• 제목/요약/키워드: inhibition of DNA damage

검색결과 175건 처리시간 0.02초

Hsp90 Inhibitor Geldanamycin Enhances the Antitumor Efficacy of Enediyne Lidamycin in Association with Reduced DNA Damage Repair

  • Han, Fei-Fei;Li, Liang;Shang, Bo-Yang;Shao, Rong-Guang;Zhen, Yong-Su
    • Asian Pacific Journal of Cancer Prevention
    • /
    • 제15권17호
    • /
    • pp.7043-7048
    • /
    • 2014
  • Inhibition of heat shock protein 90 (Hsp90) leads to inappropriate processing of proteins involved in DNA damage repair pathways after DNA damage and may enhance tumor cell radio- and chemotherapy sensitivity. To investigate the potentiation of antitumor efficacy of lidamycin (LDM), an enediyne agent by the Hsp90 inhibitorgeldanamycin (GDM), and possible mechanisms, we have determined effects on ovarian cancer SKOV-3, hepatoma Bel-7402 and HepG2 cells by MTT assay, apoptosis assay, and cell cycle analysis. DNA damage was investigated with H2AX C-terminal phosphorylation (${\gamma}H2AX$) assays. We found that GDM synergistically sensitized SKOV-3 and Bel-7402 cells to the enediyne LDM, and this was accompanied by increased apoptosis. GDM pretreatment resulted in a greater LDM-induced DNA damage and reduced DNA repair as compared with LDM alone. However, in HepG2 cells GDM did not show significant sensitizing effects both in MTT assay and in DNA damage repair. Abrogation of LDM-induced $G_2/M$ arrest by GDM was found in SKOV-3 but not in HepG2 cells. Furthermore, the expression of ATM, related to DNA damage repair responses, was also decreased by GDM in SKOV-3 and Bel-7402 cells but not in HepG2 cells. These results demonstrate that Hsp90 inhibitors may potentiate the antitumor efficacy of LDM, possibly by reducing the repair of LDM-induced DNA damage.

마늘 및 생강추출물의 DNA 손상억제작용 (Inhibitory Effects of Ginger and Garlic Extracts on the DNA Damage)

  • 강진훈;안방원;이동호;변한석;김선봉;박영호
    • 한국식품과학회지
    • /
    • 제20권3호
    • /
    • pp.287-292
    • /
    • 1988
  • 지질의 산화로 일어나는 DNA손상 작용에 대한 천연 항산화성분의 억제작용과 그 기구를 조사하기 위하여 가정에서 상용(常用)하는 생강과 마늘에서 추출한 항산화성분을 각각, linoleic acid와 pBR322 DNA의 반응계에 첨가하여 $37^{\circ}C$에서 반응시키면서 경시적인 DNA 손상억제능을 조사하였다. 또한, linoleic acid와 생각 및 마늘추출물의 반응계에서 경시적으로 생성하는 superoxideanion(${\cdot}\;O_2^+$)과 과산화수소$(H_2O_2)$를 측정하여 이들 추출물의 활성산소소거능(活性酸素消去能)도 아울러 비교(比較) 검토(檢討)하고 다음과 같은 결과를 얻었다. 생각 및 마늘추출물을 첨가한 반응계에서는 대조구에 비하여 DNA 손상이 크게 억제되었으며 생각추출물의 DNA 손상억제능이 전(全)농도에 걸쳐 반응 4일까지 유지된 것으로 나타나 $555{\mu}g$ 이상의 농도에서 동일한 경향을 나타내는 마늘추출물에 비하여 상당히 큰 것을 알 수 있었다. 또한, 이들 추출물은 linoleic acid의 산화과정에서 생성된 superoxide anion과 과산화수소의 소거능이 컸으며 이러한 작용은 생각추출물이 마늘추출물보다 큰 것으로 나타나, 양(兩)추출물의 DNA 손상억제능이 활성산소종(活性酸素種)의 소거능(消去能)의 차이에 기인되는 것으로 나타났다. 한편, 상기(上記) 추출물의 항산화력도 뛰어나 반응 4일까지 POV 가 20millieq./kg 이하(以下)로 나타났는데 이것으로 보아 활성산소소거능(活性酸素消去能) 뿐만 아니라 과산화물의 생성에 관여하는 각종 free radical의 소거능도 클 것으로 생각된다.

