• 제목/요약/키워드: apoptotic signaling

검색결과 349건 처리시간 0.028초

Protective Effects of Natural Phytochemicals on the Lipid Peroxides Induced Apoptosis in the Human Endothelial ECV 304 Cells

  • Kim, Ae-Jung;Kim, Mae-Wha;Kang, Young-Hee;Lee, Myoung-Sook
    • Food Science and Biotechnology
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    • 제18권2호
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    • pp.436-441
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    • 2009
  • The final bio-metabolites of lipid peroxidation (LPO) such as 4-hydroxynonenal (4-HNE) and malondialdehyde (MDA) have been suggested to mediate the oxidative stress-linked pathological incidences. Natural phytochemicals such as polyphenolic compounds in green tea have been known in preventing the LPO induced cellular growth inhibition and apoptosis. We investigated that green tea ethanol extracts (GTE) inhibit LPO-induced apoptosis in ECV 304 cells. GTE had time- or dose-dependent anti-apoptotic effects as evidenced by changes in cell morphology, MTT assay, DNA fragmentation, LPO production, and the Western blotting for apoptotic expression. In the 4-HNE-induced apoptosis model, GTE $10-20{\mu}g/mL$ decreased cell death through decreasing LPO production. GTE protected 4-HNE induced apoptosis, as evidence with down regulation of mitochondrial signaling such as cytochrome C and caspase-3 activity. GTE increased bcl2, survival signaling protein, compared to 4-HNE alone within 6 hr incubation. Since polyphenols in GTE are effective antioxidants in endothelial ECV 304 cells, we suggested that natural polyphenols might be anti-atherosclerotic.

Multi-Target Cytotoxic Actions of Flavonoids in Blood Cancer Cells

  • Sak, Katrin;Everaus, Hele
    • Asian Pacific Journal of Cancer Prevention
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    • 제16권12호
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    • pp.4843-4847
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    • 2015
  • To date, cytotoxic effects of flavonoids in various cancer cells are well accepted. However, the intracellular signaling cascades triggered by these natural compounds remain largely unknown and elusive. In this mini-review, the multiplicity of molecular targets of flavonoids in blood cancer cells is discussed by demonstrating the involvement of various signaling pathways in induction of apoptotic responses. Although these data reveal a great potential of flavonoids for the development of novel agents against different types of hematological malignancies, the pleiotropic nature of these compounds in modulation of cellular processes and their interactions certainly need unraveling and further investigation.

인체위암 세포에서 PI3K/AKT 신호 전달계 차단에 의한 동충하초 유래 Cordycepin의 Apoptosis 유발 효과 증진 (Inhibition of PI3K/AKT Signaling Pathway Enhances Cordycepin-Induced Apoptosis in Human Gastric Cancer Cells)

  • 이혜현;정진우;최영현
    • 한국식품영양과학회지
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    • 제45권6호
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    • pp.835-842
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    • 2016
  • PI3K/Akt 신호계는 세포 생존의 조절에 필수적인 경로로 대부분 암세포에서 활성이 증대되어 있다. 본 연구에서는 동충하초의 주요 생리활성 물질인 cordycepin에 의한 AGS 인체 위암 세포의 apoptosis 유도에 미치는 PI3K/Akt 신호계의 역할을 조사하였다. 본 연구의 결과에 의하면 cordycepin의 처리 농도의 증가에 따라 AGS 세포의 생존율은 억제되었으며, 이는 apoptosis 유도와 밀접한 관계가 있음을 핵의 형태적 변화와 flow cytometry 분석을 통하여 확인 하였다. 이러한 cordycepin의 apoptosis 유도 효과는 PI3K/Akt 신호계의 활성 저하와 연관성이 있었으며, 세포독성을 나타내지 않는 범위의 PI3K/Akt 신호계 저해제인 LY294002를 cordycepin과 동시 처리하였을 경우, cordycepin에 의한 apoptosis 유발을 더욱 증대시켰다. 그리고 cordycepin에 대한 LY294002의 apoptosis 유발 증대는 caspases (caspase-3, -8 및 -9)의 활성 증가와 poly(ADP-ribose) polymerase 단백질의 분해 증가를 촉진했다. 또한 cordycepin이 처리된 AGS 세포에서 LY294002는 apoptosis 유도에 관여하는 Bax의 발현을 증가시켰고 apoptosis 억제에 관여하는 Bcl-2의 발현은 감소시켰으며, 이는 미토콘드리아 기능 손상과 미토콘드리아에서 세포질로의 cytochrome c 유리를 증대시켰다. 따라서 PI3K/Akt 신호계의 활성 차단은 cordycepin의 항암 활성을 더욱 상승시켰으며, 이는 미토콘드리아 기능 손상과 caspase의 활성 증대를 통하여 이루어짐을 알 수 있었다.

