• 제목/요약/키워드: cell cycle progression

검색결과 366건 처리시간 0.033초

Inhibition of Cell-Cycle Progression in Human Promyelocytic Leukemia HL-60 Cells by MCS-C2, Novel Cyclin-Dependent Kinase Inhibitor

  • Kim, Min-Kyoung;Cho, Youl-Hee;Kim, Jung-Mogg;Chun, Moon-Woo;Lee, Seung-Ki;Lim, Yoong-Ho;Lee, Chul-Hoon
    • Journal of Microbiology and Biotechnology
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    • 제13권4호
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    • pp.607-612
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    • 2003
  • To elucidate the action mechanism of MCS-C2, a novel analogue of toyocamycin and sangivamycin, its effect on the expression of cell cycle-related proteins in the human myelocytic leukemia cell line HL-60 was examined using Western blotting and a flow cytometric analysis. MCS-C2, a selective inhibitor of cyclin-dependent kinases, was found to inhibit cell growth in a time- and dose-dependent manner, and inhibits cell cycle progression by inducing the arrest at G1 and G2/M phases, in HL-60 cells. The flow cytometric analysis revealed an appreciable arrest of cells in the G2/M phase of the cell cycle after treatment with MCS-C2. The HL-60 cell population increased gradually from 13% at 0 h, to 28% at 12 h in the G2/M phase, after exposure to $2{\;}\mu\textrm{M}$ MCS-C2. Furthermore, Western blot analysis demonstrated that MCS-C2 induced the cell cycle arrest at G1 phase through the inhibition of pRb phosphorylation. Hypophosphorylated pRb accumulated after treatment with $5{\;}\mu\textrm{M}$ MCS-C2 for 12 h, whereas, the level of hyperphosphorylated pRb was reduced. Thus, treatment of the cell with MCS-C2 suppressed the hyperphosphorylated form of pRb with a commensurate increase in the hypophosphorylated form.

인체거대세포바이러스에 의한 인체 단핵구세포의 세포주기 저해 (Cell Cycle Arrest in Human Monocyte Cell Line by Human Cytomegalovirus)

  • 장소영;김미숙;이찬희
    • 미생물학회지
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    • 제44권4호
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    • pp.299-304
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    • 2008
  • 마이엘로이드 계열의 단핵세포는 인체세포거대바이러스(human cytomegalovirus, HCMV)의 잠복 부위로 알려져 있다. 다양한 세포에서 HCMV에 의한 세포주기의 촉진 또는 억제에 관한 연구는 많이 있었지만, 단핵세포에서의 연구는 거의 없는 상태이다. 이에 본 연구에서는 단핵세포에 HCMV가 감염되면 세포주기에 어떤 변화가 나타나는지 알아보고자 하였다. Propidium iodide를 이용한 유세포 분석을 통한 세포주기 분석에서 HCMV에 감염된 THP-1 세포에서는 G0-G1기가 증가하고, 그만큼 S가 감소함을 보았다. 반면 HL-60 세포에서는G0-G1기와 S기의 상대적인 비율에 큰 변화가 없었다. BrdU 유입 실험에서 THP-1세포의 DNA 합성이 HCMV 감염에 의해 억제됨을 알 수 있었다. 세포주기의 G1기에서 S기로의 전환을 억제하는 p21 단백질은HCMV에 감염된 THP-1 세포에서는 발현이 유도되었지만 HL-60 세포에서는 거의 발현이 되지 않았다. 따라서 HCMV는 promocyte THP-1 세포에서 p21 단백질의 유도에 의해 세포주기를 G0-G1기에서 억류함에 따라 세포중식을 억제하는 것으로 생각된다.

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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    • 제24권3호
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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.

치은섬유아세포의 복제노화가 세포주기 조절에 미치는 영향 (Effects of Replicative Senescence on the Cell Cycle Regulation in Human Gingival Fibroblasts)

  • 박영채;양대승;김재호;김현아;유용욱;신형식
    • Journal of Periodontal and Implant Science
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    • 제31권1호
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    • pp.135-148
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    • 2001
  • Gingival fibroblasts are major cellular component of gingiva. However, the molecular mechanisms of senescence of human gingival fibroblasts are unknown. Human fibroblasts undergo replicative senescence in vitro after a limited number of population doublings. A reduced rate of proliferation is a prominent phenomenon observed in senescent fibroblasts. This phenomenon is controled by cell cycle regulatory proteins. The purpose of present study was to investigate the effect of replicative senescence on cell cycle progression and to find out its molecular mechanisms in human gingival fibroblasts. Replicative senescence of gingival fibroblasts were induced by subsequent cultures that were repeated up to 18 passage. In the present study, I examined change of cell proliferation, cell activity, cell viability and cell cycle progression during the replicative process. Also, I examined expression of cell cycle regulatory proteins which was estimated by western blot analysis. Cell proliferation, cell activity and cell viability of gingival fibroblasts were notably decreased with increase of population doubling level(PDL). S phase was decreased and G1 phase was increased with increase of PDL. Western blot analysis showed that levels of P16, p21 and p53 of senescent gingival fibroblasts(PDL41, PDL58) were higher than young fibroblasts(PDL27) and cdk4 were lower than young fibroblasts(PDL27). In conclusion, these results suggest that proliferative function of human gingival fibroblasts may be decreased by replicative senescence and its molecular mechanisms may be activatied with p16, p21, p53 and pRB, and repressed wtih cdk4.

