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1.
Biochem Biophys Res Commun ; 617(Pt 1): 48-54, 2022 08 20.
Artigo em Inglês | MEDLINE | ID: mdl-35679710

RESUMO

We previously demonstrated that kaempferol, a flavonoid present in various herbs, inhibits adipogenesis by repressing peroxisome proliferator-activated receptor γ (PPARγ) activity. Here, we focused on elucidation of the underlying mechanism using genome-wide tools. First, RNA sequencing (RNA-seq) analysis showed downregulation of genes involved in adipogenesis in response to kaempferol. Subsequent ChIP assays revealed that kaempferol regulates the expression of adipogenic (Adipoq, Fabp4, Lpl) genes by modulating enrichment of active H3K4me3 and repressive H3K27me3 histone codes on target promoters. Second, we performed ChIP sequencing analysis of active H3K4me3, and co-analysis with RNA-seq identified PPARγ responsive sites in genes downregulated by kaempferol, in terms of expression and H3K4me3 deposition. Third, direct kaempferol binding to PPARγ, for which the KD value was 44.54 µM, was determined by microscale thermophoresis. Further RT-qPCR and GST pull-down assays demonstrated that kaempferol antagonizes rosiglitazone-induced PPARγ activation and impairs the rosiglitazone-dependent interaction between PPARγ and its coactivator CBP. Overall, our data suggest that kaempferol, as a PPARγ antagonist, mediates epigenetic repression of lipid accumulation by regulating histone methylation, and could serve as a candidate epigenetic drug to treat obesity-related diseases.


Assuntos
Adipogenia , PPAR gama , Células 3T3-L1 , Adipócitos/metabolismo , Animais , Histonas/metabolismo , Quempferóis/farmacologia , Metilação , Camundongos , PPAR gama/genética , PPAR gama/metabolismo , Rosiglitazona
2.
Mol Cell ; 51(2): 200-10, 2013 Jul 25.
Artigo em Inglês | MEDLINE | ID: mdl-23850490

RESUMO

Despite the importance of retinoic acid (RA) signaling and histone monoubiquitination in determining cell fate, the underlying mechanism linking the two processes is poorly explored. We describe that additional sex comb-like 1 (ASXL1) represses RA receptor activity by cooperating with BRCA1-associated protein 1 (BAP1), which contains the ubiquitin C-terminal hydrolase (UCH) domain. Both the UCH- and ASXL1-binding domains of BAP1 were required for cooperation. In contrast to Drosophila BAP1, mammalian BAP1 cleaved ubiquitin from histone H2B. As supported by BAP1 mutants, ASXL1 was critical for BAP1 recruitment to chromatin and its activation therein. ASXL1 requirement was supported using Asxl1 null mice embryonic fibroblasts. Both ASXL1 and BAP1 were downregulated during RA-induced P19 cell differentiation with concomitant increase of ubiquitinated H2B, leading to activation of Hox genes. Our data demonstrate the critical role of ASXL1 cooperation with BAP1 in cell differentiation through the regulation of RA signaling associated with H2B ubiquitination.


Assuntos
Regulação da Expressão Gênica , Histonas/metabolismo , Proteínas Repressoras/fisiologia , Tretinoína/farmacologia , Proteínas Supressoras de Tumor/metabolismo , Ubiquitina Tiolesterase/metabolismo , Ubiquitina/metabolismo , Animais , Sítios de Ligação , Carcinoma Pulmonar de Células não Pequenas/metabolismo , Carcinoma Pulmonar de Células não Pequenas/patologia , Células Cultivadas , Embrião de Mamíferos/citologia , Embrião de Mamíferos/metabolismo , Fibroblastos/citologia , Fibroblastos/metabolismo , Humanos , Neoplasias Pulmonares/metabolismo , Neoplasias Pulmonares/patologia , Camundongos , Camundongos Knockout , Regiões Promotoras Genéticas/genética , Transdução de Sinais , Transcrição Gênica/genética , Proteínas Supressoras de Tumor/genética , Ubiquitina Tiolesterase/genética , Ubiquitinação
3.
Int J Mol Sci ; 22(18)2021 Sep 11.
Artigo em Inglês | MEDLINE | ID: mdl-34576008

RESUMO

GBM is a high-grade cancer that originates from glial cells and has a poor prognosis. Although a combination of surgery, radiotherapy, and chemotherapy is prescribed to patients, GBM is highly resistant to therapies, and surviving cells show increased aggressiveness. In this study, we investigated the molecular mechanism underlying GBM progression after radiotherapy by establishing a GBM orthotopic xenograft mouse model. Based on transcriptomic analysis, we found that the expression of BEX1 and BEX4 was upregulated in GBM cells surviving radiotherapy. We also found that upregulated expression of BEX1 and BEX4 was involved in the formation of the filamentous cytoskeleton and altered mechanotransduction, which resulted in the activation of the YAP/TAZ signaling pathway. BEX1- and BEX4-mediated YAP/TAZ activation enhanced the tumor formation, growth, and radioresistance of GBM cells. Additionally, latrunculin B inhibited GBM progression after radiotherapy by suppressing actin polymerization in an orthotopic xenograft mouse model. Taken together, we suggest the involvement of cytoskeleton formation in radiation-induced GBM progression and latrunculin B as a GBM radiosensitizer.


