在黑色素瘤细胞中,磷酸化磷酸酶1亚型α和γ对Prodigiosin治疗的反应不同,并提出了替代激酶靶点

M. Fardilha, J. Figueiredo, M. Espona-Fiedler, Juliana Felgueiras, L. Korrodi-Gregório, S. Esteves, S. Rebelo, O. D. C. E. Silva, E. F. C. E. Silva, R. Pérez-Tomás
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引用次数: 0

摘要

可逆蛋白磷酸化是细胞功能的中心调控机制。蛋白激酶和磷酸酶平衡作用的失调经常与包括癌症在内的几种病理状况有关。许多研究已经解决了蛋白激酶失调在癌症中的作用。然而,对蛋白磷酸酶的影响知之甚少。磷酸蛋白磷酸酶1 (PPP1)是主要的丝氨酸/苏氨酸蛋白磷酸酶之一,有三个催化亚型:PPP1CA、PPP1CB和PPP1CC。它的功能是通过结合调控亚基实现的,被称为ppp1相互作用蛋白(PIPs),这可能更倾向于催化异构体。此外,一些抑制剂/增强剂可能表现出异构体特异性。我们发现,一种具有抗癌特性的分子,能促进PPP1CA-AKT复合物的形成,而不是PPP1CC-MAPK复合物的形成。AKT和MAPK都是众所周知的PIPs,它们通过两条通路相互作用并调节黑色素瘤细胞的存活。此外,使用表面等离子体共振(SPR)技术进行的分析表明,PPP1与obatoclax (OBX)相互作用,OBX是一种属于PG家族的药物。总的来说,这些结果表明PG可能(至少部分)通过PPP1C/PIPs起作用。此外,本研究是小分子对PPP1异构体特异性调节的先驱。
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Phosphoprotein Phosphatase 1 Isoforms Alpha and Gamma Respond Differently to Prodigiosin Treatment and Present Alternative Kinase Targets in Melanoma Cells
Reversible protein phosphorylation is a central regulatory mechanism of cell function. Deregulation of the balanced actions of protein kinases and phosphatases has been frequently associated with several pathological conditions, including cancer. Many studies have already addressed the role of protein kinases misregulation in cancer. However, much less is known about protein phosphatases influence. Phosphoprotein Phosphatase 1 (PPP1) is one of the major serine/threonine protein phosphatases who has three catalytic isoforms: PPP1CA, PPP1CB, and PPP1CC. Its function is achieved by binding to regulatory subunits, known as PPP1-interacting proteins (PIPs), which may prefer a catalytic isoform. Also, some inhibitors/enhancers may exhibit isoform specificity. Here we show that, prodigiosin (PG), a molecule with anticancer properties, promotes the formation of PPP1CA-AKT complex and not of PPP1CC-MAPK complex. Both, AKT and MAPK, are well-known PIPs from two pathways that crosstalk and regulate melanoma cells survival. In addition, the analysis performed using surface plasmon resonance (SPR) technology indicates that PPP1 interacts with obatoclax (OBX), a drug that belongs to the same family of PG. Overall, these results suggest that PG might, at least in part, act through PPP1C/PIPs. Also, this study is pioneer in demonstrating PPP1 isoform-specific modulation by small molecules.
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