• Title/Summary/Keyword: Alkylating agent

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HeLa Cells Containing a Truncated Form of DNA Polymerase Beta are More Sensitized to Alkylating Agents than to Agents Inducing Oxidative Stress

  • Khanra, Kalyani;Chakraborty, Anindita;Bhattacharyya, Nandan
    • Asian Pacific Journal of Cancer Prevention
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    • v.16 no.18
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    • pp.8177-8186
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    • 2016
  • The present study was aimed at determining the effects of alkylating and oxidative stress inducing agents on a newly identified variant of DNA polymerase beta ($pol{\beta}{\Delta}_{208-304}$) specific for ovarian cancer. $Pol{\beta}{\Delta}_{208-304}$ has a deletion of exons 11-13 which lie in the catalytic part of enzyme. We compared the effect of these chemicals on HeLa cells and HeLa cells stably transfected with this variant cloned into in pcDNAI/neo vector by MTT, colony forming and apoptosis assays. $Pol{\beta}{\Delta}_{208-304}$ cells exhibited greater sensitivity to an alkylating agent and less sensitivity towards $H_2O_2$ and UV when compared with HeLa cells alone. It has been shown that cell death in $Pol{\beta}{\Delta}_{208-304}$ transfected HeLa cells is mediated by the caspase 9 cascade. Exon 11 has nucleotidyl selection activity, while exons 12 and 13 have dNTP selection activity. Hence deletion of this part may affect polymerizing activity although single strand binding and double strand binding activity may remain same. The lack of this part may adversely affect catalytic activity of DNA polymerase beta so that the variant may act as a dominant negative mutant. This would represent clinical significance if translated into a clinical setting because resistance to radiation or chemotherapy during the relapse of the disease could be potentially overcome by this approach.

Investigation of Herbicide Safeners and their Mode of Safening Action;II. Effect of N-(4-chlorophenyl) maleimide, Plant Growth Regulators, and Alkylating Agents on Glutathione Content and Glutathione S-transferase Activity (제초제(除草劑) 약해경감물질(藥害輕減物質) 탐색(探索)과 작용기구(作用機構) 규명(糾明);Ⅱ. Glutathione 함량(含量)과 Glutathione S-transferase 활성(活性) 변화(變化)에 대한 N-(4-chlorophenyl) maleimide, 식물생장조절물질(植物生長調節物質) 및 Alkylating Agents 의 효과(效果))

  • Chun, Jae-Chul;Ma, Sang-Yong
    • Korean Journal of Environmental Agriculture
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    • v.14 no.3
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    • pp.329-337
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    • 1995
  • The effect of N-(4-chlorophenyl) maleimide(CPMI), plant growth regulators, and alkylating agents on gluathione(GSH) content and glutathione S-transferase(GST) activity was examined with 3-day-old etiolated sorghum(Sorghum bicolor [L.] Moench) seedlings. The GSH content and GST activity of untreated seedlings were higher in shoots than that in roots. Response of GST activity in coleoptile was significantly greater than in other tissues of sorghum seedling. In CPMI-treated seedlings, GSH content was not significantly different from that in untreated seedlings. CPM treatment resulted in 2.3-fold increase in GST activity measured with metolachlor as substrate in the coleoptile region. In contrast, change in GST activity measured with metolachlor as substrate in the coleoptile region. In contrast, change in GST activity measured with 1-chloro-2, 4-dinitrobenzene did not occur. The increase of GST activity was caused by induction of a GST isozyme, which is substrate-specific to metolachlor. Subsequently, two hypotheses related to metolachlor detoxification were evaluated on the basis of regulation of plant growth regulators and substrate induction of GST activity. In coleoptile, GST activity measured with metolachior was increased to 2.1-and 3.4-fold by both 2, 4-dichlorophenoxyacetic acid(2,4-D) and metolachlor treated at the germination stage of sorghum, respectively. Treatments of 2.4-D and metolachlor also induced isozymes exhibiting the activity toward metolachlor. One of the isozymes was co-eluted with that induced by CPMI. These results indicated that increase in GST activity by CPMI may be partially related to auxin regulation and substrate induction.

