• 제목/요약/키워드: cell cycle

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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.

옥수수 성 결정 메커니즘: 세포 사멸, 세포 방어, 세포주기 멈춤 (The Sex Determination Mechanisms in Maize: Cell Death, Cell Protection and Cell Cycle Arrest)

  • 김종철;이균오
    • 생명과학회지
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    • 제16권4호
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    • pp.699-703
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    • 2006
  • 옥수수(Zea mays)는 단성화 식물로서 암꽃과 수꽃이 한 식물체내에 분리되어서 존재하며 수정시 이질성을 높이는 방향으로 진화되었다. 암꽃과 수꽃 각각은 단성화 상태로 분화하기 전에 한 개의 암술과 세 개의 수술 원시세포가 동일하게 형성된다. 옥수수가수꽃으로 분화할 때는 암술 원시세포에서 세포사멸 현상이 일어나는데 이것은 TASSELSEED 유전자들에 의해 매개된다. 이와 대조적으로 암꽃의 암술에서는 TASSELSEED 유전자들에 의한 세포사멸이 억제되는데 여기에는 SILKLESS1 유전자가 관여한다. 한편, 암꽃의 수술에서는 세포주기 멈춤 현상이 오랜 시간 지속되다가 결국에는 수술이 죽게 된다. 이때 세포주기를 조절하는 유전자인 CYCLIN B 와 WEE1 유전자가 이 과정에 참여한다. 이와 더불어, 지베렐린 생합성의 시간적 공간적 조절이 수술의 세포주기 멈춤의 원인이 된다. 본 총설에서는 옥수수의 성 결정 과정 중에 일어나는 세포사멸, 세포 방어, 세포주기 멈춤에 대하여 분자세포 발생 생물학 및 유전학적인 견지에서 고찰하였다.

한우 섬유아세포의 성 판별 및 세포주기 유도 분석 (Sexing and Cell Cycle Induction Hanwoo Fetal Fibroblast Cells)

  • 김현주;강회성;최화식;이성호;박창식;진동일
    • 한국가축번식학회지
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    • 제27권1호
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    • pp.53-59
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    • 2003
  • 본 연구에서는 한우 태아의 시기별로 35일령, 50일령, 70일령 및 90일령의 fetal fibroblast cell line을 생산하였고, bovine-specific primer와 Y chromosome-specific primer를 이용하여 PCR에 의해 성을 판별하여 각각 암수 2 line의 한우 fetal fibroblast cell line을 확립하였다. 이들 cell line을 계대배양하여 passage number가 10 이상에서 염색체 분석을 실시하였는데 모두에서 80%이상의 세포가 60개의 정상 염색체수의 나타내어 계대배양이 karyotype에 영향을 미치지 않는 것으로 나타났다. Serum starvation과 confluent 배양 방법을 이용하여 Go 상태로 유도되었는지 확인하기 위해 PCNA antibody를 이용하여 Western blotting 분석을 실시하였는데 PCNA 발현이 현저히 감소되는 것을 확인할 수 있었고, 다시 정상 medium으로 환원시켰을 때 세포분열이 재개되어 Go상태로 유도되었음을 확인할 수 있었다. 또한 serum stravation 방법이 conflent한 배양방법보다 PCNA 발현양이 적은 것으로 나타나 좀더 효율적인 Go 상태 세포 주기 조절방법으로 판명되었다.

Mechanism Underlying Curcumin-induced Apoptosis and Cell Cycle Arrest on SCC25 Human Tongue Squamous Cell Carcinoma Cell Line

  • Moon, Jung-Bon;Lee, Kee-Hyun;Kim, In-Ryoung;Kim, Gyoo-Cheon;Kwak, Hyun-Ho;Park, Bong-Soo
    • International Journal of Oral Biology
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    • 제39권1호
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    • pp.23-33
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    • 2014
  • Several studies have shown that curcumin, which is derived from the rhizomes of turmeric, possesses antimicrobial, antioxidant and anti-inflammatory properties. The antitumor properties of curcumin have also now been demonstrated more recently in different cancers. This study was undertaken to investigate the modulation of cell cycle-related proteins and the mechanisms underlying apoptosis induction by curcumin in the SCC25 human tongue squamous cell carcinoma cell line. Curcumin treatment of the SCC25 cells resulted in a time- and dose-dependent reduction in cell viability and cell growth, and onset of apoptotic cell death. The curcumin-treated SCC25 cells showed several types of apoptotic manifestations, such as nuclear condensation, DNA fragmentation, reduced MMP and proteasome activity, and a decreased DNA content. In addition, the treated SCC25 cells showed a release of cytochrome c into the cytosol, translocation of AIF and DFF40/CAD into the nuclei, a significant shift in the Bax/Bcl-2 ratio, and the activation of caspase-9, caspase-7, caspase-6, caspase-3, PARP, lamin A/C, and DFF45/ICAD. Furthermore, curcumin exposure resulted in a downregulation of G1 cell cycle-related proteins and upregulation of $p27^{KIP1}$. Taken together, our findings demonstrate that curcumin strongly inhibits cell proliferation by modulating the expression of G1 cell cycle-related proteins and inducing apoptosis via proteasomal, mitochondrial, and caspase cascades in SCC25 cells.

