• 제목/요약/키워드: metallothionein expression

검색결과 84건 처리시간 0.021초

인간 폐포세포 유래 A549세포주에서의 Cadmium 처리에 의한 메탈로치오닌 유전자 발현 (Expression of Metallothionein mRNA in Cadmium Treated A549 Cell Line Derived from Human Lung Epithelial Cell)

  • 박광식;구자민
    • Environmental Analysis Health and Toxicology
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    • 제18권1호
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    • pp.15-19
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    • 2003
  • Metallothionein gene expression activity of cadmium was investigated in a human lung epithelial cell line. Cells, grown to near confluence, were exposed to 0∼10 ${\mu}$M Cd metal for 6 hours. Cadmium did not cause morphological alteration in lung epithelial cells that are characteristic of cell damages such as cell shrinkage, detachment of the cell from its neighbors, cytoplasmic and chromatic condensation. However, metallothionein genes of MT-1 and MT-2 were rapidly induced in the treated cell measured by RT-PCR. Regarding the induction pattern of motallothionein mRNA, MT-1 mRNA was induced in a dependent manner. MT-2 mRNA induction, which was measured using oligo primers based on cDNA of human reticulocytes, seemed to be slightly increased in low doses but decreased at high concentration used in the experiment.

디젤분진의 수용성 추출물에 의한 메탈로치오닌 유전자 발현 (Expression of Metallothionein mRNA in Diesel Exhaust Particles Treated A549 Cell)

  • 박광식;문창규
    • Environmental Analysis Health and Toxicology
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    • 제19권1호
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    • pp.59-64
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    • 2004
  • Metallothionein gene expression of diesel exhaust particles (DEP) was investigated in human lung epithelial cell line. DEP was collected from diesel motor bus and soluble fraction in water was obtained. Cells, grown to near confluence, were exposed to 5-50 ppm DEP for 6 hours. Regarding the metallothionein gene expressions, MT-1 and MT-2 were induced in the DEP-treated cell by using RT-PCR and real-time PCR. However, MT-3 which is known to be brain specific, and another isoform MT-4 were not expressed in cadmium-treated groups as well as control group. Heavy metal of DEP was also analyzed and Zn was found as the major component of heavy metals in DEP used in this study.

Metallothionein Induction in Liver Regeneration Stimulated by Partial Hepatectomy

  • Kim, Wan-Jong;Shin, Kil-Sang
    • Animal cells and systems
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    • 제5권3호
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    • pp.263-266
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    • 2001
  • Metallothionein (MT) is induced in the regenerating rat liver. We have investigated expression of MT gene by RT PCR as well as specific localization of MT by immunocytochemistry in regenerating rat liver after partial hepatectomy (PH). MT mRNA level started to increase from 1 h and reached the peak at 8 h after PH. The level decreased gradually by 24 h, and became similar to that of control group. In the immunocytochemical study, in all groups treated with primary antibody, immunogold particles indicating the presence of MT were evenly distributed throughout both cytoplasm and nucleus of the rat hepatocytes. Within the nucleus, the gold particles appeared to be intensely localized in the areas of euchromatin and nucleolus. Within the cytoplasm, gold particles did not seem to adhere to mitochondria or Iysosomes, but were freely distributed. However, rough endoplasmic reticulum was the obvious compartment on which the gold particles were localized. Time course of MT immunoreactivity revealed that distribution of gold particles in hepatocytes increased gradually by 24 h, and decreased at 48 h after PH. Briefly, PH resulted in the sharpest increase in the expression of MT mRNA at 8 h and in the immunoreactivity of MT at 24 h, respectively. It is suggested that the increase of MT mRNA expression, the intensity of immunoreactivity and the specific localization of MT may be associated with the compensatory cell proliferation followed by PH.

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아연결핍이 흰쥐에서 metallothionein의 발현과 카드뮴의 흡수 및 분포에 미치는 영향 (The Effects of Dietary Zinc Deficiency on the Expression of Metallothionein, Absorption and Distribution of Cadmium in Rats)

