Arbiser Jack L, Kau Tweeny, Konar Martha, Narra Krishna, Ramchandran Ramani, Summers Scott A, Vlahos Chris J, Ye Keqiang, Perry Betsy N, Matter William, Fischl Anthony, Cook James, Silver Pamela A, Bain Jenny, Cohen Philip, Whitmire David, Furness Scott, Govindarajan Baskaran, Bowen J Phillip
Department of Dermatology, Emory University School of Medicine, WMB 5309, 101 Woodruff Circle, Atlanta, GA 30322, USA.
Blood. 2007 Jan 15;109(2):560-5. doi: 10.1182/blood-2006-06-029934. Epub 2006 Sep 21.
Phosphatidylinositol-3-kinase (PI3K), and its downstream effector Akt, or protein kinase Balpha (PKBalpha), play a major regulatory role in control of apoptosis, proliferation, and angiogenesis. PI3K and Akt are amplified or overexpressed in a number of malignancies, including sarcomas, ovarian cancer, multiple myeloma, and melanoma. This pathway regulates production of the potent angiogenic factor vascular endothelial growth factor (VEGF), and protects tumor cells against both chemotherapy and reactive oxygen-induced apoptosis through phosphorylation of substrates such as apoptotic peptidase-activating factor-1 (APAF-1), forkhead proteins, and caspase 9. Given its diverse actions, compounds that suppress the PI3K/Akt pathway have potential pharmacologic utility as angiogenesis inhibitors and antineoplastic agents. Using the SVR angiogenesis assay, a screen of natural products, we isolated the alkaloid solenopsin, and found that it is a potent angiogenesis inhibitor. We also found that solenopsin inhibits the PI3K signaling pathway in cells upstream of PI3K, which may underlie its affects on angiogenesis. Consistent with inhibition of the activation of PI3K, solenopsin prevented the phosphorylation of Akt and the phosphorylation of its substrate forkhead box 01a (FOXO1a), a member of the forkhead family of transcription factors. Interestingly, solenopsin also inhibited Akt-1 activity in an ATP-competitive manner in vitro without affecting 27 of 28 other protein kinases tested.
磷脂酰肌醇-3-激酶(PI3K)及其下游效应分子Akt或蛋白激酶Bα(PKBα)在细胞凋亡、增殖和血管生成的调控中发挥着主要作用。PI3K和Akt在包括肉瘤、卵巢癌、多发性骨髓瘤和黑色素瘤在内的多种恶性肿瘤中发生扩增或过表达。该信号通路调节强效血管生成因子血管内皮生长因子(VEGF)的产生,并通过使凋亡肽酶激活因子-1(APAF-1)、叉头蛋白和半胱天冬酶9等底物磷酸化,保护肿瘤细胞免受化疗和活性氧诱导的凋亡。鉴于其多样的作用,抑制PI3K/Akt信号通路的化合物作为血管生成抑制剂和抗肿瘤药物具有潜在的药理效用。利用SVR血管生成检测法对天然产物进行筛选,我们分离出了生物碱火蚁素,并发现它是一种强效血管生成抑制剂。我们还发现火蚁素在PI3K上游的细胞中抑制PI3K信号通路,这可能是其影响血管生成的基础。与抑制PI3K的激活一致,火蚁素可阻止Akt的磷酸化及其底物叉头框01a(FOXO1a)的磷酸化,FOXO1a是叉头转录因子家族的成员。有趣的是,火蚁素在体外还能以ATP竞争性方式抑制Akt-1的活性,而不影响所检测的其他28种蛋白激酶中的27种。