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세포주기조절에 관한 최근 연구 (Significance of Cell Cycle and Checkpoint Cnotrol)

  • 최영현;최혜정
    • 생명과학회지
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    • 제11권4호
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    • pp.362-370
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    • 2001
  • Regulation of cell proliferation is a complex process involving the regulated expression and /or modification of discrete gene products. which control transition between different stages of the cycle. The purpose of this short review is to provide an overview of somatic cell cycle events and their controls. Cycline have appeared as major positive regulators in this network, because their association to the cyclin-dependent kinases(Cdks) allows the subsequent activation on the Cdk/cyclin complexes and their catalatic activity. In mammalian cells, early to mid G1 progression and late G1 progression leading to S phase entry are directed by D-type cyclins-Cdk4, 6 and cyclin E-Cdk 2 both of which can phosphorylate the retinoblastoma protein (pRB). pRB is a transcriptional repressor which, in its unphosphorylated state, binds to members of the E2F transcription factor family and blocks E2F-dependent transcription of genes controlling the G1 to S phase transition an subsequent DNA synthesis. Cyclin A is produced in late G1 and expressed during S and G2 phae, and expression of B-type cyclins is typically maximal during the G2 to M phase transition and it controls the passage through M phase. They primarily associate with the activate Cdk2, and Cdc2, respectively. On the other hand, the Cdk inhibitors negatively control the activity of C아/cyclin complex by coordinating internal and/or external signals and impending proliferation at several key checkpoints. These current and further findings will provide novel approaches to understanding and treating major diseases.

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인진(茵陳)분획물이 간세포활성, 세포주기 및 Fas-mediated Apoptosis에 미치는 영향 (The Effects of five kinds of Artemisia capillaris $T_{HUNB}$ fractions on Cell Viability, Cell Cycle Progression and Fas-mediated Apoptosis of HepG2 Cells)

  • 김영철;이장훈;우홍정;이종훈
    • 대한한방내과학회지
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    • 제21권3호
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    • pp.363-368
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    • 2000
  • Objective : This study was carried out to examine the effect of five fractions of an aqueous extract from Artemisia capillaris $T_{HUNB}$. Methods : The queous extract from Artemisia capillaris $T_{HUNB}$. was fractionized into 5 kinds of material. We observed the effect of each fractions on etoposide-induced apoptosis, cell viability, cell cycle progression and mRNA expression of apoptosis-related genes in human hepatocyte cell line HepG2. Results and Conclusions : The data shows that butanol fraction of Artemisia capillaris $T_{HUNB}$. has no relation with cell cycle, however, it inhibits apoptosis significantly and the action may be due to the suppression of Fas and Sax genes and activation of Bcl-2 gene.

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녹용이 치주인대세포의 세포주기조절에 미치는 영향 (Effects of Cervi Parvum Cornu on the Cell Cycle Regulation in Human Periodontal Ligament Cells)

  • 유승한;최희인;김현아;김윤상;신형식;유형근
    • 동의생리병리학회지
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    • 제17권1호
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    • pp.157-164
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    • 2003
  • Cervi Parvum Cornu(CPC) is that the young horn of deer family and has been traditionally used as a medicine in Eastern. The purpose of present study was to investigate the effects of CPC on cell cycle progression and its molecular mechanism in human periodontal ligament cells (HPOLC). In cell proliferation assay, 1 ng/ml, 10 ng/ml, 100 ng/ml, 1 ㎍/ml and 10 ㎍/ml of CPC were used, all treatment groups increased the cell growth. Maximal cell proliferation was observed in cells exposed to 100 ng/ml of CPC at 4 day, and 10 ng/ml and 100 ng/ml of CPC at 6 days. S phase was increased and G1 phase was decreased in the group treated with 100 ng/ml of CPC in cell cycle analysis. The protein levels of cyclin D1 were not changed, but the levels of cyclin E, cdk 2, cdk 4 and cdk 6 were increased. The protein levels of p21, pRb were decreased as compared to that of control group, but the levels of p53 was not changed in the cells both treated with CPC Md untreated. These results suggested that CPC increases the cell proliferation and cell cycle progression in HPDLC, which is linked to an increased cellular levels of cyclin E, cdk 2, cdk 4 and cdk 6, and decreased the levels of p53, p21.