  • 전용욱;최병선;박정덕
    • Environmental Analysis Health and Toxicology
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    • 제19권2호
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    • pp.191-200
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    • 2004
  • Zinc (Zn) is an essential element in biological process, however inadequate Zn status in general population have been recognized. To update the knowledge for Zn-cadmium (Cd) interaction, we studied the intestinal uptake and transport, and the expression of metal transporter proteins (divalent metal transporter 1, DMT1 ; metal transporter protein 1, MTP1 ; zinc transporter 1, ZnTl ; metallothionein 1 , MT1) in duodenum after Cd exposure using Zn deficient animal model. Rats were led Zn deficient (ZnD, 0.5-1.0 mgZn/kg) or Zn supplemented (ZnS, 50mg Zn/kg) diet for 4 weeks, and followed single administration of $^{109}$ CdCl$_2$orally. The body Zn flatus and tissue Cd concentration were determined at 24 hrs after Cd administration. Total body burden of Cd and Cd absorption index (AI, %) were estimated based on the tissue Cd analyzed. DMT1, MTP1, ZnTl and MT1 mRNA were analyzed by using RT-PCR method. Feeding of Zn deficient diet for 4 weeks produced a reduced body weight gain and a depletion of body Zn. Tissue Cd concentration, body burden of Cd and Cd absorption index were higher in the ZnD diet fed rats than the ZnS diet red rats. Especially, Cd concentration in the small intestine (duodenum, jejunum and ileum) and the colon of FeD diet fed rats were higher markedly than in the FeS diet group. The expression levels of DMT1, MTP1 and ZnT1 mRNA in FeD diet fed rats were similar to the FeS diet. The level of MT1 mRNA expression was significantly lower in the FeD than the FeS diet fed rats. Taken together, theses results indicate that Zn deficiency in diet induce an increased intestinal absorption and tissue retention of Cd, and down -regulate the MT1 expression in the intestine which might be play a part of role in Cd absorption and transport in mammalian. These findings suggest that deficiency of essential metal could be enhanced the toxicity of toxic, non-esstial metals through the metal-metal interaction.

돌돔(Oplegnathus fasciatus)으로부터 Metallothionein 유전자 Isoform들의 분리 및 발현 특징 분석 (Isolation and mRNA Expression of Metallothionein Isoforms from Rockbream Oplegnathus fasciatus)

  • 이상윤;남윤권
    • 한국수산과학회지
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    • 제44권2호
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    • pp.126-140
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    • 2011
  • Genetic determinants of two metallothionein isoforms (MT-A and MT-B) were isolated and characterized from the perciform species, rockbream (Oplegnathus fasciatus). Rockbream MT-A and MT-B shared a high degree of homology at amino acid levels with representative orthologs from other perciform species, especially with respect to the conserved cysteine residues. At the genomic level, both MT-A and MT-B genes represent a tripartite structure typical of vertebrate MT genes. However, rockbream MT-B showed unusually large introns (1.2 kb and 0.8 kb for intron I and II, respectively), a phenomenon that has rarely been seen in other vertebrate MT genes. MT-A and MT-B transcripts were ubiquitously detected in a wide array of tissues, wherein brain and eye showed the highest basal expression levels, and the fin exhibited the lowest expression of both isoforms. The basal expression of MT-A in most tissues was significantly higher (ranging from 4- to 10-fold) than that of MT-B. Upon heavy metal exposures to Cd, Cu or Zn at 25 ppb for 48 h, MT-A and MT-B transcripts in the liver were significantly activated by Cd and moderately by Zn. On the other hand, exposure to Cu did not result in alterations of MT-A, nor in the significant suppression of MT-B. Following bacterial challenges with Escherichia coli, Edwardsiella tarda or Streptococcus iniae, MT isoforms in the liver, kidney and spleen were highly modulated and exhibited a pattern that was dependent on the bacterial species, tissues and isoforms. These results suggest that the two MT isoforms could be taken into account as potential indicators of metal toxicity and immune perturbations of this aquaculture-relevant species.

미호종개 metallothionein 유전자의 구조 및 중금속 노출과 고온 자극에 대한 MT mRNA의 발현 특징 분석 (Gene Structure and Altered mRNA Expression of Metallothionein in Response to Metal Exposure and Thermal Stress in Miho Spine Loach Cobitis choii (Cobitidae; Cypriniformes))

  • 이상윤;남윤권
    • 한국어류학회지
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    • 제23권1호
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    • pp.61-69
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    • 2011
  • 멸종위기 어류 미호종개(Cobitis choii)로부터 중금속해독 단백질(metallothionein) 유전자를 분리, 클로닝하고 중금속 및 고온 스트레스에 대한 전사 발현 특정을 분석하였다. 미호종개 metallothionein는 gDNA, mRNA 및 아미노산 서열 모두에서 경골 어류 MT들의 구조적 특징을 잘 보전하고 있었으며, 생물정보분석을 통해 미호종개 MT 유전자 5'-upstream 영역은 중금속 조절, 면역 반응 및 온도 반응에 관여하는 다양한 전사 조절인자들의 부착 위치들을 포함하는 것으로 관찰되었다. 카드뮴(Cd), 구리(Cu), 니켈(Ni), 망간(Mn) 및 아연(Zn)을 이용한 침지 노출 실험(0.5 및 $1.0\;{\mu}M$; 24시간)에서 미호종개 MT mRNA 발현은 구리 및 카드뮴 처리군에서 가장 많이 유도되었고($1.0\;{\mu}M$ Cu 처리군에서 최대 10배), 망간 처리군에서는 비교적 적은 양의 MT 발현이 유도된 반면(2배), 아연 및 니켈 노출 군에서는 유의적인 MT 발현의 증감이 관찰되지 않았다. 또한 미호종개 MT 전사 발현은 고온 자극 ($25^{\circ}C$로부터 $31^{\circ}C$까지 증가)에도 민감하게 반응하는 것으로 나타나, $31^{\circ}C$ 도달시점에서 $25^{\circ}C$ 초기 MT mRNA 발현 수준보다 9배 높은 mRNA 발현이 관찰되었다. 본 연구 결과는 MT 기반의 유전자 발현 분석을 이용함으로써, 향후 멸종위기 어류 미호종개의 스트레스 반응 연구에 유용한 기초 자료를 제공할 수 있다고 기대된다.

