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细胞质 5'-核苷酸酶 II 沉默在人肺癌细胞系中对抗癌症表型,同时增加 p53 磷酸化。

Cytosolic 5'-Nucleotidase II Silencing in a Human Lung Carcinoma Cell Line Opposes Cancer Phenotype with a Concomitant Increase in p53 Phosphorylation.

机构信息

Unità di Biochimica, Dipartimento di Biologia, Università di Pisa, Via San Zeno 51, 56127 Pisa, Italy.

Istituto di Neuroscienze, CNR, Via Giuseppe Moruzzi 1, 56124 Pisa, Italy.

出版信息

Int J Mol Sci. 2018 Jul 20;19(7):2115. doi: 10.3390/ijms19072115.

Abstract

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.

摘要

嘌呤稳态是通过嘌呤循环来维持的,其中受调节的成员是一种细胞质 5'-核苷酸酶 II(cN-II),可水解 IMP 和 GMP。其表达在增殖细胞中特别高,事实上,血液恶性肿瘤中的高 cN-II 活性或表达与预后不良和化疗耐药有关。因此,人们对开发 cN-II 抑制剂产生了浓厚的兴趣,作为单独或与其他化合物联合使用的潜在药物。作为研究 cN-II 抑制作用的模型,我们利用肺腺癌细胞系(A549),其中该酶部分沉默,并通过与 2-脱氧葡萄糖孵育稳定其低活性构象。我们测量核苷酸含量、还原型谷胱甘肽、糖酵解和三羧酸循环中涉及的酶的活性、蛋白质合成、线粒体功能、细胞增殖、迁移和活力。我们的结果表明,高 cN-II 表达与糖酵解、高度增殖表型相关,而沉默导致增殖、蛋白质合成和迁移能力降低,氧化性能增加。在人类星形细胞瘤细胞系中也获得了类似的结果。此外,我们证明 cN-II 沉默伴随着 p53 磷酸化,表明该途径可能参与介导 cN-II 在癌细胞生物学中的一些作用。

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