Department of Biomolecular Engineering, Graduate School of Bioscience and Biotechnology, Tokyo Institute of Technology, Yokohama, Japan.
PLoS One. 2010 Dec 23;5(12):e15736. doi: 10.1371/journal.pone.0015736.
Hypoxia-inducible factor (HIF) functions as a master transcriptional regulator for adaptation to hypoxia by inducing adaptive changes in gene expression for regulation of proliferation, angiogenesis, apoptosis and energy metabolism. Cancers with high expression of the alpha subunit of HIF (HIFα) are often malignant and treatment-resistant. Therefore, the development of a molecular probe that can detect HIF activity has great potential value for monitoring tumor hypoxia. HIF prolyl hydroxylases (HPHDs) act as oxygen sensors that regulate the fate of HIFα protein through its oxygen-dependent degradation (ODD) domain. We constructed a recombinant protein PTD-ODD-HaloTag (POH) that is under the same ODD regulation as HIFα and contains protein transduction domain (PTD) and an interchangeable labeling system. Administration of near-infrared fluorescently labeled POH (POH-N) to mouse models of cancers allowed successful monitoring of HIF-active regions. Immunohistochemical analysis for intratumoral localization of POH probe revealed its specificity to HIF-active cells. Furthermore, lack of the PTD domain or a point mutation in the ODD domain abrogated the specificity of POH-N to HIF-active cells. Overall results indicate that POH is a practical probe specific to HIF-active cell in cancers and suggest its large potential for imaging and targeting of HIF-related diseases.
缺氧诱导因子 (HIF) 作为一种主要的转录调节因子,通过诱导基因表达的适应性变化来调节增殖、血管生成、凋亡和能量代谢,从而适应缺氧。高表达 HIF 阿尔法亚基 (HIFα) 的癌症通常是恶性的和治疗耐药的。因此,开发一种能够检测 HIF 活性的分子探针,对于监测肿瘤缺氧具有巨大的潜在价值。HIF 脯氨酰羟化酶 (HPHD) 作为氧传感器,通过其氧依赖性降解 (ODD) 结构域调节 HIFα 蛋白的命运。我们构建了一个重组蛋白 PTD-ODD-HaloTag (POH),它与 HIFα 具有相同的 ODD 调节,并包含蛋白转导结构域 (PTD) 和可互换的标记系统。将近红外荧光标记的 POH (POH-N) 施用于癌症小鼠模型,成功地监测了 HIF 活性区域。POH 探针在肿瘤内定位的免疫组织化学分析显示其对 HIF 活性细胞具有特异性。此外,缺乏 PTD 结构域或 ODD 结构域中的点突变会破坏 POH-N 对 HIF 活性细胞的特异性。总体结果表明,POH 是一种针对癌症中 HIF 活性细胞的实用探针,并表明其在成像和靶向 HIF 相关疾病方面具有巨大的潜力。