• 제목/요약/키워드: Inhibitor-of-apoptosis protein

검색결과 370건 처리시간 0.032초

A549 인체 폐암세포에서 piceatannol에 의한 apoptosis 유발과 NO 생성의 억제 (Induction of Apoptosis and Inhibition of NO Production by Piceatannol in Human Lung Cancer A549 Cells)

  • 최영현
    • 생명과학회지
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    • 제22권6호
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    • pp.815-822
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    • 2012
  • Resveratrol 유도체의 일종으로 stilbene계열 물질인 piceatannol은 암세포의 증식을 억제하고 apoptosis를 유발하는 것으로 알려져 있다. 본 연구에서는 A549 인체 폐암세포를 대상으로 piceatannol에 의한 암세포 증식억제와 연관된 부가적인 기전연구를 실시하였다. 본 연구의 결과에서 piceatannol이 A549 세포에서 extrinsic 및 intrinsic pathway의 동시 활성을 통하여 apoptosis를 유발하였음을 Fas/FasL의 발현 증가와 caspase-8 및 -9의 활성증가로 확인하였다. 또한 piceatannol은 caspase-3의 활성을 증가시켰으며, caspase-3의 다양한 표적 단백질들의 발현 감소가 동반되었다. 아울러 piceatannol에 의한 apoptosis 유발 과정은 iNOS의 발현 감소에 의한 NO의 생성 억제와도 연관성이 있었다.

Identification of Protein Phosphatase 4 Inhibitory Protein That Plays an Indispensable Role in DNA Damage Response

  • Park, Jaehong;Lee, Jihye;Lee, Dong-Hyun
    • Molecules and Cells
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    • 제42권7호
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    • pp.546-556
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    • 2019
  • Protein phosphatase 4 (PP4) is a crucial protein complex that plays an important role in DNA damage response (DDR), including DNA repair, cell cycle arrest and apoptosis. Despite the significance of PP4, the mechanism by which PP4 is regulated remains to be elucidated. Here, we identified a novel PP4 inhibitor, protein phosphatase 4 inhibitory protein (PP4IP) and elucidated its cellular functions. PP4IP-knockout cells were generated using the CRISPR/Cas9 system, and the phosphorylation status of PP4 substrates (H2AX, KAP1, and RPA2) was analyzed. Then we investigated that how PP4IP affects the cellular functions of PP4 by immunoprecipitation, immunofluorescence, and DNA double-strand break (DSB) repair assays. PP4IP interacts with PP4 complex, which is affected by DNA damage and cell cycle progression and decreases the dephosphorylational activity of PP4. Both overexpression and depletion of PP4IP impairs DSB repairs and sensitizes cells to genotoxic stress, suggesting timely inhibition of PP4 to be indispensable for cells in responding to DNA damage. Our results identify a novel inhibitor of PP4 that inhibits PP4-mediated cellular functions and establish the physiological importance of this regulation. In addition, PP4IP might be developed as potential therapeutic reagents for targeting tumors particularly with high level of PP4C expression.

Selonsertib, an ASK1 Inhibitor, Ameliorates Ovalbumin-Induced Allergic Asthma during Challenge and Sensitization Periods

  • So-Young Han;Dong-Soon Im
    • Biomolecules & Therapeutics
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    • 제32권4호
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    • pp.451-459
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    • 2024
  • Apoptosis signal-regulating kinase 1 (ASK1) is an upstream signaling molecule in oxidative stress-induced responses. Because oxidative stress is involved in asthma pathogenesis, ASK1 gene deficiency was investigated in animal models of allergic asthma. However, there is no study to investigate whether ASK1 inhibitors could be applied for asthma to date. Selonsertib, a potent and selective ASK1 inhibitor, was applied to BALB/c mice of an ovalbumin (OVA)-induced allergic asthma model. Selonsertib suppressed antigen-induced degranulation of RBL-2H3 mast cells in a concentration-dependent manner. The administration of selonsertib both before OVA sensitization and OVA challenge significantly reduced airway hyperresponsiveness, and suppressed eosinophil numbers and inflammatory cytokine levels in the bronchoalveolar lavage fluid. Histopathologic examination elucidated less inflammatory responses and reduced mucin-producing cells around the peribronchial regions of the lungs. Selonsertib also suppressed the IgE levels in serum and the protein levels of IL-13 in the bronchoalveolar lavage fluid. These results suggest that selonsertib may ameliorate allergic asthma by suppressing immune responses and be applicable to allergic asthma.

