Dardinger Laboratory for Neuro-oncology and Neurosciences, The Ohio State University Medical Center and James Comprehensive Cancer Center, Columbus, OH, USA.
Cell Cycle. 2010 Jul 15;9(14):2742-8. Epub 2010 Jul 30.
Glioblastoma, the most common and aggressive primary brain tumor, is rapidly growing and highly infiltrative. Incomplete knowledge of the molecular biology, genetics, causes and cellular origin of these tumors may limit the development of improved therapeutics. A major and fundamental advance in recent years has been the identification of microRNAs as highly conserved regulators of gene expression. Here we will discuss further our recently published data on the role of miR-451 in the biology of glioblastoma. We initially identified miR-451 due to its downregulation in a glioma cell migration assay. We then found that by targeting the LKB1 kinase complex miR-451 suppresses the activity of downstream protein kinases including the major energy biosensor AMPK. MiR-451 levels are regulated by glucose; under conditions of abundant energy miR-451 expression is high, and the suppression of AMPK signaling allows cells to maintain elevated proliferation rates via unrestrained mTOR activation. Under conditions of glucose withdrawal, miR-451 downregulation is necessary for AMPK pathway activation, leading to suppressed proliferation rates, increased cell survival and migration. We also identified a potential feedback loop between LKB1 and miR-451, which allows a sustained and robust response to glucose deprivation. This data will be discussed in the context of potential biological significance and therapeutic implications.
胶质母细胞瘤是最常见和侵袭性最强的原发性脑肿瘤,生长迅速且高度浸润。由于对这些肿瘤的分子生物学、遗传学、病因和细胞起源认识不完整,可能会限制改进治疗方法的发展。近年来的一个重大和根本性进展是发现 microRNAs 是基因表达的高度保守调控因子。在这里,我们将进一步讨论我们最近发表的关于 miR-451 在胶质母细胞瘤生物学中的作用的数据。我们最初因为 miR-451 在神经胶质瘤细胞迁移测定中下调而鉴定了它。然后我们发现,通过靶向 LKB1 激酶复合物,miR-451 抑制下游蛋白激酶的活性,包括主要的能量生物传感器 AMPK。miR-451 的水平受葡萄糖调节;在能量丰富的条件下,miR-451 的表达水平较高,并且 AMPK 信号的抑制允许细胞通过不受限制的 mTOR 激活维持升高的增殖率。在葡萄糖剥夺的条件下,miR-451 的下调对于 AMPK 通路的激活是必需的,导致增殖率降低、细胞存活和迁移增加。我们还鉴定了 LKB1 和 miR-451 之间的潜在反馈回路,这允许对葡萄糖剥夺产生持续和强大的反应。这一数据将在潜在的生物学意义和治疗意义方面进行讨论。