1.Janus kinase 3 facilitates the migration of breast cancer cells by store-operated calcium channel.
Xia LIU ; Ting WEI ; Zhao-Di GAO ; Xiu-Liang ZHAO ; Hui-Qing WU ; Jing YAN
Acta Physiologica Sinica 2019;71(6):874-882
The present study was aimed to investigate the effect of Janus kinase 3 (JAK3) on the migration of breast cancer cells and the underlying mechanism. The expression of JAK3 in breast cancer MCF-7 cells was silenced by siRNA (siJAK3). The migration ability of MCF-7 cells was detected by scratch test. The activity of store-operated calcium channel (SOCC) was detected by fluorescence calcium imaging. The expression levels of Orai1 and STIM1, key molecules in the process of store-operated calcium entry (SOCE) were detected by Western blot and RT-PCR. The results showed that 2-APB, an inhibitor of SOCC, could inhibit the migration ability of MCF-7 cells. siJAK3 transfection significantly inhibited the migration ability of MCF-7 cells, decreased the activity of SOCC, and down-regulated mRNA and protein expression levels of Orai1 and Stim1. Over-expression of Orai1 or STIM1 in JAK3-silenced cells restored their migration ability. These results suggest that JAK3 facilitates the migration of breast cancer cells by SOCC.
Breast Neoplasms
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enzymology
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Calcium
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metabolism
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Calcium Channels
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metabolism
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Cell Movement
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physiology
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Gene Expression Regulation, Neoplastic
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Humans
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Janus Kinase 3
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genetics
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metabolism
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MCF-7 Cells
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ORAI1 Protein
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genetics
2.27-O-(E)-p-coumaric acyl ursolic acid via JNK/SAPK signal pathway regulates apoptosis of human breast cancer MDA-MB-231 cell line.
China Journal of Chinese Materia Medica 2015;40(4):722-726
27-O-(E)-p-coumaric acyl ursolic acid( DY-17) from Ilex latifolia is a compound of the monomer. To investigate the DY-17 inducing apoptosis in the human breast cancer cell line, the MDA-MB-231 cells were used as research object in this experiment. The proliferation activity of the MDA-MB-231 cells stimulated with the different concentrations of DY-17 (20, 40 µmol · L(-1)) was detected at different time( 12, 24, 36, 48, 60,72 h) . We surveyed the DY-17 inducing apoptosis of the MDA-MB-231 cells with the fluorescent staining technology. The rate of MDA-MB-231 cells apoptosis and necrosis was determined by flow cell cytometry (FCC). Moreover, expression of JNK, phosphorylated JNK, Bax, PARP shear and caspase-3 shear related to JNK/SAPK pathways were investigated in every group ( control group, EGF group, EGF + DY-17 40 µmol · L(1) group and EGF + SP600125 group) with Western blot. The MTT results showed that, in the presence of DY-17, the proliferation activity of MDA-MB-231 cells decreased in a dose-dependent and time-dependent manner. The apoptosis and necrosis rates of MDA-MB-231 cells with DY-17(20, 40 µmol · L(-1)) groups was respectively 31.86%, 49.91% by flow cytometry and significantly increased compared with control group under Fluores- cence microscopy. Up-regulation of the JNK phosphorylation protein expression was observed in EGF group compared with control group. In addition, markedly decreased the expression of JNK phosphorylation protein were also surveyed in EGF + DY-17 40 µmol · L(-1) group compared with EGF group. The expression of Bax, shear PARP and shear caspase-3 protein in EGF + DY-17 40 µmol · L(-1) group were significantly increased in comparison with EGF group. The results showed DY-17 induced apoptosis of human breast cancer MDA-MB-231 cell line related to down-regulating JNK/SAPK signal pathways.
Apoptosis
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drug effects
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Breast Neoplasms
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drug therapy
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enzymology
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genetics
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Cell Line, Tumor
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Cell Proliferation
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drug effects
;
Drugs, Chinese Herbal
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pharmacology
;
Female
;
Humans
;
MAP Kinase Kinase 4
;
genetics
;
metabolism
;
Mitogen-Activated Protein Kinase 8
;
genetics
;
metabolism
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Signal Transduction
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drug effects
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Triterpenes
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chemistry
;
pharmacology
3.Effect of sodium aescinate in inducing human breast cancer MCF-7 cells apoptosis by inhibiting AKT, ERK and upstream signal SRC activity.