Changes in Mitogen-activated Protein Kinase Activities During Acidification-induced Apoptosis in CHO Cells

  • Kim, Jin-Young;Jeong, Dae-Won;Roh, Sang-Ho;Min, Byung-Moo
    • International Journal of Oral Biology
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    • 제30권3호
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    • pp.85-90
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    • 2005
  • Homeostatic pH is very important for various cellular processes, including metabolism, survival, and death. An imbalanced-pH might induce cellular acidosis, which is involved in many abnormal events such as apoptosis and malignancy. One of several factors contributing to the onset of metabolic acidosis is the production of lactate and protons by lactate dehydrogenase (LDH) in anaerobic glycolysis. LDH is an important enzyme that catalyzes the reversible conversion of pyruvate to lactate. This study sought to examine whether decreases in extracellular pH induce apoptosis of CHO cells, and to elucidate the role of mitogen-activated protein kinases (MAPKs) in acidification-induced apoptosis. To test apoptotic signaling by acidification we used CHO dhfr cells that were sensitive to acidification, and CHO/anti-LDH cells that are resistant to acidification-induced apoptosis and have reduced LDH activity by stable LDH antisense mRNA expression. In the present study, cellular lactic acid-induced acidification and the role of MAPKs signaling in acidification-induced apoptosis were investigated. Acidification, which is caused by $HCO{_3}^-$-free conditions, induced apoptosis and MAPKs (ERK, JNK, and p38) activation. However, MAPKs were slightly activated in acidic conditions in the CHO/anti-LDH cells, indicating that lactic acid-induced acidification induces activation of MAPKs. Treatment with a p38 inhibitor, PD169316, increased acidification-induced apoptosis but apoptosis was not affected by inhibitors for ERK (U0126) or JNK (SP600125). Thus, these data support the hypothesis that activation of the p38 MAPK during acidification-induced apoptosis contributes to cell survival.

윤폐산에 의한 폐암세포 증식억제기전에 관한 연구 (The Effects of Yunpyesan on Cell Proloferation, Apoptosis and Cell Cycle Progression of Human Lung Cancer A549 Cells)

  • 강윤경;박동일;이준혁;최영현
    • 동의생리병리학회지
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    • 제16권4호
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    • pp.745-755
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    • 2002
  • To examine the effects of Yunpyesan on the cell proliferation of A549 human lung carcinoma cell line, we performed various experiments such as dose-dependent effect of Yunpyesan on cell proliferation and viability, morphological changes, quantification of apoptotic cell death and alterations of apoptosis/cell cycle-regulatory gene products. Yunpyesan declined cell viability and proliferation in both a dose- and a time-dependent manner. The anti-proliferative effect by Yunpyesan treatment in A459 cells was associated with morphological changes such as membrane shrinking and cell rounding up. Yunpyesan Induced apoptotic cell death in a time-dependent manner, which was associated with degradation of poly-(ADP-ribose) polymerase (PARP), an apoptotic target protein, without alterations of the balance between Bcl-2 and Bax expressions. DNA flow cytometric histograms showed that population of G1 phase of the cell cycle was increased by Yunpyesan treatment in a dose-dependent manner. Western blot analysis revealed that cyclin D1 and A were reduced by Yunpyesan treatment, whereas cyclin dependent kinase (Cdk) inhibitor p27 was markedly increased in a time-dependent fashion. The level of tumor suppressor p53 proteins was also increased by Yunpyesan treatment and its increase might be linked to increase of Cdk inhibitor p27. In addition, Mdm2, negative regulator of p53, was down-regulated by Yunpyesan treatment. Since the expression of retinoblastome protein (pRB), a key regulator of G1/S progression, was reduced by Yunpyesan treatment, we supposed that phosphorylation of pRB might be also blocked. The present results indicated that Yunpyesan-induced inhibition of lung cancer cell proliferation is associated with the induction of apoptosis and the blockage of G1/S progression.

