• Title/Summary/Keyword: inhibitor p21

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Autophagy-Dependent Survival of Mutant B-Raf Melanoma Cells Selected for Resistance to Apoptosis Induced by Inhibitors against Oncogenic B-Raf

  • Ahn, Jun-Ho;Lee, Michael
    • Biomolecules & Therapeutics
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    • v.21 no.2
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    • pp.114-120
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    • 2013
  • Most patients with mutant B-Raf melanomas respond to inhibitors of oncogenic B-Raf but resistance eventually emerges. To better understand the mechanisms that determine the long-term responses of mutant B-Raf melanoma cells to B-Raf inhibitor, we used chronic selection to establish B-Raf (V600E) melanoma clones with acquired resistance to the new oncogenic B-Raf inhibitor UI-152. Whereas the parental A375P cells were highly sensitive to UI-152 ($IC_{50}$ < $0.5{\mu}M$), the resistant sub-line (A375P/Mdr) displayed strong resistance to UI-152 ($IC_{50}$ < $20{\mu}M$). Immunofluorescence analysis indicated the absence of an increase in the levels of P-glycoprotein multidrug resistance (MDR) transporter in A375P/Mdr cells, suggesting that resistance was not attributable to P-glycoprotein overexpression. In UI-152-sensitive A375P cells, the anti-proliferative activity of UI-152 appeared to be due to cell-cycle arrest at $G_0/G_1$ with the induction of apoptosis. However, we found that A375P/Mdr cells were resistant to the apoptosis induced by UI-152. Interestingly, UI-152 preferentially induced autophagy in A375P/Mdr cells but not in A375P cells, as determined by GFP-LC3 puncta/cell counts. Further, autophagy inhibition with 3-methyladenine (3-MA) partially augmented growth inhibition of A375P/Mdr cells by UI-152, which implies that a high level of autophagy may protect UI-152-treated cells from undergoing growth inhibition. Together, our data implicate high rates of autophagy as a key mechanism of acquired resistance to the oncogenic B-Raf inhibitor, in support of clinical studies in which combination therapy with autophagy targeted drugs is being designed to overcome resistance.

Up-Regulation of NAG-1 and p21 Genes by Sulforaphane (브로콜리 유래 sulforaphane에 의한 NAG-1과 p21 유전자의 발현 조절)

  • Jeong, Byung-Geol;Kim, Soon-Young;Lee, Kon-Joo;Kim, Jong-Sik
    • Journal of Life Science
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    • v.22 no.3
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    • pp.360-365
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    • 2012
  • We investigated the anti-proliferative activity of sulforaphane and expression changes of NAG-1 and p21 genes in response to sulforaphane treatment in human colorectal HCT116 cells. The results showed that sulforaphane decreased cell viabilities in a dose-dependent manner and induced expression of NAG-1 and p21 proteins in a dose-dependent and time-dependent manner. In addition, we found that NAG-1 expression by sulforaphane was not dependent on the presence of p53, whereas p21 expression was dependent on p53 presence. The results indicated that up-regulation of NAG-1 was not related with the activity of a dietary histone deacetylase inhibitor of sulforaphane. ATF3 induction was detected from 2 hr after sulforaphane treatment, indicating that ATF3 could be a transcription factor to up-regulate NAG-1 expression. The results of this study may help to increase our understanding of the molecular mechanism of anti-cancer activity mediated by sulforaphane in human colorectal cancer cells.