Shi-mei QI ; Jun LV ; Yu MENG ; Zhi-lin QI ; Lie-feng LING
China Journal of Chinese Materia Medica 2015;40(16):3267-3272
To study the effect of sodium aescinate in inducing human breast cancer MCF-7 cells apoptosis and its possible mechanism. MTT assay was used to detect the inhibitory effect of sodium aescinate on the proliferation of MCF-7 cells. The morphological changes were observed under inverted microscope. DAPI nuclear staining was used to detect the changes in cell nucleus. Annexin V-FITC/PI flow cytometry was adopted to test the apoptosis rate. Changes in apoptosis-related proteins (PARP, cleaved caspase-8 and pro-caspase-3), cell survival-associated signal molecules (AKT and ERK) and their common upstream kinase SRC was detected by Western blotting. The result showed that after different concentrations of sodium aescinate were used to treat breast cancer MCF-7 cells, they inhibited the proliferation of MCF-7 cells in a dose-dependent manner, induced cell apoptosis (typical morphological changes in nucleus, significant increase in cell apoptosis rate). The expressions of cleaved PARP and caspase-8 increased, while the expression of pro-caspase-3 decreased, which further verified sodium aescinate's effect in inducing cell apoptosis. Sodium aescinate significantly inhibited the phosphorylation of cell survival-related signal molecules (AKT, ERK) and down-regulate the activation of their common up-stream kinase SRC. The findings indicated that sodium aescinate can block signals transiting to downstream molecules AKT, ERK, inhibit the proliferation of breast cancer cell MCF-7 cell apoptosis and induced cell apoptosis by suppressing the activation of SRC.
Antineoplastic Agents, Phytogenic
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pharmacology
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Apoptosis
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drug effects
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Breast Neoplasms
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drug therapy
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enzymology
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genetics
;
physiopathology
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Down-Regulation
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drug effects
;
Drugs, Chinese Herbal
;
pharmacology
;
Extracellular Signal-Regulated MAP Kinases
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genetics
;
metabolism
;
Female
;
Humans
;
MCF-7 Cells
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Proto-Oncogene Proteins c-akt
;
genetics
;
metabolism
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Saponins
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pharmacology
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Signal Transduction
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drug effects
;
Triterpenes
;
pharmacology
;
src-Family Kinases
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genetics
;
metabolism
4.A functional comparison between the HER2high/HER3 and the HER2low/HER3 dimers on heregulin-beta1-induced MMP-1 and MMP-9 expression in breast cancer cells.
Sangmin KIM ; Jeonghun HAN ; Incheol SHIN ; Won Ho KIL ; Jeong Eon LEE ; Seok Jin NAM
Experimental & Molecular Medicine 2012;44(8):473-482
Overexpression of HER2 correlates with more aggressive tumors and increased resistance to cancer chemotherapy. However, a functional comparison between the HER2high/HER3 and the HER2low/HER3 dimers on tumor metastasis has not been conducted. Herein we examined the regulation mechanism of heregulin-beta1 (HRG)-induced MMP-1 and -9 expression in breast cancer cell lines. Our results showed that the basal levels of MMP-1 and -9 mRNA and protein expression were increased by HRG treatment. In addition, HRG-induced MMP-1 and -9 expression was significantly decreased by MEK1/2 inhibitor, U0126 but not by phosphatidylinositol 3-kinase (PI-3K) inhibitor, LY294002. To confirm the role of MEK/ERK pathway on HRG-induced MMP-1 and -9 expression, MCF7 cells were transfected with constitutively active adenoviral-MEK (CA-MEK). The level of MMP-1 and -9 expressions was increased by CA-MEK. MMP-1 and -9 mRNA and protein expressions in response to HRG were higher in HER2 overexpressed cells than in vector alone. The phosphorylation of HER2, HER3, ERK, Akt, and JNK were also significantly increased in HER2 overexpressed MCF7 cells compared with vector alone. HRG-induced MMP-1 and -9 expressions were significantly decreased by lapatinib, which inhibits HER1 and HER2 activity, in both vector alone and HER2 overexpressed MCF7 cells. Finally, HRG-induced MMP-1 and MMP-9 expression was decreased by HER3 siRNA overexpression. Taken together, we suggested that HRG-induced MMP-1 and MMP-9 expression is mediated through HER3 dependent pathway and highly expressed HER2 may be associated with more aggressive metastasis than the low expressed HER2 in breast cancer cells.
