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1.
Am J Pathol ; 176(4): 1756-66, 2010 Apr.
Article in English | MEDLINE | ID: mdl-20150439

ABSTRACT

Insulin-like growth factor (IGF) signaling plays a pivotal role in cell proliferation and mitogenesis. Secreted IGF-binding proteins (IGFBPs) are important modulators of IGF bioavailability; however, their intracellular functions remain elusive. We sought to assess the antiapoptotic properties of intracellular IGFBP-2 in lung adenocarcinomas. IGFBP-2 overexpression resulted in a decrease in procaspase-3 expression; however, it did not influence the phosphorylation status of either IGF receptor or its downstream targets, including Akt and extracellular signal-regulated kinase. Apoptosis induced by camptothecin was significantly inhibited by IGFBP-2 overexpression in NCI-H522 cells. Conversely, selective knockdown of IGFBP-2 using small-interfering RNA resulted in an increase in procaspase-3 expression and sensitization to camptothecin-induced apoptosis in NCI-H522 cells. LY294002, an inhibitor of phosphatidyl-inositol 3-kinase, caused a decrease in IGFBP-2 levels and enhanced apoptosis in combination with camptothecin. Immunohistochemistry demonstrated that intracellular IGFBP-2 was highly expressed in lung adenocarcinomas compared with normal epithelium. Intracellular IGFBP-2 and procaspase-3 were expressed in a mutually exclusive manner. These findings suggest that intracellular IGFBP-2 regulates caspase-3 expression and contributes to the inhibitory effect on apoptosis independent of IGF. IGFBP-2, therefore, may offer a novel therapeutic target and serve as an antiapoptotic biomarker for lung adenocarcinoma.


Subject(s)
Adenocarcinoma/metabolism , Apoptosis , Caspase 3/metabolism , Gene Expression Regulation, Neoplastic , Insulin-Like Growth Factor Binding Protein 2/metabolism , Insulin-Like Growth Factor I/metabolism , Lung Neoplasms/metabolism , Antineoplastic Agents, Phytogenic/pharmacology , Camptothecin/pharmacology , Cell Line, Tumor , Enzyme Inhibitors/pharmacology , Humans , Phosphatidylinositol 3-Kinases/metabolism , Phosphorylation , RNA Interference
2.
Cancer Res ; 68(20): 8547-54, 2008 Oct 15.
Article in English | MEDLINE | ID: mdl-18922930

ABSTRACT

Enhanced glucose and lipid metabolism is one of the most common properties of malignant cells. ATP citrate lyase (ACLY) is a key enzyme of de novo fatty acid synthesis responsible for generating cytosolic acetyl-CoA and oxaloacetate. To evaluate its role in lung cancer progression, we here analyzed ACLY expression in a subset of human lung adenocarcinoma cell lines and showed a relationship with the phosphatidyl-inositol-3 kinase-Akt pathway. The introduction of constitutively active Akt into cells enhanced the phosphorylation of ACLY, whereas dominant-negative Akt caused attenuation. In human lung adenocarcinoma samples, ACLY activity was found to be significantly higher than in normal lung tissue. Immunohistochemical analysis further showed phosphorylated ACLY overexpression in 162 tumors, well-correlating with stage, differentiation grade, and a poorer prognosis. Finally, to show the therapeutic potential and mechanism of ACLY inhibition for lung cancer treatment, we assessed the effect of RNA interference targeting ACLY on lipogenesis and cell proliferation in A549 cells. ACLY inhibition resulted in growth arrest in vitro and in vivo. Interestingly, increased intracellular lipids were found in ACLY knockdown cells, whereas de novo lipogenesis was inhibited. Supplementation of insulin could rescue the proliferative arrest elicited by ACLY inhibition; however, in contrast, fatty acid palmitate induced cell death. Taken together, these findings suggest that ACLY is involved in lung cancer pathogenesis associated with metabolic abnormality and might offer a novel therapeutic target.


Subject(s)
ATP Citrate (pro-S)-Lyase/physiology , Carcinoma, Non-Small-Cell Lung/enzymology , Lung Neoplasms/enzymology , ATP Citrate (pro-S)-Lyase/antagonists & inhibitors , ATP Citrate (pro-S)-Lyase/genetics , Adenocarcinoma/drug therapy , Adenocarcinoma/enzymology , Adenocarcinoma/etiology , Animals , Carcinoma, Non-Small-Cell Lung/drug therapy , Carcinoma, Non-Small-Cell Lung/mortality , Carcinoma, Non-Small-Cell Lung/pathology , Cell Line, Tumor , Enzyme Activation , Humans , Lung Neoplasms/drug therapy , Lung Neoplasms/mortality , Lung Neoplasms/pathology , Mice , Phosphorylation , Prognosis , Proto-Oncogene Proteins c-akt/genetics
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