Prajna Mishra, Suresh K Paramasivam, Ramesh P Thylur, Ajay Rana, Basabi Rana
{"title":"过氧化物酶体增殖体激活受体γ配体介导的肝癌细胞凋亡依赖于独立于Akt的PI3Kinase通路的调节。","authors":"Prajna Mishra, Suresh K Paramasivam, Ramesh P Thylur, Ajay Rana, Basabi Rana","doi":"10.1186/1750-2187-5-20","DOIUrl":null,"url":null,"abstract":"<p><strong>Background: </strong>Ligands of Peroxisome proliferator-activated receptor gamma (PPARγ) can inhibit growth and promote apoptosis in various cancer cells, and thus have the potential to be utilized as anticancer drugs. This potential however, has been seriously challenged by observations that they can lead to tumor promotion in some cancer models, possibly due to activation of different signaling mechanisms in various tumor environments. Elucidation of the specific signaling events that modulate PPARγ ligand-mediated events is thus critical to increase their efficacy. The studies described here were designed to elucidate the signaling pathway(s) that modulate the apoptotic potential of Troglitazone (TRG), an artificial PPARγ ligand in hepatocellular carcinoma (HCC) cells.</p><p><strong>Results: </strong>Our results indicate that the apoptotic potential of TRG was regulated by the presence or absence of serum in the media. When added in serum-containing media, TRG inhibited proliferation and cyclin D1 expression, but was unable to induce any apoptosis. However, TRG's apoptotic potential was induced significantly when added in serum deficient media, as indicated by increased PARP and Caspase-3 cleavage and results from apoptosis assay. Furthermore, TRG-induced apoptosis in serum deficient media was associated with a dramatic reduction in PI3Kinase downstream target AktSer473 and FoxO1Thr24/FoxO3aThr32 phosphorylation. On the contrary, there was an increase of PI3K-induced AktSer473 and FoxO1Thr24/FoxO3aThr32 phosphorylation involving Pak, when TRG was added in serum-containing media. Pharmacological inhibition of PI3Kinase pathway with LY294002 inhibited Aktser473 phosphorylation and sensitized cells towards apoptosis in the presence of serum, indicating the involvement of PI3K in apoptosis resistance. Interestingly, pharmacological inhibition or siRNA-mediated knockdown of Akt or inhibition of Pak was unable to sensitize cells towards TRG-induced apoptosis in the presence of serum. Similarly, TRG was unable to induce apoptosis in the Akt1-KO, Akt1&2-KO MEFs in serum-containing media.</p><p><strong>Conclusion: </strong>These studies indicate that TRG-induced apoptosis is modulated by PI3K pathway in a novel Akt-independent manner, which might contribute to its tumor promoting effects. Since PI3K activation is linked with various cancers, combination therapy utilizing TRG and PI3K inhibitors has the potential to not only increase the efficacy of TRG as a chemotherapeutic agent but also reduce its off target effects.</p>","PeriodicalId":35051,"journal":{"name":"Journal of Molecular Signaling","volume":null,"pages":null},"PeriodicalIF":0.0000,"publicationDate":"2010-12-13","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://sci-hub-pdf.com/10.1186/1750-2187-5-20","citationCount":"11","resultStr":"{\"title\":\"Peroxisome proliferator-activated receptor gamma ligand-mediated apoptosis of hepatocellular carcinoma cells depends upon modulation of PI3Kinase pathway independent of Akt.\",\"authors\":\"Prajna Mishra, Suresh K Paramasivam, Ramesh P Thylur, Ajay Rana, Basabi Rana\",\"doi\":\"10.1186/1750-2187-5-20\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><strong>Background: </strong>Ligands of Peroxisome proliferator-activated receptor gamma (PPARγ) can inhibit growth and promote apoptosis in various cancer cells, and thus have the potential to be utilized as anticancer drugs. This potential however, has been seriously challenged by observations that they can lead to tumor promotion in some cancer models, possibly due to activation of different signaling mechanisms in various tumor environments. Elucidation of the specific signaling events that modulate PPARγ ligand-mediated events is thus critical to increase their efficacy. The studies described here were designed to elucidate the signaling pathway(s) that modulate the apoptotic potential of Troglitazone (TRG), an artificial PPARγ ligand in hepatocellular carcinoma (HCC) cells.</p><p><strong>Results: </strong>Our results indicate that the apoptotic potential of TRG was regulated by the presence or absence of serum in the media. When added in serum-containing media, TRG inhibited proliferation and cyclin D1 expression, but was unable to induce any apoptosis. 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引用次数: 11