The Effectiveness of Aromatase Inhibitor in Infertile Male (불임남성에서 방향화효소 억제제의 치료 효과)

  • Lee, Jae-Seok;Han, Keo-Reum;Park, Young-Seog;Seo, Ju-Tae
    • Clinical and Experimental Reproductive Medicine
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    • v.30 no.2
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    • pp.135-139
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    • 2003
  • Objective: We investigated whether serum testosterone to estradiol ratio was decreased in infertile men and whether this condition can be corrected with oral aromatase inhibitor. Method: The serum testosterone to estradiol ratio of 26 men with testicular failure were compared with those of normal semen analysis parameter, 89 control reference group. All of 26 testicular failure group were diagnosed with the previous testicular biopsy. Then 46 men with oligospermia and/or asthenospermia were selected and treated with 1 mg of the aromatase inhibitor anastrozole ($Arimidex^{(R)}$) orally once daily for 3 months. Testosterone to estradiol ratio and semen analyses were evaluated during anastrozole therapy. Results: The testosterone level of testicular failure group was significantly lower and the testosterone to estradiol ratio was more decreased than normal semen parameter group. Forty six on-anastrozole group had significantly lower testosterone (4.6 versus 5.7 ng/ml, p<0.01) and higher estradiol (15.9 versus 23.4 pg/ml, p<0.01) than pre-anastrozole group, resulting in a decreased testosterone to estradiol ratio ($0.21{\pm}0.07$ versus $0.39{\pm}0.15$, p<0.01). Semen analyses before and during anastrozole treatment revealed significant increases in sperm count (35.5 versus 52.2 million sperm per ml, p<0.01) and motility (22.9% versus 29.3%, p<0.01). Conclusions: We identified infertile men with testicular failure had hormonal changes characterized by a decreased serum testosterone to estradiol ratio. The ratio can be corrected with aromatase inhibitor, resulting in a significant improvement in semen parameters.

Inhibition of pRB Phosphorylation and Induction of p21WAF1/CIP1 Occur During cAMP-induced Growth Arrest in Human Neuroblastoma Cells (인체 신경아세포종에서 cAMP 처리에 의한 pRB의 인산화 억제 및 p21WAF1/CIP1의 유도)

  • Park, Yung-Hyun;Lee, Sang-Hyeon
    • Journal of Life Science
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    • v.13 no.5
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    • pp.642-650
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    • 2003
  • To develop a new approach to the treatment of neuroblastoma cells we evaluated the effect of cAMP on the Ewing's sarcoma cell line CHP-100. We observed that the proliferation-inhibitory effect of cAMP analogs was due to cell cycle arrest and induction of apoptosis, which was confirmed by observing the morphological changes and DNA fragmentation. DNA flow cytometric analysis revealed that cAMP arrested the cell cycle progression at the G1 phase, which effects were associated with inhibition of phosphorylation of retinoblastoma protein (pRB) and enhanced binding of pRB and the transcription factor E2F-1. cAMP also suppressed the cyclin-dependent kinase (Cdk) 2 and cyclin E-associated kinase activity without changes of their expressions. Furthermore, cAMP induced the levels of Cdk inhibitor $p21^{WAF1/CIP1$ expression and p21 proteins induced by cAMP were associated with Cdk2. Overall, our results identify a combined mechanism involving the inhibition of pRB phosphorylation and induction of p21 as targets for cAMP, and this may explain some of its anti-cancer effects.

Protein tyrosine phosphatase PTPN21 acts as a negative regulator of ICAM-1 by dephosphorylating IKKβ in TNF-α-stimulated human keratinocytes

  • Cho, Young-Chang;Kim, Ba Reum;Cho, Sayeon
    • BMB Reports
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    • v.50 no.11
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    • pp.584-589
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    • 2017
  • Intercellular adhesion molecule-1 (ICAM-1), which is induced by tumor necrosis factor (TNF)-${\alpha}$, contributes to the entry of immune cells into the site of inflammation in the skin. Here, we show that protein tyrosine phosphatase non-receptor type 21 (PTPN21) negatively regulates ICAM-1 expression in human keratinocytes. PTPN21 expression was transiently induced after stimulation with TNF-${\alpha}$. When overexpressed, PTPN21 inhibited the expression of ICAM-1 in HaCaT cells but PTPN21 C1108S, a phosphatase activity-inactive mutant, failed to inhibit ICAM-1 expression. Nuclear factor-${\kappa}B$ (NF-${\kappa}B$), a key transcription factor of ICAM-1 gene expression, was inhibited by PTPN21, but not by PTPN21 C1108S. PTPN21 directly dephosphorylated phospho-inhibitor of ${\kappa}B$ ($I{\kappa}B$)-kinase ${\beta}$ ($IKK{\beta}$) at Ser177/181. This dephosphorylation led to the stabilization of $I{\kappa}B{\alpha}$ and inhibition of NF-${\kappa}B$ activity. Taken together, our results suggest that PTPN21 could be a valuable molecular target for regulation of inflammation in the skin by dephosphorylating p-$IKK{\beta}$ and inhibiting NF-${\kappa}B$ signaling.

