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对癌细胞中CK2介导的B23/NPM磷酸化进行药理抑制,可选择性地调节与蛋白质合成、能量代谢和核糖体生物发生相关的基因。

Pharmacologic inhibition of the CK2-mediated phosphorylation of B23/NPM in cancer cells selectively modulates genes related to protein synthesis, energetic metabolism, and ribosomal biogenesis.

作者信息

Perera Yasser, Pedroso Seidy, Borras-Hidalgo Orlando, Vázquez Dania M, Miranda Jamilet, Villareal Adelaida, Falcón Viviana, Cruz Luis D, Farinas Hernán G, Perea Silvio E

机构信息

Laboratory of Molecular Oncology, Division of Pharmaceuticals, Center for Genetic Engineering and Biotechnology (CIGB), PO BOX 6162, CP10600, Havana, Cuba,

出版信息

Mol Cell Biochem. 2015 Jun;404(1-2):103-12. doi: 10.1007/s11010-015-2370-x. Epub 2015 Mar 25.

Abstract

B23/NPM is a multifunctional nucleolar protein frequently overexpressed, mutated, or rearranged in neoplastic tissues. B23/NPM is involved in diverse biological processes and is mainly regulated by heteroligomer association and posttranslational modification, phosphorylation being a major posttranslational event. While the role of B23/NPM in supporting and/or driving malignant transformation is widely recognized, the particular relevance of its CK2-mediated phosphorylation remains unsolved. Interestingly, the pharmacologic inhibition of such phosphorylation event by CIGB-300, a clinical-grade peptide drug, was previously associated to apoptosis induction in tumor cell lines. In this work, we sought to identify the biological processes modulated by CIGB-300 in a lung cancer cell line using subtractive suppression hybridization and subsequent functional annotation clustering. Our results indicate that CIGB-300 modulates a subset of genes involved in protein synthesis (ES = 8.4, p < 0.001), mitochondrial ATP metabolism (ES = 2.5, p < 0.001), and ribosomal biogenesis (ES = 1.5, p < 0.05). The impairment of these cellular processes by CIGB-300 was corroborated at the molecular and cellular levels by Western blot (P-S6/P-4EBP1, translation), confocal microscopy (JC-1, mitochondrial potential), qPCR (45SrRNA/p21, ribosome biogenesis), and electron microscopy (nucleolar structure, ribosome biogenesis). Altogether, our findings provide new insights on the potential relevance of the CK2-mediated phosphorylation of B23/NPM in cancer cells, revealing at the same time the potentialities of its pharmacological manipulation for cancer therapy. Finally, this work also suggests several candidate gene biomarkers to be evaluated during the clinical development of the anti-CK2 peptide CIGB-300.

摘要

B23/NPM是一种多功能核仁蛋白,在肿瘤组织中经常过度表达、发生突变或重排。B23/NPM参与多种生物学过程,主要受异源寡聚体缔合和翻译后修饰调控,磷酸化是主要的翻译后事件。虽然B23/NPM在支持和/或驱动恶性转化中的作用已得到广泛认可,但其CK2介导的磷酸化的具体相关性仍未解决。有趣的是,临床级肽药物CIGB - 300对这种磷酸化事件的药理抑制作用先前与肿瘤细胞系中的凋亡诱导有关。在这项研究中,我们试图利用消减抑制杂交和随后的功能注释聚类来鉴定CIGB - 300在肺癌细胞系中调节的生物学过程。我们的结果表明,CIGB - 300调节一组参与蛋白质合成(效应大小 = 8.4,p < 0.001)、线粒体ATP代谢(效应大小 = 2.5,p < 0.001)和核糖体生物发生(效应大小 = 1.5,p < 0.05)的基因。通过蛋白质印迹法(磷酸化S6/磷酸化4EBP1,翻译)、共聚焦显微镜(JC - 1,线粒体膜电位)、定量聚合酶链反应(45SrRNA/p21,核糖体生物发生)和电子显微镜(核仁结构,核糖体生物发生)在分子和细胞水平上证实了CIGB - 300对这些细胞过程的损害。总之,我们的研究结果为B23/NPM的CK2介导的磷酸化在癌细胞中的潜在相关性提供了新的见解,同时揭示了其药理操纵在癌症治疗中的潜力。最后,这项研究还提出了几个候选基因生物标志物,以便在抗CK2肽CIGB - 300的临床开发过程中进行评估。

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