Differences in Their Proliferation and Differentiation between B-1 and B-2 Cell

  • Yeo, Seung-Geun;Cha, Chang-Il;Park, Dong-Choon
    • IMMUNE NETWORK
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    • 제6권1호
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    • pp.1-5
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    • 2006
  • Background: B cell subset has been divided into B-1 cells and B-2 cells. B-1 cells are found most prominently in the peritoneal cavity, as well as constituting a small pro portion of splenic B cells and they are larger and less dense than B-2 cells in morphology. This study was designed to compare the differences in their proliferation and differentiation between B-1 and B-2 cell. Methods: We obtained sorted B-1 cells from peritoneal fluid and B-2 cells from spleens of mice. Secreted IgM was measured by enzyme-linked immunosorbent assay. Entering of S phase in response to LPS-stimuli was measured by proliferative assay. Cell cycle analysis by propidium iodide was performed. p21 expression was assessed by real time PCR. Results: Cell proliferation and cell cycle progression in B-1 and B-2 cells, which did not occur in the absence of LPS, required LPS stimulation. After LPS stimulation, B-1 and B-2 cells were shifted to Sand G2/M phases. p21 expression by resting B-1 cells was higher than that of resting B-2 cells. Conclusion: B-1 cells differ from conventional B-2 cells in proliferation, differentiation and cell cycle.

Effects of polysaccharides derived from Orostachys japonicus on induction of cell cycle arrest and apoptotic cell death in human colon cancer cells

  • Ryu, Deok-Seon;Baek, Geum-Ok;Kim, Eun-Young;Kim, Ki-Hoon;Lee, Dong-Seok
    • BMB Reports
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    • 제43권11호
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    • pp.750-755
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    • 2010
  • Crude Orostachys japonicus polysaccharide extract (OJP) was prepared by hot steam extraction. Polysaccharides (OJPI) were separated from OJP by gel filtration chromatography and phenol-sulfuric acid assay. The average molecular weight of the OJPI was 30-50 kDa. The anti-proliferative effect of OJPI on HT-29 human colon cancer cells was investigated via morphology study, cell viability assay, apoptosis assay, cell cycle analysis, and cDNA microarray. OJPI inhibited proliferation and growth of HT29 cells and also stimulated apoptosis in a dose- and time-dependent manner. In cell cycle analysis, treatment with OJPI resulted in a marked increase of cells in the G0 (sub G1) and G2/M phases. To screen for genes involved in the induction of cell cycle arrest and apoptosis, the gene expression profiles of HT-29 cells treated with OJPI were examined by cDNA microarray, revealing that a number of genes were up- or down-regulated by OJPI. Whereas several genes involved in anti-apoptosis, cell proliferation and growth, and cell cycle regulation were down-regulated, expression levels of several genes involved in apoptosis, tumor suppression, and other signal transduction events were up-regulated. These results suggest that OJPI inhibits the growth of HT-29 human colon cancer cells by various apoptosis-aiding activities as well as apoptosis itself. Therefore, OJPI deserve further development as an effective agent exhibiting anticancer activity.

S Phase Cell Cycle Arrest and Apoptosis is Induced by Eugenol in G361 Human Melanoma Cells

  • Rachoi, Byul-Bo;Shin, Sang-Hun;Kim, Uk-Kyu;Hong, Jin-Woo;Kim, Gyoo-Cheon
    • International Journal of Oral Biology
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    • 제36권3호
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    • pp.129-134
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    • 2011
  • Eugenol is an essential oil found in cloves and cinnamon that is used widely in perfumes. However, the significant anesthetic and sedative effects of this compound have led to its use also in dental procedures. Recently, it was reported that eugenol induces apoptosis in several cancer cell types but the mechanism underlying this effect has remained unknown. In our current study, we examined whether the cytotoxic effects of eugenol upon human melanoma G361 cells are associated with cell cycle arrest and apoptosis using a range of methods including an XTT assay, Hoechst staining, immunocyto-chemistry, western blotting and flow cytometry. Eugenol treatment was found to decrease the viability of the G361 cells in both a time- and dose-dependent manner. The induction of apoptosis in eugenol-treated G361 cells was confirmed by the appearance of nuclear condensation, the release of both cytochrome c and AIF into the cytosol, the cleavage of PARP and DFF45, and the downregulation of procaspase-3 and -9. With regard to cell cycle arrest, a time-dependent decrease in cyclin A, cyclin D3, cyclin E, cdk2, cdk4, and cdc2 expression was observed in the cells after eugenol treatment. Flow cytometry using a FACScan further demonstrated that eugenol induces a cell cycle arrest at S phase. Our results thus suggest that the inhibition of G361 cell proliferation by eugenol is the result of an apoptotic response and an S phase arrest that is linked to the decreased expression of key cell cycle-related molecules.