챠넬메기의 metallothionein cDNA 유전자의 cloning 및 그 특성에 관한 연구 (Molecular cloning and characterization of metallothionein cDNA gene in channel catfish)

  • 이인정;송영환
    • 한국어병학회지
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    • 제5권2호
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    • pp.143-152
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    • 1992
  • Metallothionein은 세포내의 중금속의 농도을 조절하는 주요한 단백질로서 bacteria에서 척추동물에 이르기까지 모든 생명체에서 나타나는 공통된 단백질이다. 비록 metallothionein의 정확한 기능은 알려져 있지 않으나 독성을 나타내는 중금속에 대하여 세포내 방어기작에 관여할 뿐만 아니라 여러다른 유전자의 총괄적 조절기작 및 matalloprotein의 발현에 관여할 것으로 보고있다. 본 연구에서는 Channel Catfish의 metallothionein cDNA 유전자를 poly(A)를 갖는 mRNA로 부터 Reverse Transcriptase-Polymerase Chain Reaction(RT-PCR)에 의하여 cloning하였다. 증폭된 PCR products는 pBluescript SK+의 EcoRV site 및 pUC19의 Smal site에 dT tailing을 하여 cloning하였으며, PCR products는 multicloning site에 있는 EcoRI 및 HindIII 로 절단하여 확인하거나 신속한 PCR screening에 의하여 확인하였다. 여러 PCR clone 중 하나인 pMT150에 대한 DNA 염기서열을 조사한 결과 다른 어류의 metallothionein cDNA 유전자와 높은 유사성을 보였다.

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테스토스테론생성 레이디히세포(Leydig)에서의 메탈로치오닌 유전자 발현특성연구 (Expression of Metallothionein mRNA in Cadmium Treated Leydig Cells)

  • 박광식
    • Environmental Analysis Health and Toxicology
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    • 제19권3호
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    • pp.261-269
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    • 2004
  • Although the biological functions of metallothioneins (MTs) are still being investigated, they have been suggested to be involved in detoxification of heavy metals, scavenging of free radicals, and protection against alkylating agents. MTs have been reported to be induced in most of animal tissues by heavy metals such as zinc, copper, mercury and cadmium, and the proteins have binding affinities to the metals. However, the presence or induction of MTs was reported not to be clear in leydig cells, which produce testosterone for the maturation of spermatozoa in male testes. In this study, we investigated the inducibility of metallothionein isomers by cadmium in cultured mouse leydig cells. Total RNA was extracted from the near confluent grown leydig cells and RT-PCR was Performed using the Primers which were synthesized on the basis of MT-1, 2, 3 and 4 cDNA from GenBank database. As results, MT-1 and MT-2 mRNA were found to be expressed in cadmium non-treated control cells and MT 1 mRNA expression was dose-dependent when leydig cells were treated with cadmium chloride. But MT-3 which is known to be brain specific and MT-4 which is another isoform of metallothionein, were not expressed. Other genes induced or depressed in cadmium treated leydig cells were also identified by microarray techniques.

Identification of Differentially Expressed Genes in Nickel[li]-Treated Normal Rat Kidney Cells

  • Koh, Jae-Ki;Lee, Sang-Han
    • 한국환경성돌연변이발암원학회지
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    • 제24권2호
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    • pp.85-90
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    • 2004
  • Nickel(II) compounds are carcinogenic metals which induce genotoxicity and oxidative stress through the generation of reactive oxygen species. In search of new molecular pathways toward understanding the molecular mechanism of nickel(II)-induced carcinogensis, we performed mRNA differential display analysis using total RNA extracted from nickel(II) acetate-treated normal rat kidney cells (NRK-52E). Cells were exposed for 3 days to 160 and 240 uM nickel(II) concentrations. cDNAs corresponding to mRNAs for which expression levels were altered by nickel(II) were isolated, sequenced, and followed by a GenBank Blast homology search. Specificity of differential expression of cDNAs was determined by RT-PCR and Western blot analysis. Two of them (SH3BGRL3 and FHIT) were down-regulated and one (metallothionein) was up-regulated by nickel(II) treatment. The expression of these mRNAs were nickel(II) concentration-dependent. The levels of FHIT and metallothionein proteins were also consistent with the results for mRNAs. Overall, although the fundamental questions related to function of these genes in nickel(II)-mediated carcinogenicity are not answered, our study suggests that they can be interesting candidates for studies of molecular mechanisms of nickel(II) carcinogenesis.

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