Assuntos
Actinas/metabolismo , Proteínas Adaptadoras de Transdução de Sinal/metabolismo , Glioblastoma/metabolismo , Proteínas Associadas aos Microtúbulos/metabolismo , Proteínas do Tecido Nervoso/metabolismo , Proteínas Oncogênicas/metabolismo , Transdução de Sinais , Fatores de Transcrição/metabolismo , Actinas/genética , Proteínas Adaptadoras de Transdução de Sinal/genética , Animais , Linhagem Celular Tumoral , Glioblastoma/genética , Glioblastoma/patologia , Xenoenxertos , Humanos , Masculino , Camundongos , Camundongos Endogâmicos BALB C , Camundongos Nus , Proteínas Associadas aos Microtúbulos/genética , Transplante de Neoplasias , Proteínas do Tecido Nervoso/genética , Proteínas Oncogênicas/genética , Fatores de Transcrição/genética , Proteínas de Sinalização YAP
4.
Int J Mol Sci ; 22(6)2021 Mar 15.
Artigo em Inglês | MEDLINE | ID: mdl-33804169

RESUMO

Glioblastoma multiforme (GBM) is a malignant primary brain tumor with poor patient prognosis. Although the standard treatment of GBM is surgery followed by chemotherapy and radiotherapy, often a small portion of surviving tumor cells acquire therapeutic resistance and become more aggressive. Recently, altered kinase expression and activity have been shown to determine metabolic flux in tumor cells and metabolic reprogramming has emerged as a tumor progression regulatory mechanism. Here we investigated novel kinase-mediated metabolic alterations that lead to acquired GBM radioresistance and malignancy. We utilized transcriptomic analyses within a radioresistant GBM orthotopic xenograft mouse model that overexpresses the dual specificity tyrosine-phosphorylation-regulated kinase 3 (DYRK3). We find that within GBM cells, radiation exposure induces DYRK3 expression and DYRK3 regulates mammalian target of rapamycin complex 1 (mTORC1) activity through phosphorylation of proline-rich AKT1 substrate 1 (PRAS40). We also find that DYRK3 knockdown inhibits dynamin-related protein 1 (DRP1)-mediated mitochondrial fission, leading to increased oxidative phosphorylation (OXPHOS) and reduced glycolysis. Importantly, enforced DYRK3 downregulation following irradiation significantly impaired GBM cell migration and invasion. Collectively, we suggest DYRK3 suppression may be a novel strategy for preventing GBM malignancy through regulating mitochondrial metabolism.


Assuntos
Proteínas Adaptadoras de Transdução de Sinal/genética , Dinaminas/genética , Glioblastoma/radioterapia , Proteínas Serina-Treonina Quinases/genética , Proteínas Tirosina Quinases/genética , Animais , Linhagem Celular Tumoral , Proliferação de Células/genética , Proliferação de Células/efeitos da radiação , Regulação Neoplásica da Expressão Gênica/efeitos da radiação , Glioblastoma/genética , Glioblastoma/patologia , Humanos , Camundongos , Mitocôndrias/genética , Mitocôndrias/patologia , Mitocôndrias/efeitos da radiação , Fosforilação Oxidativa/efeitos da radiação , Proteínas Proto-Oncogênicas c-akt/genética , Tolerância a Radiação/genética , Ensaios Antitumorais Modelo de Xenoenxerto
5.
Int J Mol Sci ; 22(10)2021 May 12.
Artigo em Inglês | MEDLINE | ID: mdl-34065991

RESUMO

Although there are many patients with brain tumors worldwide, there are numerous difficulties in overcoming brain tumors. Among brain tumors, glioblastoma, with a 5-year survival rate of 5.1%, is the most malignant. In addition to surgical operations, chemotherapy and radiotherapy are generally performed, but the patients have very limited options. Temozolomide is the most commonly prescribed drug for patients with glioblastoma. However, it is difficult to completely remove the tumor with this drug alone. Therefore, it is necessary to discuss the potential of anticancer drugs, other than temozolomide, against glioblastomas. Since the discovery of cisplatin, platinum-based drugs have become one of the leading chemotherapeutic drugs. Although many studies have reported the efficacy of platinum-based anticancer drugs against various carcinomas, studies on their effectiveness against brain tumors are insufficient. In this review, we elucidated the anticancer effects and advantages of platinum-based drugs used in brain tumors. In addition, the cases and limitations of the clinical application of platinum-based drugs are summarized. As a solution to overcome these obstacles, we emphasized the potential of a novel approach to increase the effectiveness of platinum-based drugs.


Assuntos
Antineoplásicos/uso terapêutico , Neoplasias Encefálicas/tratamento farmacológico , Glioblastoma/tratamento farmacológico , Compostos de Platina/uso terapêutico , Antineoplásicos/farmacologia , Neoplasias Encefálicas/metabolismo , Ensaios Clínicos como Assunto , Resistencia a Medicamentos Antineoplásicos/efeitos dos fármacos , Regulação Neoplásica da Expressão Gênica/efeitos dos fármacos , Glioblastoma/metabolismo , Humanos , Compostos de Platina/farmacologia , Análise de Sobrevida , Resultado do Tratamento
6.
Mol Ther ; 27(2): 342-354, 2019 02 06.
Artigo em Inglês | MEDLINE | ID: mdl-30424954