摘要
背景:过氧化物酶体增殖激活受体γ (PPARγ)配体在多种癌细胞中具有抑制生长和促进细胞凋亡的作用,因此具有潜在的抗癌药物应用前景。然而,这种潜力受到了严重的挑战,因为观察到它们可能在某些癌症模型中导致肿瘤促进,可能是由于在各种肿瘤环境中激活了不同的信号机制。因此,阐明调节PPARγ配体介导事件的特定信号事件对提高其疗效至关重要。本文描述的研究旨在阐明调节肝细胞癌(HCC)细胞中人造PPARγ配体曲格列酮(TRG)凋亡电位的信号通路。结果:我们的研究结果表明,培养基中血清的存在或不存在对TRG的凋亡电位有调节作用。添加到含血清培养基中,TRG能抑制细胞增殖和细胞周期蛋白D1的表达,但不能诱导细胞凋亡。然而,在血清缺乏培养基中添加TRG可显著诱导细胞凋亡,这可以通过增加PARP和Caspase-3切割以及细胞凋亡实验结果来证明。此外,在血清缺乏培养基中,trg诱导的细胞凋亡与PI3Kinase下游靶点AktSer473和FoxO1Thr24/FoxO3aThr32磷酸化的显著降低有关。相反,在含血清培养基中加入TRG后,pi3k诱导的AktSer473和FoxO1Thr24/FoxO3aThr32涉及Pak的磷酸化增加。用LY294002药物抑制PI3K激酶途径抑制Aktser473磷酸化,在血清存在的情况下使细胞对凋亡敏感,提示PI3K参与细胞凋亡抵抗。有趣的是,在血清存在的情况下,药物抑制或sirna介导的Akt敲低或Pak抑制无法使细胞对trg诱导的凋亡敏感。同样,在含血清培养基中,TRG不能诱导Akt1-KO、akt1和2- ko mef凋亡。结论:这些研究表明trg诱导的细胞凋亡是由PI3K通路以一种新的不依赖akt的方式调控的,这可能与trg促瘤作用有关。由于PI3K的激活与多种癌症有关,利用TRG和PI3K抑制剂的联合治疗不仅有可能提高TRG作为化疗药物的疗效,而且还可能减少其脱靶效应。
Peroxisome proliferator-activated receptor gamma ligand-mediated apoptosis of hepatocellular carcinoma cells depends upon modulation of PI3Kinase pathway independent of Akt.
Background: Ligands of Peroxisome proliferator-activated receptor gamma (PPARγ) can inhibit growth and promote apoptosis in various cancer cells, and thus have the potential to be utilized as anticancer drugs. This potential however, has been seriously challenged by observations that they can lead to tumor promotion in some cancer models, possibly due to activation of different signaling mechanisms in various tumor environments. Elucidation of the specific signaling events that modulate PPARγ ligand-mediated events is thus critical to increase their efficacy. The studies described here were designed to elucidate the signaling pathway(s) that modulate the apoptotic potential of Troglitazone (TRG), an artificial PPARγ ligand in hepatocellular carcinoma (HCC) cells.
Results: Our results indicate that the apoptotic potential of TRG was regulated by the presence or absence of serum in the media. When added in serum-containing media, TRG inhibited proliferation and cyclin D1 expression, but was unable to induce any apoptosis. However, TRG's apoptotic potential was induced significantly when added in serum deficient media, as indicated by increased PARP and Caspase-3 cleavage and results from apoptosis assay. Furthermore, TRG-induced apoptosis in serum deficient media was associated with a dramatic reduction in PI3Kinase downstream target AktSer473 and FoxO1Thr24/FoxO3aThr32 phosphorylation. On the contrary, there was an increase of PI3K-induced AktSer473 and FoxO1Thr24/FoxO3aThr32 phosphorylation involving Pak, when TRG was added in serum-containing media. Pharmacological inhibition of PI3Kinase pathway with LY294002 inhibited Aktser473 phosphorylation and sensitized cells towards apoptosis in the presence of serum, indicating the involvement of PI3K in apoptosis resistance. Interestingly, pharmacological inhibition or siRNA-mediated knockdown of Akt or inhibition of Pak was unable to sensitize cells towards TRG-induced apoptosis in the presence of serum. Similarly, TRG was unable to induce apoptosis in the Akt1-KO, Akt1&2-KO MEFs in serum-containing media.
Conclusion: These studies indicate that TRG-induced apoptosis is modulated by PI3K pathway in a novel Akt-independent manner, which might contribute to its tumor promoting effects. Since PI3K activation is linked with various cancers, combination therapy utilizing TRG and PI3K inhibitors has the potential to not only increase the efficacy of TRG as a chemotherapeutic agent but also reduce its off target effects.
期刊介绍:
Journal of Molecular Signaling is an open access, peer-reviewed online journal that encompasses all aspects of molecular signaling. Molecular signaling is an exponentially growing field that encompasses different molecular aspects of cell signaling underlying normal and pathological conditions. Specifically, the research area of the journal is on the normal or aberrant molecular mechanisms involving receptors, G-proteins, kinases, phosphatases, and transcription factors in regulating cell proliferation, differentiation, apoptosis, and oncogenesis in mammalian cells. This area also covers the genetic and epigenetic changes that modulate the signaling properties of cells and the resultant physiological conditions.