Breast Neoplasms/enzymology/*genetics/*metabolism
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Butadienes/pharmacology
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Cell Line, Tumor
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Dose-Response Relationship, Drug
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Enzyme Inhibitors/pharmacology
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Female
;
Gene Expression
;
Gene Expression Regulation, Neoplastic/drug effects
;
Humans
;
MAP Kinase Signaling System
;
MCF-7 Cells
;
Matrix Metalloproteinase 1/*genetics/metabolism
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Matrix Metalloproteinase 9/*genetics/metabolism
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Neuregulin-1/*pharmacology
;
Nitriles/pharmacology
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Phosphatidylinositol 3-Kinases/metabolism
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Protein Kinase Inhibitors/pharmacology
;
Protein Multimerization
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Proto-Oncogene Proteins c-akt/metabolism
;
Quinazolines/pharmacology
;
Receptor, erbB-2/genetics/*metabolism
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Receptor, erbB-3/*metabolism
5.Infection of Schistosomiasis japanicum is likely to enhance proliferation and migration of human breast cancer cells: mechanism of action of differential expression of MMP2 and MMP9.
Ya-Ling LIN ; Rakesh RAMANUJUM ; Shiping HE
Asian Pacific Journal of Tropical Biomedicine 2011;1(1):23-28
OBJECTIVETo study whether the infection of Schistosomiasis japanicum (S. japanicum) is related to enhanced proliferation and migration of cancer cells, and the molecular mechanism pertains to cancer cell metastasis in human host.
METHODSThe gene of S. japanicum glutathione transferase (sjGST) cloned from S. japanicum was expressed, purified and applied in a series of assays to explore the effect of sjGST on proliferation and migration of MDA-MB-435S, and the expression of MMP2 and MMP9. Immunofluorescence assay for the binding of sjGST to MDA-MB-435S was also carried out.
RESULTSResults showed that sjGST enhanced proliferation and migration in human breast cancer cell MDA-MB-435S signifycantly at 50-200 nM, but did not enhance them in human lung cancer cell A549. Immunofluorescence assay for the binding of sjGST to MDA-MB-435S and A549 showed that GST was readily bound to the breast cancer cells, but showed almost no binding to human lung cancer cells. The assays for gelatinase activity showed that both MMP2 and MMP9 activities were increased significantly in the presence of sjGST (50-200 nM) in MDA-MB-435S, but they were not significant in A549.
CONCLUSIONSOur current results show strongly that S. japanicum GST binds to MDA-MB-435S probably via its receptor, and enhances proliferation and migration of the cancer cells by up-regulatory expression of MMP2 and MMP9.
Breast Neoplasms ; Cell Line, Tumor ; Cell Movement ; drug effects ; Cell Proliferation ; drug effects ; Glutathione Transferase ; genetics ; metabolism ; pharmacology ; Humans ; Matrix Metalloproteinase 2 ; analysis ; metabolism ; Matrix Metalloproteinase 9 ; analysis ; metabolism ; Protozoan Proteins ; genetics ; metabolism ; pharmacology ; Recombinant Proteins ; genetics ; metabolism ; pharmacology ; Schistosomiasis japonica ; enzymology ; genetics
6.PARP inhibitors: its role in treatment of cancer.
Chinese Journal of Cancer 2011;30(7):463-471
PARP is an important protein in DNA repair pathways especially the base excision repair (BER). BER is involved in DNA repair of single strand breaks (SSBs). If BER is impaired, inhibiting poly(ADP-ribose) polymerase (PARP), SSBs accumulate and become double stand breaks (DSBs). The cells with increasing number of DSBs become more dependent on other repair pathways, mainly the homologous recombination (HR) and the nonhomologous end joining. Patients with defective HR, like BRCA-deficient cell lines, are even more susceptible to impairment of the BER pathway. Inhibitors of PARP preferentially kill cancer cells in BRCA-mutation cancer cell lines over normal cells. Also, PARP inhibitors increase cytotoxicity by inhibiting repair in the presence of chemotherapies that induces SSBs. These two principles have been tested clinically. Over the last few years, excitement over this class of agents has escalated due to reported activity as single agent in BRCA1- or BRCA2-associated ovarian or breast cancers, and in combination with chemotherapy in triple negative breast cancer. This review covers the current results of clinical trials testing those two principles. It also evaluates future directions for the field of PARP inhibitor development.