DNA topoisomerase I 억제제 β-lapachone에 의한 전립선 암세포의 성장억제 기전연구 (Up-regulation of Bax is associated with DNA topoisomerase I inhibitor β-lapachone-induced apoptosis in human prostate carcinoma cells)

  • 공규리;최병태;최영현
    • 생명과학회지
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    • 제12권4호
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    • pp.469-476
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    • 2002
  • 남미지역에 서식하는 Tabebuia avellanedae의 수피에서 동정된 천연 quinone계 물질인 $\beta$-lapachone은 DNA topoisomerase I 억제제 이외 다양한 약리학적 기능이 있을 것으로 추정되지만 그 기능이 명확하지 않다. $\beta$-lapachone의 생리활성 기전 해석의 일환으로 본 연구에서는 인체 전립선 DU-145 암세포주의 성장에 미치는 $\beta$-lapachone의 영향을 조사하였다. p-lapachone이 함유된 배지에서 자란 암세포들은 $\beta$-lapachone 처리 농도 의존적으로 성장이 억제되었으며, 이는 apoptosis가 유발된 세포에서 특징적으로 관찰되는 chromatin condensation 및 DNA fragmentation 현상을 유발하였고, DNA flow cytometry 분석결과 apoptotic-sub Gl기에 해당하는 세포들의 빈도도 증가되었다. 또한 poly (ADP-ribose) polymerase 및 $\beta$-catenin 단백질의 발현에서도 apoptosis 유발 특이적인 분해 현상을 보여주었으며, DU-145 전립선 암세포에서 $\beta$-lapachone에 의한 이러한 apoptosis의 유발에는 Bax의 발현증가에 따른 Bcl-2 발현의 감소가 중요한 역할을 할 고 있는 것으로 사료된다.

Okadaic Acid에 의한 FRTL-5 갑상선 세포주의 Apoptosis 유도 (Induction of Apoptosis in FRTL-5 Thyroid Cells by Okadaic Acid)

  • 조지형;정기용;박종욱
    • 대한두경부종양학회지
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    • 제18권2호
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    • pp.142-149
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    • 2002
  • 본 연구에서는 FRTL-5 갑상선세포에서 Protein phosphatase type 1(PP-1)과 type 2A(PP-2A) 효소의 억제제인 okadaic acid에 의한 apoptosis 유도 기전에 대하여 이해하고자 하였다. FRTL-5 갑상선세포에 다양한 농도($10{\sim}80nmol$)의 okadaic acid를 처리 한 후 caspase 3와 $PLC-{\gamma}1$ 분절을 확인 한 결과 40nmol 농도에서부터 caspase 3활성과 $PLC-{\gamma}1$ 분절이 나타남을 확인하였다. Okadaic acid에 의한 apoptosis 유도 기전을 조사한 결과 anti-apoptotic 기능이 있는 Bcl-2 단백질 발현은 미약하게 감소하였으나 Bcl-xL은 농도 의존적으로 급격한 감소를 보였다. Caspase 3 효소활성을 저해하는 IAP 단백질 중 cIAP2는 okadaic acid에 영향을 받지 않았으나 cIAP1과 XIAP 단백질 발현은 농도 의존적으로 감소하였다. Okadaic acid에 의한 apoptosis 유도는 caspase 3 의존적인 기전을 보였다. Caspase 3 특이억제제를 okadaic acid와 동시에 처리 시 apoptosis가 억제되었으며 $PLC-{\gamma}1$ 단백질의 절단 현상도 방지되었다. Caspase 3의 활성을 유도하는 cytochrome c의 유리는 okadaic acid처리 농도에 의존적으로 유리하였다. 결론적으로, okadaic acid에 의한 apoptosis 유도는 caspase 3 의존적이며, Bcl-2와 IAP family 단백질 감소현상에 의하여 야기되는 것으로 생각된다.

miR-185 inhibits endoplasmic reticulum stress-induced apoptosis by targeting Na+/H+ exchanger-1 in the heart