RESUMO

Radiotherapy has been a central part in curing non-small cell lung cancer (NSCLC). However, it is possible that not all of the tumor cells are destroyed by radiation; therefore, it is important to effectively control residual tumor cells that could become aggressive and resistant to radiotherapy. In this study, we aimed to investigate the molecular mechanism of decreased NSCLC radioresistance by low-dose radiation (LDR) pretreatment. The results indicated that miR-30a and miR-30b, which effectively inhibited plasminogen activator inhibitor-1 (PAI-1), were overexpressed by treatment of LDR to NSCLC cells. Phosphorylation of Akt and ERK, the downstream survival signals of PAI-1, was decreased by PAI-1 inhibition. Reduced cell survival and epithelial-mesenchymal transition by PAI-1 inhibition were confirmed in NSCLC cells. Moreover, in vivo orthotopic xenograft mouse models with 7C1 nanoparticles to deliver miRNAs showed that tumor growth and aggressiveness were efficiently decreased by LDR treatment followed by radiotherapy. Taken together, the present study suggested that PAI-1, whose expression is regulated by LDR, was critical for controlling surviving tumor cells after radiotherapy.


Assuntos
Carcinoma Pulmonar de Células não Pequenas/radioterapia , MicroRNAs/metabolismo , Células A549 , Animais , Apoptose/genética , Apoptose/fisiologia , Western Blotting , Carcinoma Pulmonar de Células não Pequenas/genética , Caspase 3/genética , Caspase 3/metabolismo , Linhagem Celular Tumoral , Feminino , Regulação Neoplásica da Expressão Gênica/genética , Regulação Neoplásica da Expressão Gênica/efeitos da radiação , Humanos , Neoplasias Pulmonares/genética , Neoplasias Pulmonares/radioterapia , Camundongos , Camundongos Endogâmicos BALB C , Camundongos Nus , MicroRNAs/genética , Nanopartículas/química , Reação em Cadeia da Polimerase em Tempo Real , Cicatrização/genética , Cicatrização/fisiologia
7.
Biochem Biophys Res Commun ; 508(3): 907-913, 2019 01 15.
Artigo em Inglês | MEDLINE | ID: mdl-30545639

RESUMO

Additional sex comb-like1 (Asxl1) is known as a chromatin modulator that plays dual functions in transcriptional regulation depending on the cell type. Recent studies using Asxl1 knockout mice revealed that Asxl1 is important for the proliferation and differentiation of hematopoietic progenitor cells, and the development of organs. Although we previously reported Asxl1 as a Sox2 target gene, its function in embryonic stem cells (ESCs) remains largely unknown. For this purpose, we isolated ESCs from the blastocyst inner cell mass of Asxl1-/- mice. Asxl1 deficiency in ESCs exhibited no effect on cell proliferation, expression of core pluripotent transcription factors, or alkaline phosphatase activity, suggesting dispensability of Asxl1 for self-renewal of ESCs. By contrast, the differentiation of Asxl1-/- ESCs was significantly affected as shown by size reductions of embryoid bodies accompanied with apoptosis, aberrant expression of differentiation genes, downregulation of bivalent neurogenesis genes, and abnormal axon formation in neurons. Overall, our findings indicated that Asxl1 played a critical role in regulating genes associated with neural differentiation without affecting self-renewal of mouse ESCs.


Assuntos
Células-Tronco Embrionárias/fisiologia , Neurogênese/genética , Proteínas Repressoras/fisiologia , Animais , Axônios/ultraestrutura , Células Cultivadas , Corpos Embrioides/citologia , Regulação da Expressão Gênica , Técnicas de Inativação de Genes , Camundongos , Proteínas Repressoras/genética
8.
Biol Res ; 52(1): 35, 2019 Jul 11.
Artigo em Inglês | MEDLINE | ID: mdl-31296259

RESUMO

BACKGROUND: Non-small cell lung cancer (NSCLC) is one of the leading causes of death in the world. NSCLC diagnosed at an early stage can be highly curable with a positive prognosis, but biomarker limitations make it difficult to diagnose lung cancer at an early stage. To identify biomarkers for lung cancer development, we previously focused on the oncogenic roles of transcription factor TFAP2C in lung cancers and revealed the molecular mechanism of several oncogenes in lung tumorigenesis based on TFAP2C-related microarray analysis. RESULTS: In this study, we analyzed microarray data to identify tumor suppressor genes and nine genes downregulated by TFAP2C were screened. Among the nine genes, we focused on growth arrest and DNA-damage-inducible beta (GADD45B) and phorbol-12-myristate-13-acetate-induced protein 1 (PMAIP1) as representative TFAP2C-regulated tumor suppressor genes. It was observed that overexpressed TFAP2C resulted in inhibition of GADD45B and PMAIP1 expressions at both the mRNA and protein levels in NSCLC cells. In addition, downregulation of GADD45B and PMAIP1 by TFAP2C promoted cell proliferation and cell motility, which are closely associated with NSCLC tumorigenesis. CONCLUSION: This study indicates that GADD45B and PMAIP1 could be promising tumor suppressors for NSCLC and might be useful as prognostic markers for use in NSCLC therapy.


