• Title/Summary/Keyword: Cell cycle regulation

Search Result 497, Processing Time 0.025 seconds

Anti-breast cancer activity of Fine Black ginseng (Panax ginseng Meyer) and ginsenoside Rg5

  • Kim, Shin-Jung;Kim, An Keun
    • Journal of Ginseng Research
    • /
    • v.39 no.2
    • /
    • pp.125-134
    • /
    • 2015
  • Background: Black ginseng (Ginseng Radix nigra, BG) refers to the ginseng steamed for nine times and fine roots (hairy roots) of that is called fine black ginseng (FBG). It is known that the content of saponin of FBG is higher than that of BG. Therefore, in this study, we examined antitumor effects against MCF-7 breast cancer cells to target the FBG extract and its main component, ginsenoside Rg5 (Rg5). Methods: Action mechanism was determined by MTT assay, cell cycle assay and western blot analysis. Results: The results from MTT assay showed that MCF-7 cell proliferation was inhibited by Rg5 treatment for 24, 48 and 72 h in a dose-dependent manner. Rg5 at different concentrations (0, 25, 50 and $100{\mu}M$), induced cell cycle arrest in G0/G1 phase through regulation of cell cycle-related proteins in MCF-7 cells. As shown in the results from western blot analysis, Rg5 increased expression of p53, $p21^{WAF1/CIP1}$ and $p15^{INK4B}$ and decreased expression of Cyclin D1, Cyclin E2 and CDK4. Expression of apoptosiserelated proteins including Bax, PARP and Cytochrome c was also regulated by Rg5. These results indicate that Rg5 stimulated cell apoptosis and cell cycle arrest at G0/G1 phase via regulation of cell cycle-associated proteins in MCF-7 cells. Conclusion: Rg5 promotes breast cancer cell apoptosis in a multi-path manner with higher potency compared to 20(S)-ginsenoside Rg3 (Rg3) in MCF-7 (HER2/ER+) and MDA-MB-453 (HER2+/ER) human breast cancer cell lines, and this suggests that Rg5 might be an effective natural new material in improving breast cancer.

Effect of ganglioside GD3 synthase gene expression on VSMC proliferation via ERK1/2 pathway, cell cycle progression and MMP-9 expression

  • Lee, Young-Choon;Kim, Cheorl-Ho
    • Proceedings of the Korean Society of Plant Biotechnology Conference
    • /
    • 2004.10a
    • /
    • pp.81-90
    • /
    • 2004
  • Sialic acid containing glycosphingolipids (gangliosides) have been implicated in the regulation of various biological phenomena such as atherosclerosis. Recent report suggeststhat exogenously supplied disialoganglioside (GD3) serves a dual role in vascular smooth muscle cells (VSMC) proliferation and apoptosis. However, the role of the GD3 synthase gene in VSMC responses has not yet been elucidated. To determine whether a ganglioside is able to modulate VSMC growth. the effect of overexpression of the GD3 synthase gene on DNA synthesis was examined. The results show that the overexpression of this gene has a potent inhibitory effect on DNA synthesis and ERK phosphorylation in cultured VSMC in the presence of PDGF. The suppression of the GD3 synthase gene was correlated with the down-regulation of cyclinE/CDK2. the up-regulation of the CDK inhibitor p21 and blocking of the p27 inhibition,whereas up-regulation of p53 as the result of GD3 synthase gene expression was not observed. Consistently, blockade of GD3 function with anti-GD3 antibody reversed VSMC proliferation and cell cycle proteins. The expression of the CD3 synthase gene also led to the inhibition of TNF--induced matrix metalloproteinase-9 (MMP-9) expression in VSMC as determined by zymography and immunoblot. Furthermore, GD3 synthase gene expression strongly decreased MMP-9 promoteractivlty in response to TNF-. This inhibition was characterized by the down-regulation of MMP-9,which was Iranscriptionally regulated at NF-B and activation protein-1 (AP-1) sites in the MMP-9promoter Finally, the overexpression of MMP-9 in GD3 synthase transfectant cells rescued VSMC proliferation. However MMP-2 overexpression was not affected the cell proliferation. These findings suggest that the fl13 synthase gene represents a physiological modulator of VSMC responses that may contribute to plaque instability in atherosclerosis.

