• 제목/요약/키워드: Transgenic Mutagenesis

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유전자수준에서 돌연변이 유발기전을 밝히는 Transgenic Mutagenesis Assay (Transgenic Mutagenesis Assay to Elucidaate the Mechanism of Mutation at Gene Level)

  • 류재천;윤지윤;조경혜;장일무
    • 한국환경성돌연변이발암원학회지
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    • 제18권1호
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    • pp.15-21
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    • 1998
  • Transgenic animal and cell line models which are recently developed and used in toxicology fields combined with molecular biological technique, are powerful tools to study the mechanism of mutation in vivo and in vitro, respectively. Transgenic models, which have exogenous DNA incorporated into their genome, carry recoverable shuttle vector containing reporter genes to assess endogenous effects or alteration in specific genes related to disease processes. The lac I and lac Z gnee most widely used as a mutational target in transgenic systems. The assay is performed by treatment with putative mutagenic agents, isolation of genomic DNA from cells or tissues, exposure the isolated DNA to in vitro packaging extract, plating and sequencing. The results from these processes provide not only mutant frequency as quantitative evaluation but also mutational spectrum as qualitative evaluation of various agents. Therefore we introduce and review the principle, detailed procedure and application of transgenic mutagenesis assay system in toxicology fields especially in mutagenesis and carcinogenesis.

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A Collaborative Validation Study for the Gpt Delta Mouse Using N-propyl-N-nitrosourea, Diethylnitrosamine, Mitomycin C and Chlorambucil: A Summary Report of the Third Collaborative Study of the Transgenic Mouse Mutation Assay by JEMS/MMS

  • Yajima, Nobuhiro;Hyogo, Atsushi;Tamura, Hironobu;Nakajima, Madoka;Nohmi, Takehiko
    • 한국독성학회:학술대회논문집
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    • 한국독성학회 2003년도 추계학술대회
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    • pp.109-110
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    • 2003
  • To validate a novel mouse model, gpt delta, for in vivo mutagenesis, the Mammalian Mutagenesis Society (MMS), a subgroup of the Environmental Mutagen Society of Japan (JEMS) (JEMS/MMS), performed a collaborative study as the third trial for transgenic animal assay. In this mouse model, point mutations and deletions re separately identified by gpt (6-thioguanine-resistant) and Spi- (sensitive to P2 interference) selections, respectively.(omitted)

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Functional Genomics Approach Using Mice

  • Sung, Young-Hoon;Song, Jae-Whan;Lee, Han-Woong
    • BMB Reports
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    • 제37권1호
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    • pp.122-132
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    • 2004
  • The rapid development and characterization of the mouse genome sequence, coupled with comparative sequence analysis of human, has been paralleled by a reinforced enthusiasm for mouse functional genomics. The way to uncover the in vivo function of genes is to analyze the phenotypes of the mutant animals. From this standpoint, the mouse is a suitable and valuable model organism in the studies of functional genomics. Therefore, there have been enormous efforts to enrich the list of the mutant mice. Such a trend emphasizes the random mutagenesis, including ENU mutagenesis and gene-trap mutagenesis, to obtain a large stock of mutant mice. However, since various mutant alleles are needed to precisely characterize the role of a gene in vivo, mutations should be designed. The simplicity and utility of transgenic technology can satisfy this demand. The combination of RNA interference with transgenic technology will provide more opportunities for researchers. Nevertheless, gene targeting can solely define the in vivo function of a gene without a doubt. Thus, transgenesis and gene targeting will be the major strategies in the field of functional genomics.

Effect of IRES Controlled Reporter Gene on Screening and Production of Recombinant Human EPO Proteins from Cultured CHO Cells

  • Lee Hyun Gi;Park Jin-Ki;Kim Sung-Woo;Ko Eun-Mi;Kim Byoung-Ju;Jo Su-Jin;Byun Sung-June;Yang Boh-Suk;Chang Won-Kyong;Lee Hoon-Taek;Lee Poong-Yeon
    • Reproductive and Developmental Biology
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    • 제30권2호
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    • pp.81-85
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    • 2006
  • This study was conducted to examine the effect of IRES controlled reporter gene on screening and production of recombinant human erythropoietin (EPO) proteins from cultured CHO cells. The cDNA was cloned for EPO from human liver cDNA Using site-directed mutagenesis, we generated recombinant human EPO (rhEPO) with two additional N-glycosylations (Novel erythropoiesis-stimulating protein: NESP). Wild type hEPO and NESP were cloned into expression vectors with GFP reporter gene under regulatory control of CMV promoter and IRES so that the vectors could express both rhEPO and GFP. The expression vectors were transfected to cultured CHO-K1 cells. Under microscopy, expression of GFP was visible. Using supernatant of the culture, ELISA assay, immunocytochemistry and in vitro assay using EPO dependant cell line were performed to estimate biological activity to compare the production characteristics (secretion levels, etc.) between rhEPO and NESP. The activity of NESP protein, obtained by mutagenesis, was described and compared with its rhEPO counterpart produced under same conditions. Although NESP had less secretion level in CHO cell line, the biological activity of NESP was greater than that of rhEPO. These results are consistent with previous researches. We also demonstrated that rhEPO and GFP proteins expressed simultaneously from transfected CHO cell line. Therefore we conclude that use of GFP reporter gene under IRES control could be used to screen and produce rhEPO in cultured CHO cells.