Assuntos
Antígenos de Diferenciação/genética , Carcinoma Pulmonar de Células não Pequenas/genética , Proliferação de Células/genética , Regulação para Baixo/genética , Neoplasias Pulmonares/genética , Fator de Transcrição AP-2/genética , Biomarcadores Tumorais/análise , Linhagem Celular Tumoral , Regulação Neoplásica da Expressão Gênica , Genes Supressores de Tumor/fisiologia , Humanos , RNA Mensageiro/análise , RNA Interferente Pequeno/análise
9.
Phytother Res ; 33(9): 2429-2439, 2019 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-31359554

RESUMO

Previously, we reported that piperine, one of the major pungent components in black pepper, attenuates adipogenesis by repressing PPARγ activity in 3T3-L1 preadipocytes. However, the epigenetic mechanisms underlying this activity remain unexplored. Here, gene set enrichment analysis using microarray data indicated that there was significant downregulation of adipogenesis-associated and PPARγ target genes and upregulation of genes bound with H3K27me3 in response to piperine. As shown by Gene Ontology analysis, the upregulated genes are related to lipid oxidation and polycomb repressive complex 2 (PRC2). Chromatin immunoprecipitation assays revealed that PPARγ (and its coactivators), H3K4me3, and H3K9ac were less enriched at the PPAR response element of three adipogenic genes, whereas increased accumulation of H3K9me2, H3K27me3, and Ezh2 was found, which likely led to the reduced gene expression. Further analysis using three lipolytic genes revealed the opposite enrichment pattern of H3K4me3 and H3K27me3 at the Ezh2 binding site. Treatment with GSK343, an Ezh2 inhibitor, elevated lipolytic gene expression by decreasing the enrichment of H3K27me3 during adipogenesis, which confirms that Ezh2 plays a repressive role in lipolysis. Overall, these results suggest that piperine regulates the expression of adipogenic and lipolytic genes by dynamic regulation of histone modifications, leading to the repression of adipocyte differentiation.


Assuntos
Adipócitos/efeitos dos fármacos , Adipogenia/fisiologia , Alcaloides/uso terapêutico , Benzodioxóis/uso terapêutico , Código das Histonas/fisiologia , Piperidinas/uso terapêutico , Alcamidas Poli-Insaturadas/uso terapêutico , Alcaloides/farmacologia , Benzodioxóis/farmacologia , Diferenciação Celular , Humanos , Piperidinas/farmacologia , Alcamidas Poli-Insaturadas/farmacologia
10.
Int J Mol Sci ; 20(8)2019 Apr 25.
Artigo em Inglês | MEDLINE | ID: mdl-31027222

RESUMO

Activation of epithelial-mesenchymal transition (EMT) is thought to be an essential step for cancer metastasis. Tumor cells undergo EMT in response to a diverse range of extra- and intracellular stimulants. Recently, it was reported that metabolic shifts control EMT progression and induce tumor aggressiveness. In this review, we summarize the involvement of altered glucose, lipid, and amino acid metabolic enzyme expression and the underlying molecular mechanisms in EMT induction in tumor cells. Moreover, we propose that metabolic regulation through gene-specific or pharmacological inhibition may suppress EMT and this treatment strategy may be applied to prevent tumor progression and improve anti-tumor therapeutic efficacy. This review presents evidence for the importance of metabolic changes in tumor progression and emphasizes the need for further studies to better understand tumor metabolism.


Assuntos
Transição Epitelial-Mesenquimal , Metabolismo , Aminoácidos/metabolismo , Animais , Glucose/metabolismo , Humanos , Metabolismo dos Lipídeos , Neoplasias/metabolismo , Neoplasias/terapia
11.
Cell Physiol Biochem ; 47(6): 2233-2249, 2018.
Artigo em Inglês | MEDLINE | ID: mdl-29975946

RESUMO

BACKGROUND/AIMS: Non-alcoholic fatty liver disease (NAFLD) is an emerging metabolic disease. Although it leads to severe hepatic diseases including steatohepatitis, cirrhosis, and hepatic cancer, little is known about therapy to prevent and cure hepatic steatosis, the first step of NAFLD. We conducted this investigation to unveil the mechanism of hepatic steatosis. METHODS: We established a novel chronic NAFLD mouse model through whole body irradiation and verified the model through histological and biochemical analysis. To find molecular mechanism for hepatic steatosis, we analyzed hepatic transcriptomic profiles in this model and selected target molecule. To induce the expression of lactotransferrin (Ltf) and regulate the NAFLD, growth hormone (GH) and coumestrol was introduced to hepatocyte and mice. The universal effect of coumestrol was confirmed by administration of coumestrol to NAFLD mouse model induced by high-fructose, high-fat, and MCD diet. RESULTS: It was observed that decreased hepatic Ltf expression led to excessive hepatic lipid accumulation in NAFLD mouse. Furthermore, we found that GH was decreased in irradiated mice and functioned as an upstream regulator of Ltf expression. It was observed that GH could stimulate Ltf expression and prevent uptake of dietary lipids in hepatocytes, leading to rescue of NAFLD. Finally, we suggested that coumestrol, a kind of isoflavonoid, could be used as an inducer of hepatic Ltf expression through cooperation with the GH signaling pathway both in vitro and in vivo. CONCLUSIONS: Hepatic Ltf prevents hepatic steatosis through inhibition of dietary lipid uptake in radiation-induced NAFLD mouse model. We also suggest coumestrol as a drug candidate for prevention of NAFLD.