  • PDF

Molecular biological approaches to study the function and regulation of citrate synthase genes in saccharomyces cerevisiae

  • Kim, Kwang-Soo;Rosankranz, Mark;Guarente, Leonard
    • The Microorganisms and Industry
    • /
    • v.12 no.2
    • /
    • pp.30-35
    • /
    • 1986
  • Almost all of the aerobic organisms contain citric acid cycle (or, tricarboxylic acid cycle). This cycle is involved both in energy metabolism and biosynthetic reactions; generation of NADH which derives the synthesis of chemical energy, ATP, and provision of intermediates needed for the biosynthesis. Because of its importance in the cellular metabolism, the regulation of the TCA cycle and its component enzymes has been extensively studied by many biologists (7,28). Citrate synthase is resposible for the initial step of the cycle and has been recognized as the rate limiting step (14,121,26). Understanding of the mechanism of the expression of citrate synthase should be a key step for the elucidation of the regulation of the TCA cycle in the cell metabolism.

  • PDF

Akt: Versatile Mediator of Cell Survival and Beyond

  • Kim, Do-Hoon;Chung, Jong-Kyeong
    • BMB Reports
    • /
    • v.35 no.1
    • /
    • pp.106-115
    • /
    • 2002
  • The serine/threonine kinase Akt has been intensely studied for its role in growth factor-mediated cell survival for the past 5 years. On the other hand, the ongoing research effort has recently uncovered novel regulatory mechanisms and downstream effectors of Akt that demonstrate the involvement of Akt in other cellular functions such as cell cycle progression, angiogenesis, and cancer cell invasion/metastasis. Furthermore, recent studies using whole model organisms suggest additional roles for Akt in important diseases such as aging and diabetes. The following review addresses these recent advances in the understanding of Akt function.

The Effects of Orostachys japonicus on HepG2 Cell Proliferation and Oncogene Expression (와송(瓦松)이 HepG2 cell의 세포분열 및 관련유전자 발현에 미치는 영향)

  • Moon, Young-Hun;Kim, Young-Chul;Lee, Jang-Hoon;Woo, Hong-Jung
    • The Journal of Internal Korean Medicine
    • /
    • v.26 no.1
    • /
    • pp.48-59
    • /
    • 2005
  • Objectives : The aim of the study was to evaluate the effect of WS on HepG2 cell cycle and expression of related genes. Methods : The MTT assay, Cell counting analysis, $[^3H]-Thymidine$ Incorporation Assay, Flow cytometric analysis, Quantitative RT-PCR were studied. Results : WS inhibited HepG2 cell proliferation in low concentration$(1-10\;{\mu]g/ml)$ which did not cause direct cytotoxicity, with dose-dependant manner. WS in-hibited DNA synthesis as well. Flow cytometric analysis on the HepG2 cell showed G2/M phase arrest. Conclusion : These results suggest that WS inhibits HepG2 cell proliferation not by the gene regulation but by G2/M phase arrest in the cell cycle. Thus further studies on the effect of WS in G2/M phase regulation are thought to be needed.

  • PDF

Generation and Fates of Supernumerary Centrioles in Dividing Cells

  • Shin, Byungho;Kim, Myung Se;Lee, Yejoo;Jung, Gee In;Rhee, Kunsoo
    • Molecules and Cells
    • /
    • v.44 no.10
    • /
    • pp.699-705
    • /
    • 2021
  • The centrosome is a subcellular organelle from which a cilium assembles. Since centrosomes function as spindle poles during mitosis, they have to be present as a pair in a cell. How the correct number of centrosomes is maintained in a cell has been a major issue in the fields of cell cycle and cancer biology. Centrioles, the core of centrosomes, assemble and segregate in close connection to the cell cycle. Abnormalities in centriole numbers are attributed to decoupling from cell cycle regulation. Interestingly, supernumerary centrioles are commonly observed in cancer cells. In this review, we discuss how supernumerary centrioles are generated in diverse cellular conditions. We also discuss how the cells cope with supernumerary centrioles during the cell cycle.