Antineoplastic Combined Chemotherapy Protocols
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therapeutic use
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Benzamides
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administration & dosage
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Benzimidazoles
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administration & dosage
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Breast Neoplasms
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drug therapy
;
enzymology
;
genetics
;
DNA Breaks, Double-Stranded
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DNA Breaks, Single-Stranded
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DNA End-Joining Repair
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DNA Repair
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Enzyme Inhibitors
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therapeutic use
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Female
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Genes, BRCA1
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Genes, BRCA2
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Homologous Recombination
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Humans
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Mutation
;
Ovarian Neoplasms
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drug therapy
;
enzymology
;
genetics
;
Phthalazines
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administration & dosage
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Piperazines
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administration & dosage
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Poly(ADP-ribose) Polymerase Inhibitors
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Poly(ADP-ribose) Polymerases
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metabolism
7.DNA damage caused by suicide gene therapy system under Tet-On regulation in breast cancer cells.
Hongde LI ; Shengguang XIANG ; Nan MA ; Weixin HU ; Zhaojun ZENG
Journal of Central South University(Medical Sciences) 2011;36(9):836-843
OBJECTIVE:
To determine the effect and molecular mechanism of DNA damage caused by suicide gene therapy system HSV-TK/GCV under Tet-On regulation in human breast cancer cell line MCF-7 infected by recombinant adeno-associated virus (rAAV).
METHODS:
We used comet assay to detect the effect of HSV-TK/GCV suicide gene regulation system on MCF-7 DNA damage, and analyzed the expression change of relative DNA damage response active genes and proteins with RT-PCR and Western blot.
RESULTS:
Compared with other control groups, the comet assay showed that MCF-7 cells with HSV-TK/GCV treatment had obvious comet tails, and the expression level of DNA damage response active genes and proteins changed obviously in the HSV-TK/GCV treatment group,such as ATM, p53 and p27,but CyclinE and CDK2 did not change.
CONCLUSION
DNA damage on MCF-7 cells is resulted from HSV-TK/GCV in suicide gene therapy system through a p53-dependent signal pathway, causing cell cycle arrest and cell death.
Breast Neoplasms
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genetics
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pathology
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therapy
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DNA Damage
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Dependovirus
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genetics
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Female
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Ganciclovir
;
metabolism
;
pharmacology
;
Gene Expression Regulation, Neoplastic
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Genes, Transgenic, Suicide
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genetics
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Genetic Therapy
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Humans
;
MCF-7 Cells
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Recombinant Fusion Proteins
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genetics
;
metabolism
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Simplexvirus
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enzymology
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Thymidine Kinase
;
genetics
8.Effects of SiRNA-EGFR on the expression of hyaluronidase gene EGFR in human breast cancer cells.
Wei-dong WU ; Chi-hua FANG ; Zheng-xin YANG ; Jia-jin BAO
Journal of Southern Medical University 2010;30(6):1260-1263
OBJECTIVETo study the effect of SiRNA-EGFR on the expression of hyaluronidase gene in human breast cancer cells.
METHODSReverse transcription-polymerse chain reaction was used to detect the changes in the expression of EGFR mRNA in human breast cancer cell lines MDA-MB-231, MDA-MB-435S, ZR-75 and ZR-75-30 after transfection by SiRNA-EGFR.
RESULTSAfter transfection with SiRNA-EGFR, the expression levels of EGFR were significantly inhibited in MDA-MB-231, MDA-MB-435S, ZR-75 and ZR-75-30 cells (P<0.05).
CONCLUSIONTransfection by SiRNA-EGFR can inhibit the expression of EGFR mRNA in human breast cancer cells.
Breast Neoplasms ; enzymology ; metabolism ; pathology ; Cell Line, Tumor ; Female ; Humans ; Hyaluronoglucosaminidase ; genetics ; RNA Interference ; RNA, Messenger ; genetics ; metabolism ; RNA, Small Interfering ; genetics ; Receptor, Epidermal Growth Factor ; genetics ; metabolism ; Transfection
9.Triptolide-induced suppression of phospholipase D expression inhibits proliferation of MDA-MB-231 breast cancer cells.