Analysis of Porcine $\beta$-casein Gene Promoter by Site-directed Mutagenesis

  • Chung, Hee-Kyoung;Seong, Hwan-Hoo;Im, Seok-Ki;Lee, Hyun-Gi;Kim, Soon-Jeung;Lee, Poongyeong;Lee, Yun-Keun;Chang, Won-Kyong;Moosik Kwon
    • 한국수정란이식학회:학술대회논문집
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    • 한국수정란이식학회 2002년도 국제심포지엄
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    • pp.71-71
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    • 2002
  • Promoters for milk proteins have been used far producing transgenic animals due to their temporal and spatial expression patterns. ${\beta}$-casein, a calcium-sensitive casein, is a major milk protein that corresponds ca. 30 per cent of total milk protein. Expression of ${\beta}$-casein is controlled by lactogenic hormones such as prolactin (PRL), composite response elements (CoREs) and transcription factors. CoREs are clusters of transcription factor binding sites containing both positive and negative regulatory elements. ${\beta}$-casein gene promoter contains various regions (CoREs) for gene transcription. We analyzed the promoter region by mutagenesis using exonuclease III and linker-scanning. Transcription control elements usually are positioned in 5'-flanking region of the gene. However, in some cases, these elements are located in other regions such as intron 1. The nucleotide sequences of ${\beta}$-casein promote. region has been reported (E12614). However, the properties of the promoter is not yet clear. In this study, we plan to investigate the properties of cis-regulating elements of porcine ${\beta}$-casein by mutation analysis and expression analysis using dual-luciferase repoter assay system.

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The Study of Mutation Spectrum in Iac / Gene of Transgenic Big Blue$\textregistered$ Cell Line Following Short-Term Exposure to 4-Nitroquinoline N-oxide

  • Youn, Ji-Youn;Kim, Kyung-Ran;Cho, Kyung-Hea;Ryu, Jae-Chun
    • 한국환경독성학회:학술대회논문집
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    • 한국환경독성학회 1996년도 제19회정기학술대회(The 19th Symposium of the Korean Society of Environmental Toxicology)
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    • pp.64-64
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    • 1996
  • Transgenic animal and cell line models which are recently developed in toxicology field combined with molecular biological technique, are powerful tools for studying of mutation in vivo and in vitro, respectively. The Big Blue mutagenesis assay system is one of the most widely used transgenic systems. Especially, for the study of direct acting mutagens, Big Blue cell line is very useful and powerful to evaluate mutagenicity because the mutation frequency and mutationspectrlun showed no distinct differences between cell line and animal. The Big Blue cell lines carry stably integrated copies of lambda shuttle vector containing lac I gene as a mutational target. These lambda shuttle vectors are useful for various mutagenesis related studies in eukaryotic system due to their ability to be exposed mutagen and then transfer a suitable target DNA sequence to it convenient organism for analysis. We tried to assess the mutagenic effect of 4-NQO with Big Blue cell line. After the treatment of 4-NQO, genomic DNA was isolated and lambda shuttle vector was packaged by in Vitro packaging and then these were plated on bacterial host in the presence of X-gal to screen mutation in the lac I. We determined MF as a ratio of blue plaques versus colorless plaques and now undergoing the mutation spectrum of 4-NQO in lac J gene sequence.

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Toxic Mechanism of Atrazine in Transgenic Mutagenesis System using Big $Blue^{\textregistered}}$Rat2 lacI Transgenic Fibrohlasts And Hormonal Disturbances in vitro

  • Kim, Youn-Jung;Lee, Kilchul;Ryu, Jae-Chun
    • 한국환경독성학회:학술대회논문집
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    • 한국환경독성학회 2001년도 춘계심포지움 및 학술발표회
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    • pp.128-128
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    • 2001
  • Atrazine, one of herbicide widely used in agriculture, is classified as a possible human carcinogen (2B group) that may cause breast and ovarian cancers by IARC, and is known as an endocrine disrupter. Atrazine has been subjected to broad ranges of genotoxicity tests wi th predominantly negative results, but reported conflicting results across two or more independent tests as well. (omitted)

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GFP as a Genetic Marker in Transgenic Fish

  • Lee, Jeong-Ho;Kim, Kyung-Kil;Kim, Young-Ok
    • 한국어업기술학회:학술대회논문집
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    • 한국어업기술학회 2002년도 추계 수산관련학회 공동학술대회발표요지집
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    • pp.183-184
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    • 2002
  • The use of transgenic fish has so far been chiefly limited by the lack of predictable, strong, tissue specific, and position-independent expression of transgenes. For genetic analysis, expression of a marker transgene, easily screenable in the living fish, could facilitate studies of gene targeting, insertional mutagenesis, lineage, and mutational analysis. (omitted)

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TOXIC MECHANISM OF ATRAZINE IN TRANSGENIC MUTAGENESIS SYSTEM USING BIG BLUE$\circledR$ RAT2 lacI TRANSGENIC FIBROBLASTS AND HORMONAL DISTURBANCES IN VITRO

  • Kim, Youn-Jung;Ryu, Jae-Chun
    • 한국독성학회:학술대회논문집
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    • 한국독성학회 2001년도 International Symposium on Dietary and Medicinal Antimutgens and Anticarcinogens
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    • pp.183-183
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    • 2001
  • Atrazine, one of herbicide widely used in agriculture, is classified as a possible human carcinogen (2B group) that may cause breast and ovarian cancers by IARC, and is known as an endocrine disruptor. Atrazine has been subjected to broad ranges of genotoxicity tests with predominantly negative results, but reported conflicting results across two or more independent tests as well. This fact indicates that a more comprehensive genotoxicity assessment needs for atrazine.(omitted)

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