• 제목/요약/키워드: telomerase

검색결과 163건 처리시간 0.037초

Inhibition of Telomerase Activity in U937 Human Monocytic Leukemia Cells by Compound K, a Ginseng Saponin Metabolite

  • Kang Kyoung-Ah;Lee Kyoung-Hwa;Chae Sung-Wook;Kim Jeong-Ki;Seo Jung-Yeon;Ham Yong-Ho;Lee Kee-Ho;Kim Bum-Joon;Kim Hee-Sun;Kim Dong-Hyun;Hyun Jin Won
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제11권1호
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    • pp.7-12
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    • 2006
  • Telomerase activation is detected in most cancerous cells; hence, telomerase is a highly selective target for cancer therapy, which plays an important role in the apoptotic process. We have previously reported that the ginseng saponin metabolite, Compound K (20-O-D-glucopyranosyl-20(S)-protopanaxadiol, IH901), inhibits cell proliferation by inducing apoptosis and cell cycle arrest at the $G_1$ phase. The present study investigated the regulation of telomerase activity in Compound K treated U937 cells. Compound K treatment caused a reduction in telomerase activity and down-regulated the human telomerase reverse transcriptase (hTERT) gene, resulting in the decreased expressions of its protein, and of the c-Myc and Spl proteins (transcription factors of hTERT). These results indicate that the anticancer activity of Compound K could be mediated by inhibition of the telomerase activity.

Telomerase: Key to Mortal or Immortal Road

  • Yang, Eun-Young;Sung, Young Hoon;Lee, Han-Woong
    • IMMUNE NETWORK
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    • 제2권4호
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    • pp.183-188
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    • 2002
  • Gradual attrition of telomere to a critical short length elicits successive cellular response of cellular senescence and crisis. Cancer cells evade this process by maintaining functional telomeres via one of two known mechanisms of telomere maintenance. The first and most frequent mechanism involves reactivation of enzyme activity of telomerase, a ribonucleoprotein complex mainly via transcriptional up-regulation of TERT, a catalytic subunit of telomerase complex. The second mechanism utilizes telomerase-independent way termed ALT (for Alternative Lengthening of Telomere), which possibly involves recombination pathways. Thus master key for cellular immortalization is supposed to possess adequate telomere reserves. Indeed, telomerase can alone induce the immortalization under culture on feeder cell layers without generally known inactivation mechanism of tumor suppressor genes. Including this phenomena, this review will focus on telomerase and telomere-associated proteins, thereby implication of these proteins for cellular immortalization processes.

Antiproliferative effect of gold(I) compound auranofin through inhibition of STAT3 and telomerase activity in MDA-MB 231 human breast cancer cells

  • Kim, Nam-Hoon;Park, Hyo Jung;Oh, Mi-Kyung;Kim, In-Sook
    • BMB Reports
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    • 제46권1호
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    • pp.59-64
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    • 2013
  • Signal transducer and activator of transcription 3 (STAT3) and telomerase are considered attractive targets for anticancer therapy. The in vitro anticancer activity of the gold(I) compound auranofin was investigated using MDA-MB 231 human breast cancer cells, in which STAT3 is constitutively active. In cell culture, auranofin inhibited growth in a dose-dependent manner, and N-acetyl-L-cysteine (NAC), a scavenger of reactive oxygen species (ROS), markedly blocked the effect of auranofin. Incorporation of 5-bromo-2'-deoxyuridine into DNA and anchorage-independent cell growth on soft agar were decreased by auranofin treatment. STAT3 phosphorylation and telomerase activity were also attenuated in cells exposed to auranofin, but NAC pretreatment restored STAT3 phosphorylation and telomerase activity in these cells. These findings indicate that auranofin exerts in vitro antitumor effects in MDA-MB 231 cells and its activity involves inhibition of STAT3 and telomerase. Thus, auranofin shows potential as a novel anticancer drug that targets STAT3 and telomerase.

siRNA-mediated Inhibition of hTERC Enhances Radiosensitivity of Cervical Cancer

  • Chen, Min;Xing, Li-Na
    • Asian Pacific Journal of Cancer Prevention
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    • 제13권12호
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    • pp.5975-5979
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    • 2012
  • Background: To investigate the influence of telomerase activity, apoptosis, radiosensitivity of cervical cancer after siRNA-mediated knockdown of telomerase RNA and evaluate in vivo growth with gene interference. Methods: We studied siRNA-targeting-telomerase RNA transfection into the Hela cell line. Expression of hTERC mRNA was detected by RT-PCR and telomerase activity was measured by the TRAP assay. Growth inhibition was determined by MTT assay and radiosensitivity of the cervical cancer cells was examined by colony formation assay. In addtion, effects of hTERC inhibition in vivo were studied by injection of siRNA-transfected Hela cells into nude mice. Results: The hTERC siRNA effectively downregulated the expression of hTERC mRNA and also reduced the telomerase activity to 30% of the untreated control vlaue. The viability of hTERC siRNA transfected Hela cells was reduced by 44.7% after transfection. After radiation treatment, the radiosensitivity of Hela cells with hTERC knockdown was increased. In vivo, the tumors developing from the hTERC siRNA-transfected cells were of reduced size, indicating that the hTERT siRNA also depressed the tumorigenic potential of the Hela cells. Conclusions: Our results supported the concept of siRNA-mediated inhibition of telomerase mRNA which could inhibit the expression of hTERC and telomerase activity. Furthermore, radiosensitivity was upregulated after knockdown the hTERC in vivo and in vitro.