Assuntos
Hepatócitos/metabolismo , Lactoferrina/biossíntese , Hepatopatia Gordurosa não Alcoólica/metabolismo , Transdução de Sinais , Animais , Linhagem Celular , Doença Crônica , Gorduras na Dieta/metabolismo , Gorduras na Dieta/farmacologia , Hepatócitos/patologia , Masculino , Camundongos , Hepatopatia Gordurosa não Alcoólica/genética , Hepatopatia Gordurosa não Alcoólica/patologia , Hepatopatia Gordurosa não Alcoólica/prevenção & controle , Lesões Experimentais por Radiação/genética , Lesões Experimentais por Radiação/metabolismo , Lesões Experimentais por Radiação/patologia , Lesões Experimentais por Radiação/prevenção & controle
12.
Int J Mol Sci ; 19(9)2018 Sep 17.
Artigo em Inglês | MEDLINE | ID: mdl-30227629

RESUMO

Hyperthermia is a cancer treatment where tumor tissue is heated to around 40 °C. Hyperthermia shows both cancer cell cytotoxicity and immune response stimulation via immune cell activation. Immunogenic responses encompass the innate and adaptive immune systems, involving the activation of macrophages, natural killer cells, dendritic cells, and T cells. Moreover, hyperthermia is commonly used in combination with different treatment modalities, such as radiotherapy and chemotherapy, for better clinical outcomes. In this review, we will focus on hyperthermia-induced immunogenic effects and molecular events to improve radiotherapy efficacy. The beneficial potential of integrating radiotherapy with hyperthermia is also discussed.


Assuntos
Hipertermia Induzida/métodos , Neoplasias/terapia , Radioterapia/métodos , Animais , Terapia Combinada/métodos , Humanos , Imunidade Celular , Imunidade Inata , Imunoterapia/métodos , Neoplasias/imunologia , Neoplasias/patologia , Neoplasias/radioterapia
13.
Am J Physiol Lung Cell Mol Physiol ; 313(5): L916-L929, 2017 Nov 01.
Artigo em Inglês | MEDLINE | ID: mdl-28798253

RESUMO

Radiation-induced pulmonary fibrosis (RIPF) is one of the most common side effects of lung cancer radiotherapy. This study was conducted to identify the molecular mechanism responsible for RIPF. We revealed that the transcriptional level of cytochrome P450 2E1 (CYP2E1) was elevated by examining expression profile analysis of RIPF mouse models. We also confirmed that CYP2E1 regulated levels of endoplasmic reticulum (ER) stress and reactive oxygen species (ROS) in alveolar epithelial type II (AE2) cells and lung fibroblasts. Inhibition of CYP2E1 via its siRNA or inhibitor significantly attenuated epithelial-to-mesenchymal transition and apoptosis of AE2 cells, as well as myofibroblast formation induced by radiation. Finally, the effects of a CYP2E1 inhibitor on development of RIPF were evaluated by in vivo studies. Taken together, the results of the present study suggest that CYP2E1 is an important mediator of RIPF development that functions by increasing cellular ER stress and ROS levels.


Assuntos
Citocromo P-450 CYP2E1/farmacologia , Estresse do Retículo Endoplasmático/efeitos dos fármacos , Fibrose Pulmonar/tratamento farmacológico , Pneumonite por Radiação/tratamento farmacológico , Espécies Reativas de Oxigênio/metabolismo , Animais , Apoptose/efeitos dos fármacos , Retículo Endoplasmático/efeitos dos fármacos , Transição Epitelial-Mesenquimal/efeitos dos fármacos , Humanos , Pulmão/metabolismo , Camundongos Endogâmicos C57BL , Estresse Oxidativo/efeitos dos fármacos
14.
Cell Physiol Biochem ; 42(4): 1684-1700, 2017.
Artigo em Inglês | MEDLINE | ID: mdl-28743125

RESUMO

BACKGROUND/AIMS: Radiotherapy is applied to patients with inoperable cancer types including advanced stage non-small cell lung cancer (NSCLC) and radioresistance functions as a critical obstacle in radiotherapy. This study was aimed to investigate the mechanism of radioresistance regulated by surfactant protein B (SP-B). METHODS: To investigate the role of SP-B in radioresistance, ΔSFTPB A549 cell line was established and SP-B expression was analyzed. In response to ionizing radiation (IR), the change of SP-B expression was analyzed in A549 and NCI-H441 cell lines. Conditioned media (CM) from NSCLC cells were utilized to evaluate the downstream signaling pathway. The in vivo effects of SP-B were assessed through mouse xenograft model with intratumoral injection of CM. RESULTS: In response to IR, NSCLC cell lines showed decreased SP-B regulated by the TGF-ß signaling and decreased SP-B stimulated cell survival and epithelial-mesenchymal transition. Treatment with CM from irradiated cells activated sPLA2, enhanced protein kinase Cδ-MAPKs signaling pathway, and increased arachidonic acid production. We confirmed the in vivo roles of SP-B through mouse xenograft model. CONCLUSION: Our results revealed that down-regulation of SP-B was involved in the radiation-induced metastatic conversion of NSCLC and provided evidence that SP-B acted as a suppressor of NSCLC progression.


