好相一致。为了验证特定的候选CK2底物,我们使用纯化的成分进行了体外激酶测定。此外,我们通过亲和纯化质谱法(AP-MS)鉴定了CK2相互作用蛋白。为了研究CK2在有丝分裂中调控的生物学过程,我们进行了网络分析,并鉴定了参与染色体浓缩,染色质组织和RNA处理的蛋白质的富集。我们证明,HeLa细胞中CK2的过表达影响适当的染色体浓缩。以前,我们发现磷蛋白磷酸酶6(PP6)而不是磷蛋白磷酸酶2A(PP2A)与凝集素I复合物的CK2磷酸化相反,这对于染色体浓缩至关重要。在这里,我们扩展了这一观察结果,并证明了PP6对CK2的反对是一种更普遍的细胞调节机制。

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