DNA Bis-intercalating Agent, Echinomycin-induced Apoptosis via Bcl-2 Dependence Pathway in Human Colon Cancer Cells

  • Park, Ju-Youn;Ryang, Yong-Suk;Kim, Jong-Bae;Chang, Jae-Ho;Cho, Hyeon-Cheol;Kim, Soo-Ki
    • Molecular & Cellular Toxicology
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    • 제4권2호
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    • pp.144-149
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    • 2008
  • Despite versatile activity (cancericidal, antimicrobial, hypoxia inducible factor (HIF) inhibition, immune deactivation of DNA bis-intercalation agent, echinomycin, its specific mechanism has been elusive. Of these novel mechanisms, we reported that using human colon cancer cells (HT-29), apoptotic machinery induced by echinomycin might be dependent of caspase-3 pathway. Despite a partial enlightenment of prototypic signal path triggered by echinomycin, the role of Bcl-2 in this signaling pathway is unclear. To address this issue, we explored whether or not echinomycin would overcome the anti-apoptotic impact of Bcl-2 in HT-29 cells by the controlled Bcl-2 overexpression. Prior to this proof, we confirmed that echinomycin induces mitochondrial depolarization, then triggering the mitochondrial pathway of apoptosis with an involvement of upstream cas-pases-3. Transiently transfection with inactive Bax-DNA failed to prevent echinomycin-induced apoptosis in HT-29 cells. To dissect the role of Bcl-2 in echinomycin-induced apoptosis, HT-29 cells were transiently transfected with Bcl-2 DNA for overexpression and then treated with echinomycin for 24h. Combined analyses of DNA fragmentation and flow cytometric analysis clearly verified that echinomycin-induced apoptosis was drastically attenuated by Bcl-2 overexpression, whereas a control vector rarely affected echinomycin-induced apoptosis. Collectively, these data verify that Bcl-2 regulates echinomycin-induced apoptosis in HT-29 cells. To my knowledge, this is the first evidence that of diverse, structured minor groove binders (MGB), the prototypic echinomycin might control the apoptotic signaling via Bcl-2-mitochondrial pathway.

세포사멸 조절 단백질인 IEX-1의 새로운 결합단백질로서의 CATHEPSIN B의 발견 (Identification of CATHEPSIN B as a Novel Binding Protein of the Cell Death Regulating Protein IEX-1)

  • 유상미;이강석;배지현
    • 한국발생생물학회지:발생과생식
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    • 제16권2호
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    • pp.129-135
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    • 2012
  • 선행연구에서 본 연구자는 IEX-1 단백질이 난소 암세포에서 세포사멸(apoptosis)을 유도하는 기능을 수행함을 확인하였으나, 세포사멸과 세포생존의 여러 단계에서 어떠한 신호전달 체계로 IEX-1이 작용하는지는 정확히 알지 못하고 있다. 따라서 IEX-1 단백질과 결합하는 새로운 단백질을 찾기 위해 yeast two-hybrid system을 이용하였다. 그 결과 IEX-1이 여러 다양한 인간 암 세포에서 세포사멸을 유도하는 CATHEPSIN B 단백질과 결합함을 밝혔다. 본 연구에서는 리소좀 프로테아제의 일원인 CATHEPSIN B 단백질과 IEX-1 단백질의 결합을 면역침강법과 western blot 분석으로 확인하였다. 그러므로 이 결과들을 통해서 IEX-1과 CATHEPSIN B는 세포 내에서 서로의 기능에 영향을 미칠 것으로 예상되며, 세포사멸을 유도하는 IEX-1 단백질이 lysosome-mediated apoptotic pathway에 관여할 가능성을 시사한다.