  • PDF

Antioxidative and Probiotic Properties of Lactobacillus gasseri NLRI-312 Isolated from Korean Infant Feces

  • Kim, H.S.;Jeong, S.G.;Ham, J.S.;Chae, H.S.;Lee, J.M.;Ahn, C.N.
    • Asian-Australasian Journal of Animal Sciences
    • /
    • 제19권9호
    • /
    • pp.1335-1341
    • /
    • 2006
  • We selected a Lactobacillus spp. from Korean healthy infant feces based upon their antioxidant activity. This strain was identified as Lactobacillus gasseri by 16S rDNA sequencing, and named Lactobacillus gasseri NLRI-312. In the present study, we investigate the protective effect of this strain on the $H_2O_2$ induced damage to cellular membrane lipid and DNA in Jurkat cells. To estimate the extent of cellular lipid peroxidation inhibition, MDA (malondialdehyde) was measured, and DNA damage was tested by the comet assay. We also examined probiotic properties including tolerance to acid and bile, antibiotic resistance. From the results obtained, the supplementation of Jurkat cells with NLRI-312 decreased in DNA damage, while no effect was shown on MDA decrease. In probiotic properties, this strain was resistance to both acid and bile, showed considerably higher survival when incubated in pH 2 or 1% bile salts (w/v). We concluded that the NLRI-312 could be used as potential probiotic bacteria, with the effect of reducing DNA damage induced by $H_2O_2$.

Effects of Abeliophyllum distichum Nakai Flower Extracts on Antioxidative Activities and Inhibition of DNA Damage

  • Ahn, Joungjwa;Park, Jae Ho
    • 한국자원식물학회지
    • /
    • 제26권3호
    • /
    • pp.355-361
    • /
    • 2013
  • The present study attempts to evaluate antioxidant activities of extracts from Abeliophyllum distichum. Nakai flower. The samples were collected in Jangyyeon-myeon, Goesan-gun, Korea and extracted with either hot-water or ethyl acetate (EtOAC). In DPPH, hydroxyl radical scavenging activity and $Fe^{2+}$ chelating activity of EtOAC extracts were 93.41%, 98.43%, and 7.38%, while those of hot-water extracts were 86.93%, 41.33% and 47.68% at 200 ${\mu}g/ml$, respectively. In ${\varphi}X$-174 RF I plasmid DNA cleavage assay, the protective effects of EtOAC and hot-water extracts against oxidative DNA damage were 82% and 17% at 200 ${\mu}g/ml$, respectively. Both extracts showed the protective effect of DNA migration by oxidative stress in intracellular DNA migration assay. Both extracts had no cytotoxity in NIH3T3 cells. Several polyphenolic compounds were identified such as 2-methoxy-benzoic acid, vanillic acid, phytol and pulegone by GC/MS. These results indicated that extracts of Abeliophyllum distichum Nakai flower showed antioxidant activities and protective activities against oxidative DNA damage and showed the possibility to be used as an effective natural antioxidants.

The Expression of DNA Polymerase-$\beta$ and DNA Damage in Jurkat Cells Exposed to Hydrogen Peroxide under Hyperbaric Pressure

  • Sul, Dong-Geun;Oh, Sang-Nam;Lee, Eun-Il
    • Molecular & Cellular Toxicology
    • /
    • 제4권1호
    • /
    • pp.66-71
    • /
    • 2008
  • Long term exposure of Jurkat cells to 2 ATA pressure resulted in the inhibition of cell growth. Under a 2 ATA pressure, the morphological changes in the cells were visualized by electron microscopy. The cells exhibited significant inhibitory responses after three passages. However, short-term exposure study was carried out, 2 ATA pressure may have beneficial effects. The Jurkat cells were exposed to $H_2O_2$ (25 and $50{\mu}M$) in order to induce DNA damage, and then incubated under at either normal pressure or 2 ATA for 1 or 2 hours in order to recover the DNA damage. The extent of DNA damage was determined via Comet assay. More recovery from DNA damage was observed at 2 ATA than at normal pressure. The activity of the DNA repair enzymes, DNA polymerase-$\beta$, was also evaluated at both normal pressure and 2 ATA. The activity of DNA polymerase-$\beta$ was observed to have increased significantly at the 2 ATA than at normal pressure. In conclusion, the effects of hyperbaric pressure from 1 ATA to 2 ATA on biochemical systems can be either beneficial or harmful. Long term exposure to hyperbaric pressure clearly inhibited cell proliferation and caused genotoxic effects, but short-term exposure to hyperbaric pressure proved to be beneficial in terms of bolstering the DNA repair system. The results of the present study have clinical therapeutic application, and might prove to be an useful tool in the study of genotoxicity in the future.