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Synthesis and Cytotoxicity of 3-Carbamoyloxymethyl-1-azaanthraquinones (3-카바모일옥시메틸-1-아자안트라퀴논 유도체들의 합성 및 세포독성)

  • Lee, Hee-Soon;Choi, Jae-Young;Hong, Seoung-Soo;Cho, Jung-Sook;Kim, Young-Ho
    • YAKHAK HOEJI
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    • v.41 no.6
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    • pp.718-723
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    • 1997
  • In the course of developing novel antitumor intercalating agents, we synthesized 3- carbamoyloxymethyl-azaanthraquinones 6-12, incorporating the latent alkylating functionality. These compounds were designed to explore the effect of heteroatom incorporation into anthraquinone chromophore and the effect of the incorporation of the latent alkylating functionality. The derivatives were prepared by hetero Diels-Alder reaction as a key step followed by functionality of allylic methyl to the desired substituents. Growth inhibitory studies of the azaanthraquinones were conducted in vitro against human cancer cell lines (SNU-354: liver and MCF7: breast) and human epidermoid carcinoma cells that are sensitive (KB-3-1) and multidrug-resistant (KB-V-1). The derivatives were 10 to 100-fold less potent than doxorubicin against sensitive cell lines. However, they were marginally cross-resistant with doxorubicin against KB-V-1.

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Galangin의 유전독성 억제효과에 관한 연구

  • 허문영;윤여표
    • Proceedings of the Korean Society of Applied Pharmacology
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    • 1994.04a
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    • pp.325-325
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    • 1994
  • 본 연구에서는 먼저 14종의 flavonoid화합물을 대상으로 발암물질로서 잘 알려져있는 benzo(a)pyrene[B(a)P]에 대한 소핵생성억제효과를 관찰하였다. 소핵시험을 이용한 유전독성억제실험에서 비적적 큰 활성을 보이는 flavonoid는 2,3 이중결합과 3,5,7-trihydroxyl기를 갖는 polyhydroxy flavonol화합물들이었다. 이중에서 galangin은 활성이 비교적 컸으며, 이같은 유전독성억제효과는 galangin투여시 B(a)P의 대사활성화가 감소되고 활성본태산물들의 DNA binding을 저해함으로서 나타났다. 한편, galangin은 대사활성화가 필요없는 1차 발암물질인 N-methyl-N'-nitro-N-nitrosoguanidine(MNNG)에 의한 소핵생성도 감소시켰다. 이러한 galangin의 alkylating agent에 대한 유전독성억제효과는 calf thymus DNA를 이용한 실험에서 DNA의 메칠화를 저해하는 기전으로 나타나는 것으로 판단되었다. galangin은 mitouycin과 같은 DNA cross-linking agent에 의한 소핵생성에도 억제효과를 나타내었다. 특히 동시투여(simultaneous treatment)나 사후투여(post-treatment)시보다 사전투여(pre-treatment)시에 소핵생성억제효과가 컸으며 사전연속투여(multiple Pre-treatment)시에는 낮은 용량에서도 효과가 컸다. 이러한 저용량의 사전연용투여에 의한 유전독성억제효과들은 B(a)P나 MNNG에 대해서도 잘 나타났다.