Antiproliferative Effects of Crocin in HepG2 Cells by Telomerase Inhibition and hTERT Down-Regulation

  • Noureini, Sakineh Kazemi;Wink, Michael
    • Asian Pacific Journal of Cancer Prevention
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    • 제13권5호
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    • pp.2305-2309
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    • 2012
  • Crocin, the main pigment of Crocus sativus L., has been shown to have antiproliferative effects on cancer cells, but the involved mechanisms are only poor understood. This study focused on probable effect of crocin on the immortality of hepatic cancer cells. Cytotoxicity of crocin ($IC_{50}$ 3 mg/ml) in hepatocarcinoma HepG2 cells was determined after 48 h by neutral red uptake assay and MTT test. Immortality was investigated through quantification of relative telomerase activity with a quantitative real-time PCR-based telomerase repeat amplification protocol (qTRAP). Telomerase activity in 0.5 ${\mu}g$ protein extract of HepG2 cells treated with 3 mg/ml crocin was reduced to about 51% as compared to untreated control cells. Two mechanisms of inhibition, i.e. interaction of crocin with telomeric quadruplex sequences and down regulation of hTERT expression, were examined using FRET analysis to measure melting temperature of a synthetic telomeric oligonucleotide in the presence of crocin and quantitative real-time RT-PCR, respectively. No significant changes were observed in the $T_m$ telomeric oligonucleotides, while the relative expression level of the catalytic subunit of telomerase (hTERT) gene showed a 60% decrease as compared to untreated control cells. In conclusion, telomerase activity of HepG2 cells decreases after treatment with crocin, which is probably caused by down-regulation of the expression of the catalytic subunit of the enzyme.

비소세포폐암에 있어서의 Telomerase 활성도 (Telomerase Activity in Non-small Cell Lung Cancer)

  • 김진국;김관민
    • Journal of Chest Surgery
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    • 제30권7호
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    • pp.701-707
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    • 1997
  • 그동안 폐암의 발생에 관여하는 여러가지 유전자의 이상이 보고되어 왔으나 모든 종류의 폐암에서 보이는 비억제적 성장(unconkolle6 growth)을 대변할 수 있는 유전자적 종양 표시자(molecular tumor marker)는 보고된 바 없었다. 최근 유전자(chromosome)의 말단부에 위치한 특이한 구조인 telomere가 세포의 노화나 증식정도 (proliferative activity)에 따라 그 구조, 특히 TrAGGG 반복 구조가 변한다는 것이 알려진 바 있다. 따라서 telomere의 반복 구조를 만드는 효소인 telomerase의 활성도는 대상 세포의 증식 상황이나 증식 가능성을 나타내는 표시 자로서의 기능이 있다고 추정된다. 따라서 이는 종양의 진단은 물론 대상 환자의 향후 예후를 판 단하는 데도 좋은 지표로 이용될 수 있다. 12개의 다양한 비소세포폐암 세포주와 수술로 적출된 41명의 비세포계암 환자의 종양 조직에 대해 nROolymerase chain reaction)을 기초로 한 TRAP assay를 이용하여 telomeiase활성도를 측정하였다. 대조군으로는 동시에 적출된, 종양으로부터 가장 먼 위치의 정상 폐조직을 이용하였다. 12개 전 종양 세포주는 물론 대부분의 종양 조직(94%)에서, 성별, 연령, 세포 병리학적 subtype, 암기(stage) 등과 관련이 언이, telomerase의 활성도가 측정되었으며 정상이라고 간주된 조직에서는 5명으로 부터 채취한 조직에서만 미약하게 telomerase활성도가 관찰되었다. 예후에 연관지어 telomerase활성도의 의미는 telmerase활성도가 보이지 않는 종글이 극히 적었고 또한 추적 관찰 기간이 짧아 판정할 수 없었다. Telomere의 길이의 변화는의미를 판정키 어려웠다. 이상의 결과는 비소세포폐암에 있어 telomerase활성도의 변화가 암발생에 아주 중요한 과정일 수 있다는 추정을 가능하게 하며 telomerase활성도의 측정이 종양의 진 단에 유용하게 이용될 수 있음을 확인시켜 주는 것이라 사료된다.

