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磺哌嗪对肽基脯氨酰异构酶Pin1的共价抑制作用对人骨肉瘤U2-OS细胞的磷酸化蛋白质组产生广泛影响。

Covalent Inhibition of the Peptidyl-Prolyl Isomerase Pin1 by Sulfopin Results in a Broad Impact on the Phosphoproteome of Human Osteosarcoma U2-OS Cells.

作者信息

Roffey Scott E, Hovey Owen, Jurcic Kristina, Lu Kun Ping, Zhou Xiao Zhen, Litchfield David W

机构信息

Department of Biochemistry, Schulich School of Medicine & Dentistry, Western University, London, Ontario, Canada.

Department of Oncology, Schulich School of Medicine & Dentistry, Western University, London, Ontario, Canada.

出版信息

Proteomics. 2025 Jun 23:e13980. doi: 10.1002/pmic.13980.

Abstract

Peptidyl-prolyl isomerase, NIMA-interacting protein 1-(Pin1) catalyses the cis-trans interconversion of the inflexible bond between serine or threonine residues and proline at the +1 position (pSer/pThr-Pro). Although initially discovered as an essential regulator of cell division, Pin1 has since been identified as a regulator of many biological processes and is associated with numerous malignancies and neurodegenerative disorders. Pin1 has been shown to influence phosphorylation by modulating phosphatase accessibility. However, it can also indirectly regulate phosphorylation by isomerizing peptidyl-prolyl bonds on kinases, affecting their subcellular localization and/or substrate specificity. Here, SILAC-based mass spectrometry was employed to identify proteomic and phosphoproteomic changes in human osteosarcoma human osteosarcoma cell line (U2-OS) cells in response to treatment with the selective covalent Pin1 inhibitor Sulfopin. We confirmed that Sulfopin covalently binds Pin1 and profiled Pin1-dependent changes to the proteome and phosphoproteome, identifying 803 phosphosites that underwent significant Sulfopin-dependent changes. The identified phosphosites include substrates for a number of distinct kinases, including protein kinase B (AKT1), aurora kinase A (AURKA), cyclin-dependent kinase (CDK)1 and CK2. Overall, this study reveals the broad impact of Sulfopin on the phosphoproteome, improving our understanding of how Pin1 modulates complex regulatory kinase networks in living cells. SUMMARY: The peptidyl-prolyl isomerase (PPIase) Pin1 has emerged as a potential therapeutic target for numerous malignancies and neurodegenerative disorders based on its altered expression in several diseases. As the activity of Pin1 is phosphorylation-dependent, it is intimately involved with constituents of regulatory kinase networks within cells. To elucidate how Pin1 orchestrates regulatory signalling within cells, we performed quantitative proteomic and phosphoproteomic profiling of SILAC-labelled human osteosarcoma U2-OS cells treated with Sulfopin, a highly selective covalent Pin1 inhibitor. In addition to demonstrating that Pin1 inhibition alters the abundance and phosphorylation of proteins involved in a variety of fundamental cellular processes, these studies revealed that Pin1 inhibition modulates the phosphorylation of 803 phosphorylation sites, ultimately improving our understanding of how a PPIase regulates phosphorylation networks in complex biological systems.

摘要

肽基脯氨酰异构酶,NIMA相互作用蛋白1(Pin1)催化丝氨酸或苏氨酸残基与+1位脯氨酸之间(pSer/pThr-Pro)刚性键的顺反异构化。尽管Pin1最初被发现是细胞分裂的重要调节因子,但此后它被确定为许多生物过程的调节因子,并与多种恶性肿瘤和神经退行性疾病相关。研究表明,Pin1可通过调节磷酸酶的可及性来影响磷酸化。然而,它也可以通过使激酶上的肽基脯氨酰键异构化,间接调节磷酸化,影响其亚细胞定位和/或底物特异性。在此,我们采用基于稳定同位素标记氨基酸的细胞培养质谱技术(SILAC),来鉴定人骨肉瘤细胞系(U2-OS)细胞在使用选择性共价Pin1抑制剂Sulfopin处理后的蛋白质组和磷酸化蛋白质组变化。我们证实Sulfopin与Pin1共价结合,并分析了Pin1依赖性的蛋白质组和磷酸化蛋白质组变化,鉴定出803个发生显著Sulfopin依赖性变化的磷酸化位点。所鉴定的磷酸化位点包括多种不同激酶的底物,如蛋白激酶B(AKT1)、极光激酶A(AURKA)、细胞周期蛋白依赖性激酶(CDK)1和CK2。总体而言,本研究揭示了Sulfopin对磷酸化蛋白质组的广泛影响,增进了我们对Pin1如何在活细胞中调节复杂的调节激酶网络的理解。总结:基于其在多种疾病中表达的改变,肽基脯氨酰异构酶(PPIase)Pin1已成为众多恶性肿瘤和神经退行性疾病的潜在治疗靶点。由于Pin1的活性依赖于磷酸化,它与细胞内调节激酶网络的组成成分密切相关。为了阐明Pin1如何在细胞内协调调节信号,我们对用高选择性共价Pin1抑制剂Sulfopin处理的SILAC标记的人骨肉瘤U2-OS细胞进行了定量蛋白质组和磷酸化蛋白质组分析。这些研究除了证明抑制Pin1会改变参与各种基本细胞过程的蛋白质的丰度和磷酸化外,还揭示了抑制Pin1会调节803个磷酸化位点的磷酸化,最终增进了我们对一种PPIase如何在复杂生物系统中调节磷酸化网络的理解。

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