Mistletoe Lectin Induces Apoptosis and Telomerase Inhibition in Human A253 Cancer Cells through Dephosphorylation of Akt

  • Choi, Sang-Hoi;Lyu, Su-Yun;Park, Won-Bong
    • Archives of Pharmacal Research
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    • 제27권1호
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    • pp.68-76
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    • 2004
  • Mistletoe lectin has been reported to induce apoptosis in different cancer cell lines in vitro and to show antitumor activity against a variety of tumors in animal models. We previously demonstrated the Korean mistletoe lectin (Viscum album var. coloratum, VCA)-induced apoptosis by down-regulation of Bcl-2 and telomerase activity and by up-regulation of Bax through p53- and p21-independent pathway in hepatoma cells. In the present study, we observed the induction of apoptotic cell death through activation of caspase-3 and the inhibition of telomerase activity through transcriptional down-regulation of hTERT in the VCA-treated A253 cells. We also observed the inhibition of telomerase activity and induction of apoptosis resulted from dephosphorylation of Akt in the survival signaling pathways. In addition, combining VCA with the inhibitors of phosphatidylinositol 3-kinase (PI3-kinase) upstream of Akt, wortmannin and LY294002 showed an additive inhibitory effect of telomerase activity. In contrast, the inhibitor of protein phosphatase 2A (PP2A), okadaic acid inhibited VCA-induced dephosphorylation of Akt and inhibition of telomerase activity. Taken together, VCA induces apoptotic cell death through Akt signaling pathway in correlated with the inhibition of telomerase activity and the activation of caspase-3. From these results, together with our previous studies, we suggest that VCA triggers molecular changes that resulting in the inhibition of cell growth and the induction of apoptotic cell death of cancer cells, which suggest that VCA may be useful as chemotherapeutic agent for cancer cells.

The Anti-apoptotic Effect of Ghrelin on Restraint Stress-Induced Thymus Atrophy in Mice

  • Jun Ho Lee;Tae-Jin Kim;Jie Wan Kim;Jeong Seon Yoon;Hyuk Soon Kim;Kyung-Mi Lee
    • IMMUNE NETWORK
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    • 제16권4호
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    • pp.242-248
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    • 2016
  • Thymic atrophy is a complication that results from exposure to many environmental stressors, disease treatments, and microbial challenges. Such acute stress-associated thymic loss can have a dramatic impact on the host's ability to replenish the necessary naïve T cell output to reconstitute the peripheral T cell numbers and repertoire to respond to new antigenic challenges. We have previously reported that treatment with the orexigenic hormone ghrelin results in an increase in the number and proliferation of thymocytes after dexamethasone challenge, suggesting a role for ghrelin in restraint stress-induced thymic involution and cell apoptosis and its potential use as a thymostimulatory agent. In an effort to understand how ghrelin suppresses thymic T cell apoptosis, we have examined the various signaling pathways induced by receptor-specific ghrelin stimulation using a restraint stress mouse model. In this model, stress-induced apoptosis in thymocytes was effectively blocked by ghrelin. Western blot analysis demonstrated that ghrelin prevents the cleavage of pro-apoptotic proteins such as Bim, Caspase-3, and PARP. In addition, ghrelin stimulation activates the Akt and Mitogen-activated protein kinases (MAPK) signaling pathways in a time/dose-dependent manner. Moreover, we also revealed the involvement of the FoxO3a pathway in the phosphorylation of Akt and ERK1/2. Together, these findings suggest that ghrelin inhibits apoptosis by modulating the stress-induced apoptotic signal pathway in the restraint-induced thymic apoptosis.

A new role for the ginsenoside RG3 in antiaging via mitochondria function in ultraviolet-irradiated human dermal fibroblasts

  • Lee, Hyunji;Hong, Youngeun;Tran, Quangdon;Cho, Hyeonjeong;Kim, Minhee;Kim, Chaeyeong;Kwon, So Hee;Park, SungJin;Park, Jongsun;Park, Jisoo
    • Journal of Ginseng Research
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    • 제43권3호
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    • pp.431-441
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    • 2019
  • Background: The efficacy of ginseng, the representative product of Korea, and its chemical effects have been well investigated. The ginsenoside RG3 has been reported to exhibit apoptotic, anticancer, and antidepressant-like effects. Methods: In this report, the putative effect of RG3 on several cellular function including cell survival, differentiation, development and aging process were evaluated by monitoring each specific marker. Also, mitochondrial morphology and function were investigated in ultraviolet (UV)-irradiated normal human dermal fibroblast cells. Results: RG3 treatment increased the expression of extracellular matrix proteins, growth-associated immediate-early genes, and cell proliferation genes in UV-irradiated normal human dermal fibroblast cells. And, RG3 also resulted in enhanced expression of antioxidant proteins such as nuclear factor erythroid 2-related factor-2 and heme oxygenase-1. In addition, RG3 affects the morphology of UV-induced mitochondria and plays a role in protecting mitochondrial dysfunction. Conclusioin: RG3 restores mitochondrial adenosine triphosphate (ATP) and membrane potential via its antioxidant effects in skin cells damaged by UV irradiation, leading to an increase in proteins linked with the extracellular matrix, cell proliferation, and antioxidant activity.