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Telomeres Distribution and Telomerase Activity During Chick Embryonic and Developmental Stages

  • Cho, E.J.;Kang, M.Y.;Jung, G.S.;Sohn, S.H.
    • 한국발생생물학회:학술대회논문집
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    • 한국발생생물학회 2003년도 제3회 국제심포지움 및 학술대회
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    • pp.111-111
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    • 2003
  • Telomeres are the end of chromosomes and consist of a tandem repeat sequence of (TTAGGG)n and associated proteins. Telomerase is a ribonucleoprotein which act as a template for the synthesis of telomeric DNA. Telomeres are essential for chromosome stability and are related with cell senescence, apoptosis and cancer. Even though telomeres and telomerase have been studied extensively, very little is known about telomere dynamics in embryonic cells. This study was carried out to analyze the telomeres distribution and telomerase activity of chicken cells during embryonic and developmental stages. The target cells for analysing were sperms, ovulated ova, early embryonic cells and the cells from brain, heart, liver, kidney and germinal tissue in fetus. Telomeres distribution on target cells was analyzed by Q-FISH (Quantitation-Fluorescence in situ Hybridization) techniques using a chicken telomere repeat probe. Telomerase activity was performed by TRAP assay (Telomeric repeat Amplification Protocol) with target DNA. In results, the telomeres of chicken were found at the ends of all chromosomes. In addition, chicken had interstitial telomeres on chromosomes 1, 2 and 3. Telomerase activity was highly detectable in early embryonic cells, germinal tissues and kidney cells. Whereas telomerase activity was gradually down-regulated when the organs, including brain, heart, and liver, were developed from embryos. In the distribution of telomeric DNA on the embryonic and developmental stages, most of the cells was gradually decreased in telomere quantity during ontogenesis.

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Differentiation Inductions Altered Telomere Length and Telomerase Activity in Human Dental Pulp-Derived Mesenchymal Stem Cell

  • Lee, Hyeon-Jeong;Jeon, Ryoung-Hoon;Park, Byung-Joon;Jang, Si-Jung;Lee, Sung-Lim;Rho, Gyu-Jin;Kim, Seung-Joon;Lee, Won-Jae
    • 한국동물생명공학회지
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    • 제34권2호
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    • pp.93-99
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    • 2019
  • Telomeres are known as a specialized region in the end of chromosomes to protect DNA destruction, but their lengths are shortened by repetition of cell division. This telomere shortening can be preserved or be elongated by telomerase and TERT expression. Although a certain condition in the cells may affect to the cellular and molecular characteristics, the effect of differentiation induction to telomere length and telomerase activity in mesenchymal stem cells (MSCs) has been less studied. Therefore, the present study aimed to uncover periodical alterations of telomere length, telomerase activity and TERT expression in the dental pulp-derived MSCs (DP-MSCs) under condition of differentiation inductions into adipocytes and osteoblasts on a weekly basis up to 3 weeks. Shortening of telomere was significantly (p < 0.05) identified from early-middle stages of both differentiations in comparison with undifferentiated DP-MSCs by non-radioactive chemiluminescent assay and qRT-PCR method. Telomere length in undifferentiated DP-MSCs was 10.5 kb, but the late stage of differentiated DP-MSCs which can be regarded as the adult somatic cell exhibited 8.1-8.6 kb. Furthermore, the relative-quantitative telomerase repeat amplification protocol or western blotting presented significant (p < 0.05) decrease of telomerase activity since early stages of differentiations or TERT expression from middle stages of differentiations than undifferentiated state, respectively. Based on these results, it is supposed that shortened telomere length in differentiated DP-MSCs was remained along with prolonged differentiation durations, possibly due to weakened telomerase activity and TERT expression. We expect that the present study contributes on understanding differentiation mechanism of MSCs, and provides standardizing therapeutic strategies in clinical application of MSCs in the animal biotechnology.

Analysis of Telomerase Activity by HPV E6/E7 Expression in SW13

  • 김영권
    • 대한의생명과학회지
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    • 제12권4호
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    • pp.399-403
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    • 2006
  • Cervical cancer is one of the most prevalent cancers developed in women worldwide, and human papillomavirus (HPV) type 16 is the most common agent linked to human cerivical carcinoma. Viral oncogenes E6 and E7 are selectively ratined and expressed in carcinoma cells infected with human papillomavirus type 16 and cooperated with each other in immortalization and transformation of primary keratinocytes. Because of HPV oncogenesis mechanism was not completely solved, the more studies be required thoroughly. In the present study, to investigate the telomere independent role of telomerase in HPV oncogenesis, we constructed the E6 mutant, E7, E6/E7 and hTERT over-expressed stable cells with a telomerase negative cell line, SW13. Expressions of Inserted genes were measured by RT-PCR. E6, E7 and hTERT genes were well expressed in each cell lines comparing with the control groups. By analyzing the cell morphology under the microscope, hTERT clone size was a more smaller than the mock control but oncogene expressed clones were slightly lengthened the marginal region. In addition, hTERT cells has also, a tendency of brief dividing time compared to the mock control. To determine whether telomerase activity associated with a HPV oncogenesis by oncoprotein expression, we performed the PCR based TRAP assay and Northern blot analysis. In TRAP assay data, telomerase activities in hTERT and oncogene clones were more increased than the mock control. In addition, SW13/ E6/E7 cells appeared a extremely increased activity than any other clones. Induced TERT mRNA by E6/E7 wasn't, however, detected in Northern blotting. In conclusion, these findings suggest that telomerase activity closely associated the HPV oncogenesis and E6/E7 co-expression is a most important factor of telomerase activity.

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