Departments of Pathology, Medicine and Radiation, and Cellular Oncology, University of Chicago, Chicago, IL, USA.
Oncogene. 2013 Sep 12;32(37):4377-86. doi: 10.1038/onc.2012.464. Epub 2012 Oct 22.
Thrombospondin-1 (TSP-1) is an endogenous inhibitor of angiogenesis whose expression suppresses tumor growth in vivo. Like many angiogenesis-related genes, TSP-1 expression is tightly controlled by various mechanisms, but there is little data regarding the contribution of post-transcriptional processing to this regulation. NOL7 is a novel tumor suppressor that induces an antiangiogenic phenotype and suppresses tumor growth, in part through upregulation of TSP-1. Here we demonstrate that NOL7 is an mRNA-binding protein that must localize to the nucleoplasm to exert its antiangiogenic and tumor suppressive effects. There, it associates with the RNA-processing machinery and specifically interacts with TSP-1 mRNA through its 3'UTR. Reintroduction of NOL7 into SiHa cells increases luciferase expression through interaction with the TSP-1 3'UTR at both the mRNA and protein levels. NOL7 also increases endogenous TSP-1 mRNA half-life. Further, NOL7 post-transcriptional stabilization is observed in a subset of angiogenesis-related mRNAs, suggesting that the stabilization of TSP-1 may be part of a larger novel mechanism. These data demonstrate that NOL7 significantly alters TSP-1 expression and may be a master regulator that coordinates the post-transcriptional expression of key signaling factors critical for the regulation of the angiogenic phenotype.
血小板反应蛋白-1(TSP-1)是一种内源性血管生成抑制剂,其表达可抑制体内肿瘤生长。与许多与血管生成相关的基因一样,TSP-1 的表达受到各种机制的严格控制,但关于转录后处理对这种调节的贡献的数据很少。NOL7 是一种新型的肿瘤抑制因子,它诱导抗血管生成表型并抑制肿瘤生长,部分原因是通过上调 TSP-1。在这里,我们证明 NOL7 是一种 mRNA 结合蛋白,它必须定位于核质才能发挥其抗血管生成和肿瘤抑制作用。在那里,它与 RNA 处理机制结合,并通过其 3'UTR 与 TSP-1 mRNA 特异性相互作用。将 NOL7 重新引入 SiHa 细胞中,通过与 TSP-1 3'UTR 在 mRNA 和蛋白质水平上的相互作用,增加了荧光素酶的表达。NOL7 还增加了内源性 TSP-1 mRNA 的半衰期。此外,在一组血管生成相关的 mRNAs 中观察到 NOL7 的转录后稳定,这表明 TSP-1 的稳定可能是一个更大的新机制的一部分。这些数据表明,NOL7 显著改变了 TSP-1 的表达,可能是一个协调关键信号因子转录后表达的主调控因子,这些信号因子对血管生成表型的调节至关重要。