Gallic Acid Hindered Lung Cancer Progression by Inducing Cell Cycle Arrest and Apoptosis in A549 Lung Cancer Cells via PI3K/Akt Pathway

  • Ko, Eul-Bee;Jang, Yin-Gi;Kim, Cho-Won;Go, Ryeo-Eun;Lee, Hong Kyu;Choi, Kyung-Chul
    • Biomolecules & Therapeutics
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    • 제30권2호
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    • pp.151-161
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    • 2022
  • This study elucidates the anti-cancer potential of gallic acid (GA) as a promising therapeutic agent that exerts its effect by regulating the PI3K/Akt pathway. To prove our research rationale, we used diverse experimental methods such as cell viability assay, colony formation assay, tumor spheroid formation assay, cell cycle analysis, TUNEL assay, Western blot analysis, xenograft mouse model and histological analysis. Treatment with GA inhibited cell proliferation in dose-dependent manner as measured by cell viability assay at 48 h. GA and cisplatin (CDDP) also inhibited colony formation and tumor spheroid formation. In addition, GA and CDDP induced apoptosis, as determined by the distribution of early and late apoptotic cells and DNA fragmentation. Western blot analysis revealed that inhibition of the PI3K/Akt pathway induced upregulation of p53 (tumor suppressor protein), which in turn regulated cell cycle related proteins such as p21, p27, Cyclin D1 and E1, and intrinsic apoptotic proteins such as Bax, Bcl-2 and cleaved caspase-3. The anti-cancer effect of GA was further confirmed in an in vivo mouse model. Intraperitoneal injection with GA for 4 weeks in an A549-derived tumor xenograft model reduced the size of tumor mass. Injection of them downregulated the expression of proliferating cell nuclear antigen and p-Akt, but upregulated the expression of cleaved caspase-3 in tumor tissues. Taken together, these results indicated that GA hindered lung cancer progression by inducing cell cycle arrest and apoptosis, suggesting that GA would be a potential therapeutic agent against non-small cell lung cancer.

Oct4 resetting by Aurkb–PP1 cell cycle axis determines the identity of mouse embryonic stem cells

  • Shin, Jihoon;Youn, Hong-Duk
    • BMB Reports
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    • 제49권10호
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    • pp.527-528
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    • 2016
  • In embryonic stem cells (ESCs), cell cycle regulation is deeply connected to pluripotency. Especially, core transcription factors (CTFs) which are essential to maintaining the pluripotency transcription programs should be reset during M/G1 transition. However, it remains unknown about how CTFs are governed during cell cycle progression. Here, we describe that the regulation of Oct4 by Aurora kinase b (Aurkb)/protein phosphatase 1 (PP1) axis during the cell cycle is important for resetting Oct4 to pluripotency and cell cycle related target genes in determining the identity of ESCs. Aurkb starts to phosphorylate Oct4(S229) at the onset of G2/M phase, inducing the dissociation of Oct4 from chromatin, whereas PP1 binds Oct4 and dephosphorylates Oct4(S229) during M/G1 transition, which resets Oct4-driven transcription for pluripotency and the cell cycle. Furthermore, Aurkb phosphormimetic and PP1 binding-deficient mutations in Oct4 disrupt the pluripotent cell cycle, lead to the loss of pluripotency in ESCs, and decrease the efficiency of somatic cell reprogramming. Based on our findings, we suggest that the cell cycle is directly linked to pluripotency programs in ESCs.

HepG2 간암세포주기에 대한 부자 추출물의 효과 (Effect of Radix Aconiti Extract on Cell Cycle Progression in HepG2 Human Hepatoma)

  • 권강범;김은경;정은실;황인진;김우경;심정섭;김강산;신병철;송용선;류도곤
    • 동의생리병리학회지
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    • 제18권2호
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    • pp.427-430
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    • 2004
  • This study was to investigate the cell cycle arrest effect and its mechanism of Radix Aconiti (RA) extract in HepG2 human hepatoma cells. We used the Flow Cytometer to investigate the effects on cell cycle arrest in RA extract-treated HepG2 cells. And protein levels involved in cell cycle progression such as p53, p21, and p21 are detected by Western blotting method. RA extract induced cell cycle arrest as confirmed by increase of G0/G1 cell population, and the mechanisms were related with up-regulation of p53, p21, p27 protein expressin in HepG2 cells. These results suggest that RA may be a valuable agent for the therapeutic intervention of human hepatomas.