  • Kim, Jin Ock;Kwon, Eun Jeong;Song, Dong Woo;Lee, Jong Sub;Kim, Do Han
    • BMB Reports
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    • 제49권4호
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    • pp.208-213
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    • 2016
  • Prolonged ER stress (ERS) can be associated with the induction of apoptotic cell death in various heart diseases. In this study, we searched for microRNAs affecting ERS in the heart using in silico and in vitro methods. We found that miR-185 directly targets the 3′-untranslated region of Na+/H+ exchanger-1 (NHE-1), a protein involved in ERS. Cardiomyocyte ERS-triggered apoptosis induced by 100 ng/ml tunicamycin (TM) or 1 μM thapsigargin (TG), ERS inducers, was significantly reduced by miR-185 overexpression. Protein expression of pro-apoptotic markers such as CCAAT/enhancer-binding protein homologous protein (CHOP) and cleaved-caspase-3 was also markedly reduced by miR-185 in a dose-dependent manner. Cariporide (20 μM), a pharmacological inhibitor of NHE-1, also attenuated ERS-induced apoptosis in cardiomyocytes and CHOP protein expression, suggesting that NHE-1 plays an important role in ERS-associated apoptosis in cardiomyocytes. Collectively, the present results demonstrate that miR-185 is involved in cardio-protection against ERS-mediated apoptotic cell death.

저산소 상태에서 조골세포 고사의 신호전달 기전 (Effect of Hypoxia on the Signal Transduction of Apoptosis in Osteoblasts)

  • 박영주;오소택;강경화;김상철
    • 대한치과교정학회지
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    • 제33권6호
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    • pp.453-463
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    • 2003
  • 본 연구는 MC3T3El 조골세포가 저산소증에 반응하여 유발될 수 있는 세포 고사조절 기전을 구명하고자 함에 목적이 있다. $2\%$ 저산소증의 조건하에서 MC3T3El 조골세포는 DNA 사다리 분절 헝성을 보였으며 형광성 염료인 Hoechst 33258로 염색된 핵 구조 형태 관찰시 시간이 지남에 따라 세포고사 현상을 관찰할 수 있었다 Pancaspase 억제제인 Z-VAD-FMK나 특정한 caspase-3 억제제인 Z-DEVD-CHO로 사전 처치하였을 경우에는 저산소증에 의한 DNA 사다리 분절형성이 농축에 비례하여 억제되었다. caspase-3류의 프로테아제(DEVDase) 활성 증가가 세포고사 중에 관찰되었으나 caspase-1 (YVADase)의 활성은 없었다. 어떤 caspase가 세포고사에 관여하는지를 확인하기 위하여 anti-caspase-3 또는 anti-caspase-6의 항체를 이용한 western blotting이 시행되었다. caspase-3의 활성산물에 해당하는 17-KDa단백질과 caspase-6의 활성산물인 20-KDa 단백질이 세포용해물에서 발생되었다. 또한 시간 경과와 더불어 caspase-6의 활동의 상징인 Lamin A의 분열을 일으켰으며, 사이토크롬 C를 cytosol로 방출하였다. 이로써 저산소증에 의한 조골세포의 고사 과정에 사이토크롬 C의 방출이 포함된 caspase의 활성이 관여한다는 것을 확인할 수 있었다.

Molecular Mechanisms of Apoptosis and Roles in Cancer Development and Treatment

  • Goldar, Samira;Khaniani, Mahmoud Shekari;Derakhshan, Sima Mansoori;Baradaran, Behzad
    • Asian Pacific Journal of Cancer Prevention
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    • 제16권6호
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    • pp.2129-2144
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    • 2015
  • Programmed cell death (PCD) or apoptosis is a mechanism which is crucial for all multicellular organisms to control cell proliferation and maintain tissue homeostasis as well as eliminate harmful or unnecessary cells from an organism. Defects in the physiological mechanisms of apoptosis may contribute to different human diseases like cancer. Identification of the mechanisms of apoptosis and its effector proteins as well as the genes responsible for apoptosis has provided a new opportunity to discover and develop novel agents that can increase the sensitivity of cancer cells to undergo apoptosis or reset their apoptotic threshold. These novel targeted therapies include those targeting anti-apoptotic Bcl-2 family members, p53, the extrinsic pathway, FLICE-inhibitory protein (c-FLIP), inhibitor of apoptosis (IAP) proteins, and the caspases. In recent years a number of these novel agents have been assessed in preclinical and clinical trials. In this review, we introduce some of the key regulatory molecules that control the apoptotic pathways, extrinsic and intrinsic death receptors, discuss how defects in apoptotic pathways contribute to cancer, and list several agents being developed to target apoptosis.