NELL2 gene as regulator of cell cycle in neuron differentiation (신경세포 분화에서 세포주기 조절인자로서의 NELL2 유전자의 역할)

  • Joung, Mi Rim;Oh, Yeon Mi;Park, Woo Saeng;Park, Sang Kyu
    • Clinical and Experimental Pediatrics
    • /
    • v.49 no.10
    • /
    • pp.1100-1105
    • /
    • 2006
  • Purpose : Because NELL2 expression is strictly restricted only in neurons in developing and post-differentiated neural tissues, it is thought to be involved in the neuronal differentiation during development and in the maintenance of neuronal physiology in the post-differentiated neurons. In this study, we examined whether NELL2 is involved in the regulation of cell cycle and apoptosis in the hippocampal neuroprogenitor HiB5 cells. Methods : Effects of NELL2 on the cultured HiB5 cell numbers, DNA fragmentation, and proteins involved in the regulation of the cell cycle were measured. Results : NELL2 induced a decrease in cell numbers and an increase in G1 phase arrest. Moreover, transfection of NELL2 resulted in an increase of DNA fragmentation that shows an evidence of apoptosis. Contents of proteins involved in the regulation of cell cycle were also changed by transfection of NELL2 expression vectors. Conclusion : This study suggests that NELL2 plays an important role in the regulation of cell cycle and apoptosis of neurons.

Anticancer Effects of the Isoflavone Extract from Chungkukjang via Cell Cycle Arrest and Apoptosis in MDA-MB-453 Cells (청국장에서 얻은 Isoflavone의 MDA-MB-453세포에서 항암효과 및 관련 기전)

  • Shin, Jin Young;Kim, Taehee;Kim, An Keun
    • YAKHAK HOEJI
    • /
    • v.58 no.1
    • /
    • pp.33-39
    • /
    • 2014
  • The objective of this study is to evaluate the anticancer effects of the isoflavone extract from Chungkukjang in human breast cancer, MDA-MB-453 cells. For this study, MDA-MB-453 cells were treated with 12.5, 25, and $50{\mu}g$ isoflavone extract for 24, 48, and 72 hr. Cell proliferations were decreased in a time- and dose-dependent manner. Reduced cell proliferation was suspected by apoptosis or cell cycle arrest. Therefore, after treatment of $50{\mu}g$ isoflavone extract, apoptotic cells were investigated by annexin V staining. The results indicated that isoflavone extract increased the number of early apoptotic cells compared with control. Cleaved PARP was also increased. Next, we investigated the cell cycle and related proteins. The isoflavone extract leads to cell cycle arrest at the G2/M phase. Moreover isoflavone extract had influenced cell cycle relate proteins such as cyclin B1, cyclin A, and p21. These results suggest that isoflavone extract from Chungkukjang induce apoptosis and cell cycle arrest at G2/M phase via regulation of cell cycle-related proteins in MDA-MB-453 cells.

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

  • You Seung Han;Choi Hee In;Kim Hyun A;Kim Yun Sang;Shin Hyung Shik;You Hyung Keun
    • Journal of Physiology & Pathology in Korean Medicine
    • /
    • v.17 no.1
    • /
    • pp.157-164
    • /
    • 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.

miR-372 Regulates Cell Cycle and Apoptosis of AGS Human Gastric Cancer Cell Line through Direct Regulation of LATS2

  • Cho, Wha Ja;Shin, Jeong Min;Kim, Jong Soo;Lee, Man Ryul;Hong, Ki Sung;Lee, Jun-Ho;Koo, Kyoung Hwa;Park, Jeong Woo;Kim, Kye-Seong
    • Molecules and Cells
    • /
    • v.28 no.6
    • /
    • pp.521-527
    • /
    • 2009
  • Previously, we have reported tissue- and stage-specific expression of miR-372 in human embryonic stem cells and so far, not many reports speculate the function of this microRNA (miRNA). In this study, we screened various human cancer cell lines including gastric cancer cell lines and found first time that miR-372 is expressed only in AGS human gastric adenocarcinoma cell line. Inhibition of miR-372 using antisense miR-372 oligonucleotide (AS-miR-372) suppressed proliferation, arrested the cell cycle at G2/M phase, and increased apoptosis of AGS cells. Furthermore, AS-miR-372 treatment increased expression of LATS2, while over-expression of miR-372 decreased luciferase reporter activity driven by the 3' untranslated region (3' UTR) of LATS2 mRNA. Over-expression of LATS2 induced changes in AGS cells similar to those in AGS cells treated with AS-miR-372. Taken together, these findings demonstrate an oncogenic role for miR-372 in controlling cell growth, cell cycle, and apoptosis through down-regulation of a tumor suppressor gene, LATS2.