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Antigenotoxicity of Ginseng Petroleum Ether Extract and its Action Mechanism (인삼 지용성성분인 유전독성억제효과와 작용기전)

  • 허문영
    • Journal of Food Hygiene and Safety
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    • v.13 no.3
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    • pp.243-251
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    • 1998
  • Panax ginseng C.A. Meyer has been extensively used in the traditional oriental medicine as a restorative, tonic and prophylatic agent. Petroleum ether extract of panax ginseng C.A. Meyer (GPE) and its several fractions (PI-P5) were tested for the evaluation of antigenotoxicity against N-methyl-N-nitrosourea (MNU) and benzo(a)pyrene [B(a)P]-induced micronucleated reticulocytes in mouse peripheral blood. GPE and P2 showed more significant anticlastogenicity than other fractions did. To elucidate the anticlastogenic action mechanism of GPE and P2 against B(a)P, the alteration of B(a)P metabolism was studied. GPE and P2 inhibited B(a)P metabolism in the presence of 8-9 mix and decreased B(a)P-DNA binding in calf thymus DNA with 8-9 mix. They also decreased [$^3H$] MNU induced DNA binding and methylation to 7-methyl guanine and $O^{6}-methyl$ guanine adducts in calf thymus DNA by RPLC analysis. These results suggest that the anticlastogenicity of GPE and P2 on the B(a)P or MNU-induced clastogenicity is due to decrease of DNA binding with B(a)P or MNU, the inhibition of metabolism with B(a)P and the inhibition of methylation in DNA. Therefore, GPE and P2 may be useful chemopreventive agents of alkylating agent like MNU and secondary carcinogen like B(a)P.

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Antigenotoxicity of Galangin and its Action Mechanism (Galangin의 유전독성 억제효과와 작용기전)

  • 허문영;류재천
    • Environmental Mutagens and Carcinogens
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    • v.18 no.2
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    • pp.77-82
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    • 1998
  • In order to compare the suppressive effect of galangin on the genotoxicity by N-methyl-N-nitrosourea (MNU) or benzo[a]pyrene B(a)P, in vivo micronycleus test using mouse peripheral blood and in vitro sister chromatid exchange(SCE) test using mouse spleen lymphocytes were performed. MNU or B(a)P-induced micronucleated reticulocytes in vivo was decreased by the simultaneous treatment of galangin. MNU or B(a)P-induced SCEs in vitro was also decreased by the simultaneous treatment of galangin. On the other hand, the determinations of [$^3$H]MNU-induced total DNA binding and methylated DNA were performed to find out the mechanism of action. [$^3$H]MNU-induced total DNA binding was inhibited by the treatment of galangin in calf thymus DNA. HPLC analysis of DNA hydrolysates showed that galangin caused a decrease of 7-methyl guanine and $O^{6}$-methyl guanine in calf thymus DNA. To elucidate the action mechanism of galangin against B(a)P, alteration of B(a)P metabolism was studied. Galangin inhibited B(a)P metabolism in the presence of S-9 mix and decreased B(a)P-DNA binding in calf thymus DNA with S-9 mix.

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Chemoselective Alkylation of Aromatics with Benzyl Alcohol over Mesoporous ZSM-5

  • Jin, Hailian;Ansari, Mohd Bismillah;Jeong, Eun-Young;Park, Sang-Eon
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.08a
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    • pp.200-200
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    • 2011
  • Hierarchical mesoporous ZSM-5 with enhanced mesoporosity was synthesized by microwave through the rapid assembly via ionic interaction between sulfonic acid functionalized ZSM-5 nano particles and cationic surfactant. The catalytic performance of enhanced accessibility due to mesoporosity and acidity were investigated in the alkylation of mesitylene with benzyl alcohol as alkylating agent. The effect of mole ratio of aromatic with benzyl alcohol, reaction time and alkylation agent were also studied. The enhanced mesoporosity and acidity of sulfonic acid functionalized mesoporous ZSM-5 induced activity enhancement compared with non-functionalized mesoporous ZSM-5, sulfonic functionalized mesoporous ZSM-5 synthesized by hydrothermal method and conventional microporous ZSM-5. The sulfonic acid functionalized mesoporous ZSM-5 showed much higher chemoselectivity of benzylated mesitylene than others, whereas the others mainly show dibenzyl ether as product. This significant difference in catalytic selectivity was resulted from the existence of mesopores, which definitely allowed the benzylation in mesopores.