Trophic factor supplementation에 의한 cold ischemia/rewarming손상으로 부터의 신장 세포 보호 (Protective Effect of Trophic Factor Supplementation on Cold Ischemia/Rewarming Injury to Kidney Cells)

  • 권영삼;장광호
    • 한국임상수의학회지
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    • 제25권5호
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    • pp.355-358
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    • 2008
  • 본 연구는 trophic factor supplementation (TFS)이 cold ischemic storage와 rewarming 동안에 신장 세포의 생존에 미치는 효과를 알아보기 위해 실시했다. p44/42와 p38 mitogen activated protein kinases (MAPK) 활성이 TFS에 의해 영향을 받는지를 Western blot을 통해 알아보았다. Apoptotic changes를 알아보기 위해 4',6'-diamino-2-phenylindole (DAPI) 염색을 실시했다. 세포생존도를 알아보기 위해 live assay를 실시하였다. 그 결과, TFS는 cold ischemic storage와 rewarming 동안 증가된 44/42와 p38 MAPK activity를 유의성 있게 감소시켰다 (p<0.05). 또한, cold ischemic storage와 rewarming에 의한 apoptotic cell 수가 TFS에 의해 감소함을 관찰했다. 마지막으로 TFS는 유의성 있게 세포 생존도를 증가시켰다 (p<0.05). 따라서, TFS는 p44/42와 p38 MAPK 활성을 감소시키고 apoptotic change를 억제함으로써 cold ischemia와 rewarming injury로부터 신장 세포를 보호하는 것으로 생각된다.

Protein Kinase C-mediated Neuroprotective Action of (-)-epigallocatechin-3-gallate against $A{\beta}_{1-42}$-induced Apoptotic Cell Death in SH-SY5Y Neuroblastoma Cells

  • Jang, Su-Jeong;You, Kyoung-Wan;Kim, Song-Hee;Park, Sung-Jun;Jeong, Han-Seong;Park, Jong-Seong
    • The Korean Journal of Physiology and Pharmacology
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    • 제11권5호
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    • pp.163-169
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    • 2007
  • The neurotoxicity of amyloid $\beta(A\beta)$ is associated with an increased production of reactive oxygen species and apoptosis, and it has been implicated in the development of Alzheimer's disease. While(-)-epigallocatechin-3-gallate(EGCG) suppresses $A\beta$-induced apoptosis, the mechanisms underlying this process have yet to be completely clarified. This study was designed to investigate whether EGCG plays a neuroprotective role by activating cell survival system such as protein kinase C(PKC), extracellular-signal-related kinase(ERK), c-Jun N-terminal kinase(JNK), and anti-apoptotic and pro-apoptotic genes in SH-SY5Y human neuroblastoma cells. One ${\mu}M\;A{\beta}_{1-42}$ decreased cell viability, which was correlated with increased DNA fragmentation evidenced by DAPI staining. Pre-treatment of SH-SY5Y neuroblastoma cells with EGCG($1{\mu}M$) significantly attenuated $A{\beta}_{1-42}$-induced cytotoxicity. Potential cell signaling candidates involved in this neuroprotective effects were further examined. EGCG restored the reduced PKC, ERK, and JNK activities caused by $A{\beta}_{1-42}$ toxicity. In addition, gene expression analysis revealed that EGCG prevented both the $A{\beta}_{1-42}$-induced expression of a pro-apoptotic gene mRNA, Bad and Bax, and the decrease of an anti-apoptotic gene mRNA, Bcl-2 and Bcl-xl. These results suggest that the neuroprotective mechanism of EGCG against $A{\beta}_{1-42}$-induced apoptotic cell death includes stimulation of PKC, ERK, and JNK, and modulation of cell survival and death genes.