Center for Theragnosis, Biomedical Research Institute, Korea Institute of Science and Technology, Hwarangno 14-gil 5, Seongbuk-gu, Seoul 136-791, Republic of Korea.
Biochem Biophys Res Commun. 2013 May 17;434(4):879-84. doi: 10.1016/j.bbrc.2013.04.044. Epub 2013 Apr 22.
Hypoxia is a general characteristic of most solid malignancies and intimately related to neoplastic diseases and cancer progression. Homeostatic response to hypoxia is primarily mediated by hypoxia inducible factor (HIF)-1α that elicits transcriptional activity through recruitment of the CREB binding protein (CBP)/p300 coactivator. Targeted blockade of HIF-1α binding to CBP/p300 would thus constitute a novel approach for cancer treatment by suppressing tumor angiogenesis and metastasis. Here, we identified inhibitors against the interaction between HIF-1α and p300 by a fluorescence polarization-based assay employing a fluorescently-labeled peptide containing the C-terminal activation domain of HIF-1α. Two small molecule inhibitors, menadione (MD) and ethacrynic acid (EA), were found to decrease expression of luciferase under the control of hypoxia-responsive elements in hypoxic cells as well as to efficiently block the interaction between the full-length HIF-1α and p300. While these compounds did not alter the expression level of HIF-1α, they down-regulated expression of a HIF-1α target vascular endothelial growth factor (VEGF) gene. Considering hypoxia-induced VEGF expression leading to highly aggressive tumor growth, MD and EA may provide new scaffolds for development of tumor therapeutic reagents as well as tools for a better understanding of HIF-1α-mediated hypoxic regulation.
缺氧是大多数实体恶性肿瘤的普遍特征,与肿瘤疾病和癌症进展密切相关。缺氧的体内平衡反应主要由缺氧诱导因子(HIF)-1α介导,通过募集 CREB 结合蛋白(CBP)/p300 共激活因子来引发转录活性。因此,靶向阻断 HIF-1α 与 CBP/p300 的结合将通过抑制肿瘤血管生成和转移成为一种治疗癌症的新方法。在这里,我们通过使用含有 HIF-1α 羧基末端激活结构域的荧光标记肽的荧光偏振测定法,鉴定出针对 HIF-1α 与 p300 之间相互作用的抑制剂。发现两种小分子抑制剂,即甲萘醌(MD)和依他尼酸(EA),可降低缺氧细胞中缺氧反应元件控制下的荧光素酶的表达,并有效地阻断全长 HIF-1α 与 p300 之间的相互作用。虽然这些化合物不改变 HIF-1α 的表达水平,但它们下调了 HIF-1α 靶血管内皮生长因子(VEGF)基因的表达。考虑到缺氧诱导的 VEGF 表达导致高度侵袭性的肿瘤生长,MD 和 EA 可能为开发肿瘤治疗试剂提供新的支架,以及更好地理解 HIF-1α 介导的缺氧调节的工具。