Holmberg Olausson Karl, Elsir Tamador, Moazemi Goudarzi Kaveh, Nistér Monica, Lindström Mikael S
Department of Oncology-Pathology, Karolinska Institutet, Cancer Center Karolinska, CCK R8:05, Karolinska University Hospital in Solna, SE-17176 Stockholm, Sweden.
Department of Neuroscience, Neurology, Uppsala University, Uppsala University Hospital, SE-75185 Uppsala.
Sci Rep. 2015 Nov 12;5:16495. doi: 10.1038/srep16495.
Glioblastoma (grade IV glioma) is the most common and aggressive adult brain tumor. A better understanding of the biology of glioblastoma cells is crucial to identify molecular targets stimulating cell death. NPM1 (nucleophosmin) is a multifunctional chaperone that plays an important role in cancer development. Herein, NPM1 was analyzed by immunohistochemistry in human astrocytic gliomas. NPM1 was detected in all tumors but with a significantly higher staining intensity in grade IV than in low grade tumors. Depletion of NPM1 had only modest effects on the viability of U251MG, U1242MG, and U343MGa Cl2:6 glioma cells, despite alterations in nucleolar morphology. Glioma cell cultures depleted of NPM1 exposed to micromolar levels of actinomycin D were more prone to cell death (apoptosis) compared to cultures retaining NPM1. We had previously found that NPM1 binds to linker histone H1.5. Here we could show that silencing of H1.5 triggered glioma cell apoptosis as evidenced by a marked increase in both the numbers of cleaved caspase-3(+) cells and in the amounts of cleaved PARP. Enforced expression of NPM1 suppressed apoptosis in H1.5 depleted glioma cells. Although our studies would suggest little effectiveness of targeting NPM1 alone there could be potential using it as a combination treatment.
胶质母细胞瘤(IV级胶质瘤)是最常见且侵袭性最强的成人脑肿瘤。更好地了解胶质母细胞瘤细胞的生物学特性对于识别刺激细胞死亡的分子靶点至关重要。核磷蛋白(NPM1)是一种多功能伴侣蛋白,在癌症发展中起重要作用。在此,通过免疫组织化学对人星形胶质细胞瘤中的NPM1进行了分析。在所有肿瘤中均检测到NPM1,但IV级肿瘤中的染色强度明显高于低级别肿瘤。尽管核仁形态发生改变,但NPM1的缺失对U251MG、U1242MG和U343MGa Cl2:6胶质瘤细胞的活力仅有适度影响。与保留NPM1的培养物相比, 耗尽NPM1的胶质瘤细胞培养物在暴露于微摩尔水平的放线菌素D时更易发生细胞死亡(凋亡)。我们之前发现NPM1与连接组蛋白H1.5结合。在此我们可以表明, H1.5的沉默触发了胶质瘤细胞凋亡,这通过裂解的caspase-3(+)细胞数量和裂解的PARP量的显著增加得以证明, NPM1 的强制表达抑制了H1.5耗尽型胶质瘤细胞中的凋亡。尽管我们的研究表明单独靶向NPM1效果不佳,但将其作为联合治疗可能具有潜力。