Assuntos
Ácido Araquidônico/antagonistas & inibidores , Carcinoma Pulmonar de Células não Pequenas/genética , Regulação Neoplásica da Expressão Gênica , Neoplasias Pulmonares/genética , Fosfolipases A2 Secretórias/genética , Proteína B Associada a Surfactante Pulmonar/genética , Células A549 , Animais , Ácido Araquidônico/metabolismo , Carcinoma Pulmonar de Células não Pequenas/metabolismo , Carcinoma Pulmonar de Células não Pequenas/patologia , Carcinoma Pulmonar de Células não Pequenas/radioterapia , Meios de Cultivo Condicionados/farmacologia , Progressão da Doença , Transição Epitelial-Mesenquimal/efeitos dos fármacos , Xenoenxertos , Humanos , Neoplasias Pulmonares/metabolismo , Neoplasias Pulmonares/patologia , Neoplasias Pulmonares/radioterapia , Masculino , Camundongos , Camundongos Endogâmicos BALB C , Proteínas Quinases Ativadas por Mitógeno/genética , Proteínas Quinases Ativadas por Mitógeno/metabolismo , Transplante de Neoplasias , Fosfolipases A2 Secretórias/antagonistas & inibidores , Fosfolipases A2 Secretórias/metabolismo , Proteína Quinase C-delta/genética , Proteína Quinase C-delta/metabolismo , Proteína B Associada a Surfactante Pulmonar/metabolismo , Tolerância a Radiação/genética , Radiação Ionizante , Transdução de Sinais , Fator de Crescimento Transformador beta/genética , Fator de Crescimento Transformador beta/metabolismo
15.
J Cell Biochem ; 116(11): 2504-16, 2015 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-25900216

RESUMO

Frequent relapse and spreading of tumors during radiotherapy are principal obstacles to treatment of non-small cell lung cancer (NSCLC). In this study, we aimed to investigate how macrophage migration inhibitory factor (MIF) which is expressed at high levels in metastatic and primary lung cancer cells could regulate NSCLC metastasis in response to ionizing radiation (IR). The results indicated that MIF and ribosomal protein S3 (rpS3) were shown to be connected to inflammation, proliferation, and metastasis of NSCLC via IR-induced activation of the NF-κB pathway. Under unirradiated conditions, MIF physically established a complex with rpS3. MIF-rpS3 dissociation induced by IR activated NF-κB and made the expression of target genes of this factor transactivated in two NSCLC cell lines, A549, and NCI-H358. We also found that IR-induced dissociation of this complex led to increased secretion of pro-inflammatory cytokines and modulated the expression of epithelial-mesenchymal transition marker proteins. Finally, the effects of IR-induced dissociation of the MIF-rpS3 complex on tumor metastasis were confirmed by in vivo xenograft studies. Taken together, the present study revealed that dissociation of the MIF-rpS3 complex and subsequent activation of NF-κB is a critical post-IR exposure event that accounts for IR-induced metastatic conversion of NSCLC.


Assuntos
Carcinoma Pulmonar de Células não Pequenas/patologia , Oxirredutases Intramoleculares/metabolismo , Neoplasias Pulmonares/patologia , Fatores Inibidores da Migração de Macrófagos/metabolismo , NF-kappa B/metabolismo , Proteínas Ribossômicas/metabolismo , Animais , Carcinoma Pulmonar de Células não Pequenas/metabolismo , Linhagem Celular Tumoral , Transição Epitelial-Mesenquimal/efeitos da radiação , Regulação Neoplásica da Expressão Gênica/efeitos da radiação , Humanos , Neoplasias Pulmonares/metabolismo , Camundongos , Metástase Neoplásica , Transplante de Neoplasias , Ligação Proteica/efeitos da radiação , Radiação Ionizante , Transdução de Sinais/efeitos da radiação
16.
Apoptosis ; 20(9): 1242-52, 2015 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-26033480

RESUMO

Inflammation plays a pivotal role in modulating the radiation responsiveness of tumors. We determined that an inflammation response prior to irradiation contributes to radiotherapy resistance in non-small cell lung cancer (NSCLC) cells. In the clonogenic survival assay, activation of the inflammation response by lipopolysaccharide (LPS) decreased the degree of radiosensitivity in NCI-H460 cells (relatively radiosensitive cells), but had no effect in A549 cells (relatively radioresistant cells). LPS-induced radioresistance of NCI-H460 cells was also confirmed with a xenograft mouse model. The radioresistant effect observed in NCI-H460 cells was correlated with inhibition of apoptotic cell death due to reduced Caspase 3/7 activity. Moreover, we found that the levels of reactive oxygen species (ROS) were synergistically elevated in NCI-H460 cells by treatment with LPS and radiation. Increased ROS generation negatively affected the activity of protein phosphatase 1 (PP1). Decreased PP1 activity did not lead to Bad dephosphorylation, consequently resulting in the inhibition of irradiation-induced mitochondrial membrane potential loss and apoptosis. We confirmed that pre-treatment with a PP1 activator and LPS sensitized NCI-H460 cells to radiation. Taken together, our findings provided evidence that PP1 activity is critical for radiosensitization in NSCLC cells and PP1 activators can serve as promising radiosensitizers to improve therapeutic efficacy.