돼지 간장으로 부터 정제한 천연 단백성 Methylation Inhibitor의 S-Farnesylcysteine Methyltransferase 억제효과

  • 남석우;유세근;서동완;남태균;이향우;홍성열
    • Proceedings of the Korean Society of Applied Pharmacology
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    • 1994.04a
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    • pp.262-262
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    • 1994
  • Ras oncogene의 산물로서 대부분의 암조직이나 transformed human cell에서 거의 공통적으로 발견되는 p21 단백질은 C-terminal processing에 의해 먼저 C-terminal cysyeine에 palmition 된 후 carboxylmethylation 된다. Palmitation은 transforming activity의 요건인 세포막에 대한 친화력을 유지시키기 위한것으로 추측되며, cysteine residue의 carboxylmethylation의 의미는 아직 확실히 밝혀지고 있지 않으나 세포막에 대한 친화력을 증가 시키는 것으로 추측되고있다. 본 연구에서는 S-Farnesylcysteine Methyltransferase의 기질로서 N-acetyl-S-trans, trans-farnesyl-L-cysteine(AFC)을 합성하였으며, 본 실험실에서 계속 연구하여 온 돼지 간장으로 부터 정제한 천연 단백성 Methylation Inhibitor의 S-Farnesylcysteine Methyltransferase 활성에 대한 억제효과를 검색하였다. 천연 단백성 Methylation Inhibitor는 돼지 간조직의 soluble fraction을 열처리하여 Sephadex G-25 column chromatngraphy한 후 reverse phase HPLC로 정제하였다. 본 inhibitor는 약 10개의 아미노산으로 구성된 peptide성 천연물질로 분자량은 1,400 Da 으로서 합성한 AFC를 기질로 하였을 때, 흰쥐 뇌 조직내 S-Farnesylcysteine methyltransferase에 대한 $IC_{50}$/은 0,82 $\times$ $10^{-6}$ M이었으며 또한 human cancer cell line의 S-Farnesylcysteine Methyltransferase에 대해서도 현저한 저해효과를 나타내었다.

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Induction of Cdk inhibitor p21 and inhibition of cyclooxygenase-2 by resveratrol in human lung carcinoma A549 cells. (Resveratrol에 의한 A549 인체 폐암세포의 증식억제 및 apoptosis 유발에 관한 연구)

  • 김영애;임선영;이숙희;박건영;이원호;최영현
    • Journal of Life Science
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    • v.14 no.5
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    • pp.800-808
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    • 2004
  • Resveratrol, a phytoalexin found at high levels in grapes and in grape products such as red wine, has been reported to possess a wide range of biological and pharmacological activities including antioxident, anti-inflammatory, anti-mutagenic, and anti-carcinogenic effects. According to recent studies, this compound is an effective inhibitor of cell growth in general, triggers partial arrest of the cell cycle and induce apoptosis. In this study, the anti-proliferative effects of resveratrol in A549 human lung carcinoma cells were investigated. It is shown that resveratrol induced the growth inhibition in a time-dependent manner and morphological changes of A549 cells, which were associated with induction of S phase arrest of the cell cycle and apoptotic cell death. The Bcl-$X_L$levels were markedly down-regulated in resveratrol treated cells, however, Bax and Bcl-2 were remained unchanged. Resveratrol treatment induced the proteolytic degradation of Sp-l and proliferating cell nuclear antigen protein, and inhibited the expression of $\beta$-catenin protein. Resveratrol treatment also induced a marked up-regulation of cyclin-dependent kinase (Cdk) inhibitor p21 and inhibited the kinase activities of Cdk2 and Cdk4. In addition, resveratrol treatment inhibited the levels of cyclooxygenase (COX)-2 mRNA and protein, and the release of prostagladin E2 without alteration of COX-1 expression. Taken together, these findings suggest that resveratrol may be a potential chemotherapeutic agent for the control of human lung carcinorma cells.

