Antony Smitha, Jiang Guojian, Wu Yongzhong, Meitzler Jennifer L, Makhlouf Hala R, Haines Diana C, Butcher Donna, Hoon Dave S, Ji Jiuping, Zhang Yiping, Juhasz Agnes, Lu Jiamo, Liu Han, Dahan Iris, Konate Mariam, Roy Krishnendu K, Doroshow James H
Division of Cancer Treatment and Diagnosis, National Cancer Institute, Bethesda, Maryland.
Developmental Therapeutics Branch, Center for Cancer Research, National Cancer Institute, Bethesda, Maryland.
Mol Carcinog. 2017 Dec;56(12):2643-2662. doi: 10.1002/mc.22708. Epub 2017 Aug 30.
NADPH oxidase 5 (NOX5) generated reactive oxygen species (ROS) have been implicated in signaling cascades that regulate cancer cell proliferation. To evaluate and validate NOX5 expression in human tumors, we screened a broad range of tissue microarrays (TMAs), and report substantial overexpression of NOX5 in malignant melanoma and cancers of the prostate, breast, and ovary. In human UACC-257 melanoma cells that possesses high levels of functional endogenous NOX5, overexpression of NOX5 resulted in enhanced cell growth, increased numbers of BrdU positive cells, and increased γ-H2AX levels. Additionally, NOX5-overexpressing (stable and inducible) UACC-257 cells demonstrated increased normoxic HIF-1α expression and decreased p27 expression. Similarly, increased normoxic HIF-1α expression and decreased p27 expression were observed in stable NOX5-overexpressing clones of KARPAS 299 human lymphoma cells and in the human prostate cancer cell line, PC-3. Conversely, knockdown of endogenous NOX5 in UACC-257 cells resulted in decreased cell growth, decreased HIF-1α expression, and increased p27 expression. Likewise, in an additional human melanoma cell line, WM852, and in PC-3 cells, transient knockdown of endogenous NOX5 resulted in increased p27 and decreased HIF-1α expression. Knockdown of endogenous NOX5 in UACC-257 cells resulted in decreased Akt and GSK3β phosphorylation, signaling pathways known to modulate p27 levels. In summary, our findings suggest that NOX5 expression in human UACC-257 melanoma cells could contribute to cell proliferation due, in part, to the generation of high local concentrations of extracellular ROS that modulate multiple pathways that regulate HIF-1α and networks that signal through Akt/GSK3β/p27 .
NADPH氧化酶5(NOX5)产生的活性氧(ROS)参与了调节癌细胞增殖的信号级联反应。为了评估和验证NOX5在人类肿瘤中的表达,我们筛选了多种组织微阵列(TMA),并报告了NOX5在恶性黑色素瘤以及前列腺癌、乳腺癌和卵巢癌中大量过表达。在具有高水平功能性内源性NOX5的人UACC-257黑色素瘤细胞中,NOX5的过表达导致细胞生长增强、BrdU阳性细胞数量增加以及γ-H2AX水平升高。此外,过表达NOX5(稳定和可诱导)的UACC-257细胞显示常氧下HIF-1α表达增加而p27表达降低。同样,在人KARPAS 299淋巴瘤细胞的稳定NOX5过表达克隆以及人前列腺癌细胞系PC-3中,也观察到常氧下HIF-1α表达增加而p27表达降低。相反,UACC-257细胞中内源性NOX5的敲低导致细胞生长减少、HIF-1α表达降低以及p27表达增加。同样,在另一种人黑色素瘤细胞系WM852和PC-3细胞中,内源性NOX5的瞬时敲低导致p27增加而HIF-1α表达降低。UACC-257细胞中内源性NOX5的敲低导致Akt和GSK3β磷酸化降低,这些信号通路已知可调节p27水平。总之,我们的研究结果表明,人UACC-257黑色素瘤细胞中NOX5的表达可能有助于细胞增殖,部分原因是产生了高局部浓度的细胞外ROS,这些ROS调节了多个调节HIF-1α的途径以及通过Akt/GSK3β/p27信号传导的网络。