Assuntos
Carcinoma Pulmonar de Células não Pequenas/metabolismo , Neoplasias Pulmonares/metabolismo , Proteína Fosfatase 1/metabolismo , Tolerância a Radiação/efeitos dos fármacos , Espécies Reativas de Oxigênio/metabolismo , Animais , Apoptose/efeitos dos fármacos , Apoptose/efeitos da radiação , Carcinoma Pulmonar de Células não Pequenas/patologia , Carcinoma Pulmonar de Células não Pequenas/terapia , Caspases/metabolismo , Linhagem Celular Tumoral , Ativadores de Enzimas/farmacologia , Raios gama/uso terapêutico , Xenoenxertos , Humanos , Inflamação/metabolismo , Lipopolissacarídeos/farmacologia , Neoplasias Pulmonares/patologia , Neoplasias Pulmonares/terapia , Masculino , Potencial da Membrana Mitocondrial/efeitos dos fármacos , Camundongos Endogâmicos BALB C , Camundongos Nus
17.
Exp Dermatol ; 24(8): 611-7, 2015 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-25939425

RESUMO

The hedgehog (Hh) signalling pathway regulates normal development and cell proliferation in metazoan organisms, but its aberrant activation can promote tumorigenesis and progression of a variety of aggressive human cancers including skin cancer. Despite its importance, little is known about its role in photoageing, a type of UV-induced skin lesions. In this study, we investigated the involvement of Hh signalling in the photoageing process as well as the use of an Hh-regulating alkaloid compound as a novel therapeutic drug to regulate photoageing in keratinocytes. We found that UVB induced Hh signalling by the expression of Hh ligands and Hh-mediated transcription factors, respectively. Moreover, UVB-induced Hh activation relied on mitogen-activated protein kinase (p38, ERK and JNK) activity and inflammatory responses (upregulation of COX-2, IL-1ß, IL-6 and TNF-α), resulting in premature senescence and photoageing in vitro and in vivo. Notably, a selected Hh inhibitor, evodiamine, mediated photoageing blockade in a mouse skin model. Taken together, our findings demonstrated that Hh signalling is associated with UVB-induced photoageing, while pharmacological inhibition of Hh signalling significantly reduced experimental photoageing, indicating its potential for use as a therapeutic target for this disease.


Assuntos
Anilidas/uso terapêutico , Flavonoides/uso terapêutico , Proteínas Hedgehog/antagonistas & inibidores , Piridinas/uso terapêutico , Quinazolinas/uso terapêutico , Transdução de Sinais/efeitos dos fármacos , Envelhecimento da Pele/efeitos dos fármacos , Raios Ultravioleta/efeitos adversos , Envelhecimento/genética , Envelhecimento/metabolismo , Anilidas/farmacologia , Animais , Linhagem Celular , Ciclo-Oxigenase 2/biossíntese , Ciclo-Oxigenase 2/genética , Citocinas/biossíntese , Citocinas/genética , Avaliação Pré-Clínica de Medicamentos , Flavonoides/farmacologia , Regulação da Expressão Gênica/efeitos dos fármacos , Regulação da Expressão Gênica/efeitos da radiação , Proteínas Hedgehog/biossíntese , Proteínas Hedgehog/genética , Proteínas Hedgehog/fisiologia , Humanos , Inflamação , Sistema de Sinalização das MAP Quinases/efeitos dos fármacos , Camundongos , Piridinas/farmacologia , Quinazolinas/farmacologia , RNA Mensageiro/biossíntese , RNA Mensageiro/genética , Ratos , Ratos Sprague-Dawley , Envelhecimento da Pele/genética , Inibidor Tecidual de Metaloproteinase-1/biossíntese , Inibidor Tecidual de Metaloproteinase-1/genética
18.
J Biol Chem ; 288(5): 2965-75, 2013 Feb 01.
Artigo em Inglês | MEDLINE | ID: mdl-23188828

RESUMO

Radioresistance is considered as a main factor restricting efficacy of radiotherapy. However, the exact molecular mechanism of radioresistance has not been explained yet. In this study, to elucidate radioresistance mechanism in lung cancer, we compared radiation responses in two types of non-small cell lung cancer (NSCLC) cells with different radiosensitivity and identified key molecules conferring radioresistance. In radioresistant NSCLC cells, ionizing radiation (IR) led to casein kinase 2α (CK2α)- and PKC-mediated phosphorylation of rpS3 and TRAF2, respectively, which induced dissociation of rpS3-TRAF2 complex and NF-κB activation, resulting in significant up-regulation of prosurvival genes (cIAP1, cIAP2, and survivin). Also, dissociated phospho-rpS3 translocated into nucleus and bound with NF-κB complex (p65 and p50), contributing to p65 DNA binding property and specificity. However, in radiosensitive NSCLC cells, IR-mediated rpS3 phosphorylation was not detected due to the absence of CK2α overexpression. Consequently, IR-induced rpS3-TRAF2 complex dissociation, NF-κB activation, and prosurvival gene expression were not presented. Taken together, our findings revealed a novel radioresistance mechanism through functional orchestration of rpS3, TRAF2, and NF-κB in NSCLC cells. Moreover, we provided the first evidence for the function of rpS3 as a new TRAF2-binding protein and demonstrated that phosphorylation of both rpS3 and TRAF2 is a key control point of radioresistance in NSCLC cells. These results suggest that regulation of rpS3 and TRAF2 in combination with radiotherapy could have high pharmacological therapeutic potency for radioresistance of NSCLC.