SOMPS 알고리즘을 이용한 세포주기 조절 유전자 검출 (Detecting cell cycle-regulated genes using Self-Organizing Maps with statistical Phase Synchronization (SOMPS) algorithm)

  • 강용석;배철수
    • 한국산학기술학회논문지
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    • 제13권9호
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    • pp.3952-3961
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    • 2012
  • 세포주기조절유전자를 식별하는 계산방법을 개발하는 것은 시스템 생물학의 중요한 주제중 하나이다. 이전 방법의 대부분은 세포주기 조절 유전자를 식별하는 표현신호의 주기적인 특성으로 간주한다. 그러나, 세포주기 조절유전자는 상대적으로 세포 네트워크를 기반으로 서로 활성화된 상대적으로 많은 상호 작용을 일으킨다고 가정한다. 본 연구에서는 세포주기 분석에 변수 위상동기화 이론을 적용하여, "통계적상 동기화를 이용한 자가조직지도 (SOMPS)", 즉, 자가조직지도와 다변수 통계 동기화 방법으로 이루어진 방법을 사용하여 여러 개의 하위집합과의 상호작용을 발생시키고자 한다. 평가방법으로 SOMPS방법 알고리즘이 세포주기조절 유전자를 방법으로 기존에 사용되는 방법들과 같이 유용할 것으로 보인다.

Iron-Saturated Lactoferrin Stimulates Cell Cycle Progression through PI3K/Akt Pathway

  • Lee, Shin-Hee;Pyo, Chul-Woong;Hahm, Dae Hyun;Kim, Jiyoung;Choi, Sang-Yun
    • Molecules and Cells
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    • 제28권1호
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    • pp.37-42
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    • 2009
  • Iron binding lactoferrin (Lf) is involved in the control of cell cycle progression. However, the molecular basis underlying the effects of Lf on cell cycle control, as well as its target genes, remains incompletely understood. In this study, we have demonstrated that a relatively low level of ironsaturated Lf, Lf($Fe^{3+}$), can stimulate S phase cell cycle entry, and requires Akt activation in MCF-7 cells. Lf($Fe^{3+}$) immediately induced Akt phosphorylation at Ser473, which subsequently induced the phosphorylation of two G1-checkpoint Cdk inhibitors, $p21^{Cip/WAF1}$ and $p27^{kip1}$. The Lf($Fe^{3+}$)-induced phosphorylation of Cdk inhibitors impaired their nuclear import behavior, thereby inducing cell cycle progression. However, the treatment of cells with a PI3K inhibitor, LY294002, almost completely blocked Lf($Fe^{3+}$)-stimulated cell cycle progression. LY294002 treatment abrogated Lf($Fe^{3+}$)-induced Akt activation, and prevented the cytoplasmic localization of $p27^{kip1}$. Higher levels of $p21^{Cip/WAF1}$ were also detected in the cytoplasmic sub-cellular compartment as a measure of cellular response to Lf($Fe^{3+}$). Consequently, the degree of phosphorylation of retinoblastoma protein was enhanced in response to Lf($Fe^{3+}$). Therefore, we conclude that Lf($Fe^{3+}$), as a potential antagonist of Cdk inhibitors, can facilitate the functions of E2F during progression to S phase via the Akt signaling pathway.

Ankyrin Repeat-Rich Membrane Spanning (ARMS)/Kidins220 Scaffold Protein Regulates Neuroblastoma Cell Proliferation through p21

  • Jung, Heekyung;Shin, Joo-Hyun;Park, Young-Seok;Chang, Mi-Sook
    • Molecules and Cells
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    • 제37권12호
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    • pp.881-887
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    • 2014
  • Cell proliferation is tightly controlled by the cell-cycle regulatory proteins, primarily by cyclins and cyclin-dependent kinases (CDKs) in the $G_1$ phase. The ankyrin repeat-rich membrane spanning (ARMS) scaffold protein, also known as kinase D-interacting substrate of 220 kDa (Kidins 220), has been previously identified as a prominent downstream target of neurotrophin and ephrin receptors. Many studies have reported that ARMS/Kidins220 acts as a major signaling platform in organizing the signaling complex to regulate various cellular responses in the nervous and vascular systems. However, the role of ARMS/Kidins220 in cell proliferation and cell-cycle progression has never been investigated. Here we report that knockdown of ARMS/Kidins220 inhibits mouse neuroblastoma cell proliferation by inducing slowdown of cell cycle in the $G_1$ phase. This effect is mediated by the upregulation of a CDK inhibitor p21, which causes the decrease in cyclin D1 and CDK4 protein levels and subsequent reduction of pRb hyperphosphorylation. Our results suggest a new role of ARMS/Kidins220 as a signaling platform to regulate tumor cell proliferation in response to the extracellular stimuli.