Dong Woo KANG ; Ji Young LEE ; Deuk hee OH ; Seon Yang PARK ; Tae Min WOO ; Mi Kyoung KIM ; Mi Hee PARK ; Young Hoon JANG ; Do Sik MIN
Experimental & Molecular Medicine 2009;41(9):678-685
In spite of the importance of phospholipase D (PLD) in cell proliferation and tumorigenesis, little is known about the molecules regulating PLD expression. Thus, identification of small molecules inhibiting PLD expression would be an important advance for PLD-mediated physiology. We examined one such here, denoted "Triptolide", which was identified in a chemical screen for inhibitors of PLD expression using cell assay system based on measurement of PLD promoter activity. Triptolide significantly suppressed the expression of both PLD1 and PLD2 with sub-microM potency in MDA-MB-231 breast cancer cells as analyzed by promoter assay and RT-PCR. Moreover, triptolide abolished the protein level of PLD in a time and dose-dependent manner. Triptolide-induced PLD1 downregulation was also observed in all the cancer cells examined, suggesting a general phenomenon detected in various cancer cells. Decrease of PLD expression by triptolide suppressed both basal and PMA-induced PLD activity. In addition, triptolide inhibited activation of NFkappaB which increased PLD1 expression. Ultimately, downregulation of PLD by triptolide inhibited proliferation of breast cancer cells. Taken together, we demonstrate that triptolide suppresses the expression of PLD via inhibition of NFkappaB activation and then decreases cell proliferation.
Antineoplastic Agents, Alkylating/*pharmacology
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Breast Neoplasms/drug therapy/enzymology
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Cell Line, Tumor
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Cell Proliferation/drug effects
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Diterpenes/*pharmacology
;
Epoxy Compounds/pharmacology
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Female
;
Gene Expression Regulation, Neoplastic/*drug effects
;
Humans
;
NF-kappa B/genetics/metabolism
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Phenanthrenes/*pharmacology
;
Phospholipase D/*genetics/metabolism
10.Construction of an expression vector carrying short hairpin RNA targeting hTERT gene and its effects on breast cancer cell telomerase activity and proliferation in vivo.
Xiang-Xia LIU ; Chen YAO ; Hui ZHANG ; San-Ming WANG ; Shen-Ming WANG
Journal of Southern Medical University 2009;29(11):2187-2190
OBJECTIVETo construct a RNA interference expression vector targeting human telomerase reverse transcriptase gene (hTERT) gene and investigate its effects on telomerase activity and proliferation in breast cancer cells in vitro.
METHODSThe shRNA sequences targeting hTERT gene were designed and recombined into pSuper-retro-puro vector. The breast cancer cell lines MCF-7 and MDA-MB231 were transfected with the recombined vector, and the telomerase activity of the cells was tested by telomerase repeat sequence amplification-enzyme linked immunosorbent assay (TRAP-ELISA). The proliferation of the transfected cells was assessed using MTT and soft-agar clone formation assays.
RESULTSThe recombinant plasmids pSuper-retro-puro-TERT RNAi#1 and #2 were successfully constructed as confirmed by enzymatic digestion and DNA sequencing. The telomerase activity in the transfected breast cancer cells were down-regulated significantly as compared with that in negative control cells (Plt;0.005). The transfection resulted in significant inhibition of the proliferation of both MCF-7 and MDA-MB231 cells as detected by MTT assay (Plt;0.05) and soft agar clone formation assay (Plt;0.001).
CONCLUSIONTransfection with the recombinant plasmid containing the shRNA targeting hTERT gene can down-regulate telomerase activity and inhibit proliferation of breast cancer cells in vitro, suggesting the potential of gene therapy targeting telomerase in the treatment of breast cancer.
Breast Neoplasms ; enzymology ; genetics ; metabolism ; Cell Line, Tumor ; Cell Proliferation ; Female ; Genetic Therapy ; Genetic Vectors ; genetics ; Humans ; RNA Interference ; RNA, Messenger ; biosynthesis ; genetics ; RNA, Small Interfering ; genetics ; metabolism ; Telomerase ; biosynthesis ; genetics ; metabolism ; Transfection

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