Assuntos
Apoptose , Carcinoma Pulmonar de Células não Pequenas/metabolismo , Neoplasias Pulmonares/metabolismo , Tolerância a Radiação/efeitos da radiação , Proteínas Ribossômicas/metabolismo , Fator 2 Associado a Receptor de TNF/metabolismo , Apoptose/efeitos da radiação , Carcinoma Pulmonar de Células não Pequenas/patologia , Caseína Quinase II/metabolismo , Linhagem Celular Tumoral , Núcleo Celular/metabolismo , Núcleo Celular/efeitos da radiação , Humanos , Neoplasias Pulmonares/patologia , Modelos Biológicos , NF-kappa B/metabolismo , Fosforilação/efeitos da radiação , Ligação Proteica/efeitos da radiação , Transporte Proteico/efeitos da radiação , Radiação Ionizante
19.
J Biol Chem ; 288(38): 27343-27357, 2013 Sep 20.
Artigo em Inglês | MEDLINE | ID: mdl-23902763

RESUMO

Radioresistance is a major cause of decreasing the efficiency of radiotherapy for non-small cell lung cancer (NSCLC). To understand the radioresistance mechanisms in NSCLC, we focused on the radiation-induced Notch-1 signaling pathway involved in critical cell fate decisions by modulating cell proliferation. In this study, we investigated the use of Notch-1-regulating flavonoid compounds as novel therapeutic drugs to regulate radiosensitivity in NSCLC cells, NCI-H1299 and NCI-H460, with different levels of radioresistance. Rhamnetin and cirsiliol were selected as candidate Notch-1-regulating radiosensitizers based on the results of assay screening for activity and pharmacological properties. Treatment with rhamnetin or cirsiliol reduced the proliferation of NSCLC cells through the suppression of radiation-induced Notch-1 expression. Indeed, rhamnetin and cirsiliol increased the expression of tumor-suppressive microRNA, miR-34a, in a p53-dependent manner, leading to inhibition of Notch-1 expression. Consequently, reduced Notch-1 expression promoted apoptosis through significant down-regulation of the nuclear factor-κB pathway, resulting in a radiosensitizing effect on NSCLC cells. Irradiation-induced epithelial-mesenchymal transition was also notably attenuated in the presence of rhamnetin and cirsiliol. Moreover, an in vivo xenograft mouse model confirmed the radiosensitizing and epithelial-mesenchymal transition inhibition effects of rhamnetin and cirsiliol we observed in vitro. In these mice, tumor volume was significantly reduced by combinational treatment with irradiation and rhamnetin or cirsiliol compared with irradiation alone. Taken together, our findings provided evidence that rhamnetin and cirsiliol can act as promising radiosensitizers that enhance the radiotherapeutic efficacy by inhibiting radiation-induced Notch-1 signaling associated with radioresistance possibly via miR-34a-mediated pathways.


Assuntos
Carcinoma Pulmonar de Células não Pequenas/terapia , Transição Epitelial-Mesenquimal , Flavonas/farmacologia , Raios gama , Regulação Neoplásica da Expressão Gênica , Neoplasias Pulmonares/terapia , MicroRNAs/biossíntese , Quercetina/análogos & derivados , RNA Neoplásico/biossíntese , Tolerância a Radiação/efeitos dos fármacos , Receptor Notch1/biossíntese , Animais , Carcinoma Pulmonar de Células não Pequenas/metabolismo , Carcinoma Pulmonar de Células não Pequenas/patologia , Linhagem Celular Tumoral , Proliferação de Células/efeitos dos fármacos , Proliferação de Células/efeitos da radiação , Transição Epitelial-Mesenquimal/efeitos dos fármacos , Transição Epitelial-Mesenquimal/efeitos da radiação , Regulação Neoplásica da Expressão Gênica/efeitos dos fármacos , Regulação Neoplásica da Expressão Gênica/efeitos da radiação , Humanos , Neoplasias Pulmonares/metabolismo , Neoplasias Pulmonares/patologia , Masculino , Camundongos , Camundongos Endogâmicos BALB C , Camundongos Nus , NF-kappa B/metabolismo , Quercetina/farmacologia , Tolerância a Radiação/efeitos da radiação , Proteína Supressora de Tumor p53/metabolismo
20.
BMB Rep ; 57(6): 299-304, 2024 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-38835116

RESUMO

Upregulation of PRAME (preferentially expressed antigen of melanoma) has been implicated in the progression of a variety of cancers, including melanoma. The tumor suppressor p53 is a transcriptional regulator that mediates cell cycle arrest and apoptosis in response to stress signals. Here, we report that PRAME is a novel repressive target of p53. This was supported by analysis of melanoma cell lines carrying wild-type p53 and human melanoma databases. mRNA expression of PRAME was downregulated by p53 overexpression and activation using DNA-damaging agents, but upregulated by p53 depletion. We identified a p53-responsive element (p53RE) in the promoter region of PRAME. Luciferase and ChIP assays showed that p53 represses the transcriptional activity of the PRAME promoter and is recruited to the p53RE together with HDAC1 upon etoposide treatment. The functional significance of p53 activationmediated PRAME downregulation was demonstrated by measuring colony formation and p27 expression in melanoma cells. These data suggest that p53 activation, which leads to PRAME downregulation, could be a therapeutic strategy in melanoma cells. [BMB Reports 2024; 57(6): 299-304].


Assuntos
Antígenos de Neoplasias , Melanoma , Regiões Promotoras Genéticas , Proteína Supressora de Tumor p53 , Humanos , Proteína Supressora de Tumor p53/metabolismo , Melanoma/metabolismo , Melanoma/genética , Melanoma/patologia , Antígenos de Neoplasias/metabolismo , Antígenos de Neoplasias/genética , Linhagem Celular Tumoral , Regiões Promotoras Genéticas/genética , Regulação Neoplásica da Expressão Gênica , Etoposídeo/farmacologia , Histona Desacetilase 1/metabolismo , Regulação para Baixo/efeitos dos fármacos
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