Sirt1 Promotes DNA Damage Repair and Cellular Survival

  • Song, Seung-Hyun;Lee, Mi-Ok;Lee, Ji-Seon;Oh, Je-Sok;Cho, Sung-Uk;Cha, Hyuk-Jin
    • Biomolecules & Therapeutics
    • /
    • 제19권3호
    • /
    • pp.282-287
    • /
    • 2011
  • Sirt1, a nicotinamide adenine dinucleotide ($NAD^+$)-dependent histone deacetylase, is known to deacetylate a number of proteins that are involved in various cellular pathways such as the stress response, apoptosis and cell growth. Modulation of the stress response by Sirtuin 1 (Sirt1) is achieved by the deacetylation of key proteins in a cellular pathway, and leads to a delay in the onset of cancer or aging. In particular, Sirt1 is known to play an important role in maintaining genomic stability, which may be strongly associated with a protective effect during tumorigenesis and during the onset of aging. In these studies, Sirt1 was generated in stably expressing cells and during the stimulation of DNA damage to examine whether it promotes survival. Sirt1 expressing cells facilitated the repair of DNA damage induced by either ionizing radiation (IR) or bleomycin (BLM) treatment. Fastened damaged DNA repair in Sirt1 expressing cells corresponded to prompt activation of Chk2 and ${\gamma}$-H2AX foci formation and promoted survival. Inhibition of Sirt1 enzymatic activity by a chemical inhibitor, nicotinamide (NIC), delayed DNA damage repair, indicating that promoted DNA damage repair by Sirt1 functions to induce survival when DNA damage occurs.

Protective effects of Camellia sinensis fruit and fruit peels against oxidative DNA damage

  • Ahn, Joung-Jwa;Jang, Tae-Won;Park, Jae-Ho
    • Journal of Applied Biological Chemistry
    • /
    • 제64권3호
    • /
    • pp.237-244
    • /
    • 2021
  • Camellia sinensis, Green tea, contains phenolic compounds that act to scavenge reactive oxygen species (ROS), such as catechin, epicatechin, etc. In contrast with the tea leaf, the bioactivity of its fruit and the fruit peels remains still unclear. This study focused on the effects of fruit and fruit peels of C. sinensis (FC and PC) against oxidative DNA damage in NIH/3T3 cells. The scavenging effects of FC and PC on ROS were assessed using 1,1-diphenyl-2-picryl hydrazyl or 2,2'-azino-bis(3-ethylbenzothiazoline-6-sulfonic acid radicals. The measurement of ROS in cellular levels was conducted by DCFDA reagent and the protein expression of γ-H2AX, H2AX, cleaved caspase-3, p53, and, p-p53 was analyzed by immunoblotting. The gene expressions of p53 and H2AX were assessed using polymerase chain reaction techniques. The major metabolites of FC and PC were quantitatively measured analyzed and the amounts of phenolic compounds and flavonoids in PC were greater than those in FC. Further, PC suppressed ROS production, which protects the oxidative stress-induced DNA damage through reducing H2AX, p53, and caspase-3 phosphorylation. These results refer that the protective effects of FC and PC are mediated by inhibition of p53 signaling pathways, probably via the bioactivity of phenolic compounds. Thus, FC and PC can serve as a potential antioxidant in DNA damage-associated diseases.

Antioxidative Effect of Proteolytic Hydrolysates from Ecklonia cava on Radical Scavenging Using ESR and $H_2O_2$-induced DNA Damage