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Carbon monoxide activates large-conductance calcium-activated potassium channels of human cardiac fibroblasts through various mechanisms

  • Bae, Hyemi;Kim, Taeho;Lim, Inja
    • The Korean Journal of Physiology and Pharmacology
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    • v.25 no.3
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    • pp.227-237
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    • 2021
  • Carbon monoxide (CO) is a cardioprotectant and potential cardiovascular therapeutic agent. Human cardiac fibroblasts (HCFs) are important determinants of myocardial structure and function. Large-conductance Ca2+-activated K+ (BK) channel is a potential therapeutic target for cardiovascular disease. We investigated whether CO modulates BK channels and the signaling pathways in HCFs using whole-cell mode patch-clamp recordings. CO-releasing molecules (CORMs; CORM-2 and CORM-3) significantly increased the amplitudes of BK currents (IBK). The CO-induced stimulating effects on IBK were blocked by pre-treatment with specific nitric oxide synthase (NOS) blockers (L-NG-monomethyl arginine citrate and L-NG-nitroarginine methyl ester). 8-bromo-cyclic GMP increased IBK. KT5823 (inhibits PKG) or ODQ (inhibits soluble guanylate cyclase) blocked the CO-stimulating effect on IBK. Moreover, 8-bromo-cyclic AMP also increased IBK, and pre-treatment with KT5720 (inhibits PKA) or SQ22536 (inhibits adenylate cyclase) blocked the CO effect. Pre-treatment with N-ethylmaleimide (a thiol-alkylating reagent) also blocked the CO effect on IBK, and DL-dithiothreitol (a reducing agent) reversed the CO effect. These data suggest that CO activates IBK through NO via the NOS and through the PKG, PKA, and S-nitrosylation pathways.

Photochemical Synthesis of Aspartylphenylalanyl Methyl Ester (광 알킬화 반응에 의한 Aspartylphenylalanyl Methyl Ester의 합성)

  • Sang Chul Shim;Kyu Ho Chae
    • Journal of the Korean Chemical Society
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    • v.19 no.5
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    • pp.367-374
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    • 1975
  • Glycine residue in N-X-glycylphenylalanine methyl ester(X = trifluoroacetyl or acetyl) was converted into aspartic acid derivative by a photoalkylation reaction. The reaction was induced with 350 nm lamp using a combination of diacetyl/di-t-butyl peroxide (DBP) as the photoinitiator, and acetic anhydride as the alkylating agent. In the thermal reaction with DBP and acetic anhydride, the same alkylation reaction of the dipeptide was observed. From this thermal alkylation reaction the photoalkylation reaction is also thought to undergo via free radical mechanism.

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Cloning and Nucleotide Sequence of the recA Gene from Shigella sonnei KNIH104S Isolated in Korea

  • Park, Yong-Chjun;Shin, Hee-Jung;Kim, Young-Chang
    • BMB Reports
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    • v.32 no.5
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    • pp.436-439
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    • 1999
  • Shigella sonnei is an important cause of human enteric infections. S. sonnei KNIH104S was previously reported to be isolated from Korean shigellosis patients. We cloned a 2.8-kb KpnI fragment containing the recA gene encoding a recombinase from the chromosomal DNA of S. sonnei KNIH104S. This recombinant plasmid was named pRAK28. E. coli HB101, a recA mutant, cannot grow on Luria-Bertani medium in the presence of the alkylating agent methylmethane sulfonate, however, E. coli HB101 harboring pRAK28 was found to grow on this medium. As far as we know, we are the first to sequence the recA gene from S. sonnei. This gene is composed of 1062 base pairs with an ATG initiation codon and a TAA termination codon. Nucleotide sequence comparison of the S. sonnei recA gene exhibited 99.7% and 99.5% identity with those of S. flexneri and E. coli, respectively.

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