Low-Dose Radiation Stimulates the Proliferation of Normal Human Lung Fibroblasts Via a Transient Activation of Raf and Akt

  • Kim, Cha Soon;Kim, Jin Kyoung;Nam, Seon Young;Yang, Kwang Hee;Jeong, Meeseon;Kim, Hee Sun;Kim, Chong Soon;Jin, Young-Woo;Kim, Joon
    • Molecules and Cells
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    • v.24 no.3
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    • pp.424-430
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    • 2007
  • The biological effects of low-dose radiation have been investigated and debated for more than a century, but its cellular effects and regulatory mechanisms remain poorly understood. This study shows the human cellular responses to low-dose radiation in CCD-18 Lu cells, which are derived from normal human lung fibroblasts. We examined a colony-forming assay for cell survival by ionizing radiation. Live cell counting and cell cycle analysis were measured for cell proliferation and cell cycle progression following low-dose irradiation. We examined Raf and Akt phosphorylation to determine the proliferation mechanism resulting from low-dose radiation. We also observed that p53 and p21 were related to cell cycle response. We found that 0.05 Gy of ionizing radiation enhanced cell proliferation and did not change the progression of the cell cycle. In addition, 0.05 Gy of ionizing radiation transiently activated Raf and Akt, but did not change phospho-p53, p53 and p21 in CCD-18 Lu cells. However, 2 Gy of ionizing radiation induced cell cycle arrest, phosphorylation of p53, and expression of p53 and p21. The phosphorylation of Raf and Akt proteins induced by 0.05 Gy of ionizing radiation was abolished by pre-treatment with an EGFR inhibitor, AG1478, or a PI3k inhibitor, LY294002. Cell proliferation stimulated by 0.05 Gy of ionizing radiation was blocked by the suppression of Raf and Akt phosphorylation with these inhibitors. These results suggest that 0.05 Gy of ionizing radiation stimulates cell proliferation through the transient activation of Raf and Akt in CCD-18 Lu cells.

Expression of $p21^{WAFl/Cip1}$ by $TGF-{\beta}$ Requires ERK Signaling Pathway

  • Kim, Yong-Kee;Bae, Gyu-Un;Cho, Eun-Jung;Lee, Hoi-Young;Lee, Hyang-Won;Han, Jeung-Whan
    • Proceedings of the PSK Conference
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    • 2003.10b
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    • pp.152.2-153
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    • 2003
  • ${\beta}Although$ it has been demonstrated that $p2l^{WAFl/Cip1}$, a well known cell cycle inhibitor, could be induced by $TGF-{\beta}$ in a p53-independent manner, the detailed signal transduction pathways still remain poorly understood. In this study, we show that ERK is required for $TGF-{\beta}$ induction of $p21^{WAF1/Cip1}$, but JNK or p38 MAPK is not. ERK activation by $TGF-{\beta}$ significantly attenuated by treatment with ROS scavenger such as NAC or catalase, indicating that ROS, mainly $H_2O_2$, generation by $TGF-{\beta}$ might stimulate ERK signaling pathway to require the induction of $p21^{WAF1/Cip1}$. (omitted)

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