首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Cytosolic 5′-Nucleotidase II Silencing in a Human Lung Carcinoma Cell Line Opposes Cancer Phenotype with a Concomitant Increase in p53 Phosphorylation
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Cytosolic 5′-Nucleotidase II Silencing in a Human Lung Carcinoma Cell Line Opposes Cancer Phenotype with a Concomitant Increase in p53 Phosphorylation

机译:人类肺癌细胞系中的胞质5-核苷酸酶II沉默与p53磷酸化的同时增加反对癌症表型。

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摘要

Purine homeostasis is maintained by a purine cycle in which the regulated member is a cytosolic 5′-nucleotidase II (cN-II) hydrolyzing IMP and GMP. Its expression is particularly high in proliferating cells, indeed high cN-II activity or expression in hematological malignancy has been associated to poor prognosis and chemoresistance. Therefore, a strong interest has grown in developing cN-II inhibitors, as potential drugs alone or in combination with other compounds. As a model to study the effect of cN-II inhibition we utilized a lung carcinoma cell line (A549) in which the enzyme was partially silenced and its low activity conformation was stabilized through incubation with 2-deoxyglucose. We measured nucleotide content, reduced glutathione, activities of enzymes involved in glycolysis and Krebs cycle, protein synthesis, mitochondrial function, cellular proliferation, migration and viability. Our results demonstrate that high cN-II expression is associated with a glycolytic, highly proliferating phenotype, while silencing causes a reduction of proliferation, protein synthesis and migration ability, and an increase of oxidative performances. Similar results were obtained in a human astrocytoma cell line. Moreover, we demonstrate that cN-II silencing is concomitant with p53 phosphorylation, suggesting a possible involvement of this pathway in mediating some of cN-II roles in cancer cell biology.
机译:嘌呤体内稳态通过嘌呤循环维持,其中受调控的成员是水解IMP和GMP的胞质5'-核苷酸酶II(cN-II)。它在增殖细胞中的表达特别高,实际上cN-II活性高或血液系统恶性肿瘤的表达与不良预后和化学耐药性有关。因此,作为单独或与其他化合物组合的潜在药物,人们对开发cN-II抑制剂产生了浓厚的兴趣。作为研究cN-II抑制作用的模型,我们使用了一种肺癌细胞系(A549),其中该酶被部分沉默,并且其低活性构象通过与2-脱氧葡萄糖孵育而得以稳定。我们测量了核苷酸含量,减少的谷胱甘肽,参与糖酵解和克雷布斯循环的酶的活性,蛋白质合成,线粒体功能,细胞增殖,迁移和生存能力。我们的结果表明,高cN-II表达与糖酵解,高度增殖的表型有关,而沉默导致增殖,蛋白质合成和迁移能力降低,以及氧化性能提高。在人类星形细胞瘤细胞系中获得了相似的结果。此外,我们证明cN-II沉默与p53磷酸化同时发生,表明该途径可能参与了介导cN-II在癌细胞生物学中的某些作用。

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