  • Heo, Soo-Jin;Park, Pyo-Jam;Park, Eun-Ju;Cho, So-Mi K.;Kim, Se-Kwon;Jeon, You-Jin
    • Food Science and Biotechnology
    • /
    • 제14권5호
    • /
    • pp.614-620
    • /
    • 2005
  • The antioxidative effect of Ecklonia cava, a brown marine alga, was investigated on radical scavenging, including 1,1-diphenyl-2-picrylhydrazyl (DPPH), and hydroxyl and alkyl radicals, using an electron spin resonance (ESR) technique, and on the inhibition of $H_2O_2$-induced DNA damage using comet assay. E. cava was enzymatically hydrolyzed with five food industrial proteases (Alcalase, Flavourzyme, Kojizyme, Neutrase and Protamex) to prepare water-soluble extracts. All the proteolytic hydrolysates exhibited strong dose-dependent radical scavenging activities (above 80%) at a concentration of $2.5\;{\mu}g/mL$. Kojizyme extract (obtained by proteolytic hydrolysation of E. cava with Kojizyme) showed the highest hydroxyl radical scavenging activity of around 98%. In addition, the $H_2O_2$-induced DNA damage was determined using a comet assay, which was quantified by measuring the tail length. Reduction of DNA damage increased with increasing concentrations of Kojizyme extract from E. cava. These results indicated that E. cava has a potential as a valuable natural antioxidative source.

출아효모의 세포주기동안 DNA 상해에 의한 발현 유도에 미치는 DPB11 유전자의 영향 (Effect of DPBll Gene for the Transcriptional Induction by DNA Damage During Cell Cycle in Saccharomyces cerevisiae)

  • 선우양일;임선희;배호정;김중현;김은아;김승일;김수현;박정은;김재우
    • 미생물학회지
    • /
    • 제38권2호
    • /
    • pp.96-102
    • /
    • 2002
  • S기 checkpoint기작은 DNA복제 저해나 DNA상해 등에 반응하여, S기 세포주기 정지를 일으키거나 상해 회복에 관련된 유전자들의 전사가 유도됨으로서 진핵세포에서의 유전적인 안정성을 유지한다. 이러한 반응에 대한것ba11 변이주의 결손을 확인하기 위해서, nPB11 (DNA polymerase B possible subunit)유전자의 과다발현 효과에 대해 조사하고, HU (Hydroxyurea)와 MMS (Methyl methanesulfonate)에 대한 감수성 및 DNA상해 물질에 의한 RNR3 (Ribonulectide reductase) mRNA의 전사 유도를 조사하였다. RNR3 mRNA의 전사는 DNA합성 저해에 의해 발생한 스트레스나 화학물질에 의한 직접적 인 DNA상해 등에 의해 유도되어진다. 그 결과, dpb11-1변이주는 DNA상해 물질에 감수성을 나타내었고, RNR3 mRNA전사유도 또한 야생형 균주에 비해 약 40% 정도 감소를 나타내었다. 더욱이 dpb2-1 균주에서도 이와 동일한 결과를 얻었다. 그러므로 DPB2와 DPB11 유전자는 복제에 대한 sensor로서, 복제 정지 요인에 대한 세포주기 반응과 전사 조절에 모두 작용하는 것으로 사료된다.

DNA손상 및 돌연변이에 대한 명지버섯의 방어효능 (The Protective Effects of Ganoderma lucidum on the DNA Damage and Mutagenesis)

  • 이길수;공석경;최수영
    • Biomolecules & Therapeutics
    • /
    • 제11권2호
    • /
    • pp.139-144
    • /
    • 2003
  • Ganoderma lucidum is commonly known as medically potent mushroom, which has been widely used in China and other oriental countries for the treatment of various diseases, including cancer. In this report, we investigated the anti-oxidant and protective effect of Ganodema lucidum extract (GLE) against the DNA damage induced by free radical and U.V. In the assay of cell growth inhibition, the inhibitory cell growth rate induced by hydroxyl radical was dose-dependently decreased by GLE. This results support that GLE has a detoxifying activity against cytotoxicity of hydroxyl radical in E. coli cell. GLE also protected ColE1 plasmid DNA damage in the concentration of 200$\mu\textrm{g}$ per reaction on the DNA fragmentation assay. The nuclear tailing by hydrogen peroxide in single cell gel electrophoresis(SCGE) was decreased by GLE in the concentration of 50$\mu\textrm{g}$/ml. These data indicate that Ganoderma lucidum has an anti-oxidative activity to hydrogen peroxide. The mutation rate after irradiation of U.V. was reduced by 50$\mu\textrm{g}$/ml GLE and total number of Rif (Rifampicin) resistant mutants was decreased in a concentration dependent manner when added the GLE exogenously in a culture media. According to the results, it is likely that GLE has not only an anti-oxidative activity to hydroxyl radical but also an anti-mutagenic activity to U.V. mutagenesis.