• 제목/요약/키워드: ferritin protein

검색결과 113건 처리시간 0.025초

Purification and Characterization of Recombinant Tadpole H-Chain Ferritin in Escherichia coli

  • Chang, So-Ran;Kim, Young-Taek;Kim, Kyung-Suk
    • BMB Reports
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    • 제28권3호
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    • pp.238-242
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    • 1995
  • The tadpole H-ferritin produced in E. coli was purified and its molecular properties were investigated to obtain information about the contribution of the H-subunit in the reaction of iron core formation. All the expressed subunits were assembled into complete holoprotein in vitro, presumably 24-mer, and the protein was heat-stable. Electron microscopy revealed that the recombinant ferritin forms spherically and contains iron core. No difference was observed in the absorption spectrum of the expressed protein compared to that of the natural ferritin. The Ouchterlony double diffusion of the expressed protein showed that the H-chain ferritin shares an antigenic determinant with natural tadpole ferritin. Rabbit anti-horse spleen ferritin discriminated the H-ferritin from natural ferritin. The rate of ferritin formation by the recombinant H-chain apoferritin was determined to be higher than that shown by natural tadpole ferritin, which consists of H, M and L-subunits. This phenomenon may be caused by the absence of M and L-subunits in the recombinant H-chain apoferritin.

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Refolding of Fusion Ferritin by Gel Filtration Chromatography(GFC)

  • Kim, Hyung-Won;Kim, In-Ho
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제10권6호
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    • pp.500-504
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    • 2005
  • Fusion ferritin (heavy chain ferritin, $F_H+$ light chain ferritin, $F_L$), an iron-binding protein, was primarily purified from recombinant Escherichia coli by two-step sonications with urea [1]. Unfolded ferritin was refolded by gel filtration chromatography (GFC) with refolding enhancer, where 50 mM Na-phosphate (pH 7.4) buffer containing additives such as Tween 20, PEG, and L-arginine was used. Ferritin is a multimeric protein that contains approximately 20 monomeric units for full activity. Fusion ferritin was expressed in the form of inclusion bodies (IBs). The IBs were initially solubilized in 4 M urea denaturant. The refolding process was then performed by decreasing the urea concentration on the GFC column to form protein multimers. The combination of the buffer-exchange effect of GFC and the refolding enhancers in refolding buffer resulted in an efficient route for producing properly folded fusion ferritin.

Molecular Cloning of a cDNA Encoding a Ferritin Subunit from the Spider, Araneus ventricosus

  • Jin, Byung-Rea;Han, Ji-Hee;Kim, Seong-Ryul;Sohn, Hung-Dae
    • International Journal of Industrial Entomology and Biomaterials
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    • 제4권2호
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    • pp.163-168
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    • 2002
  • We report for the first time the cDNA sequence encoding a ferritin subunit from the spiders Araneus ventricosus. The complete cDNA sequence of A. ventricosus ferritin subunit comprised 516 bp with 172 amino acid residues. The A. ventricosus ferritin subunit cDNA contained a conserved iron responsive element sequence in the 5 untranslated region. An alignment of the deduced protein sequence of the A. ventricosus ferritin subunit gene to that of other heavy chain ferritin molecules showed that A. ventricosus ferritin subunit is most similar to the great pond snail, Lymnaea stagnalis, ferritin with 70.2% of protein sequence identity.

철 저장단백질 관련 Ferritin 유전자를 이용한 상추의 형질전환 (Transformation of Lettuce (Lactuce sativa L.) Using Iron Storage Protein Ferritin Gene)

  • 김성하;노일섭;최장선;강권규
    • 식물조직배양학회지
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    • 제28권3호
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    • pp.147-151
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    • 2001
  • Explants of Lactuce sativa cultivar, chungchima, were co-cultivated with Agrobacterium tumefaciences LBA4404, EHA101 strains containing nptll gene and ferritin gene encoding iron storage protein from soybean for transformation. Through initial selection of regenerated explants by culturing on a kanamycin and carbenicillin containing MS medium, multiple shoots were obtained after 2 months of culture. For a complementary step of selection, putative transgenic shoots were transferred to 1/2 MS basal medium supplemented with 100 mg/L kanamycin and 500 mg/L carbenicillin. The selected shoots were tested with PCR analysis using nptll, ferritin specific primers whether ferritin gene was introduced to genome of the plants. These results confirmed that produced the specific PCR bands in the putative transgenic lines. Additionally the Northern blot showed that transcripts of ferritin gene were detected in mature leaf of the transgenic lines. These results suggest that ferritin gene be successfully integrated and transcribed in the putative transgenic lettuce plants.

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5'-Untranslated Region에 존재하는 Iron Responsive Element에 의한 Ferritin 합성조절 (Regulation of Ferritin Synthesis by Iron-responsive Element in 5'-Untranslated Region)

  • 정인식;이중림;김해영
    • Applied Biological Chemistry
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    • 제41권3호
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    • pp.224-227
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    • 1998
  • 철의 대사과정에 관여하는 ferritin 단백질의 발현은 ferritin transcript의 5'-untranslated region에 위치한 iron-responsive element (IRE)와 철 농도 조절 단백질의 결합에 의해 조절된다. 이러한 ferritin의 생성에 관여하는 구조적인 요소를 밝히기 위해, RNA 이차구조인 IRE의 bulge 부분을 다른 염기로 변환시켜 철 농도 조절단백질에 의한 RNA 결합력과 ferritin 단백질의 생성의 저해정도를 비교 측정하였다. 측정된 결과로부터 IRE의 bulge 부분의 시토신 염기배열만이 RNA 이차구조의 형성에 중요한 작용을 하여 ferritin 합성을 조절할 수 있는 것을 보였다.

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큰느타리버섯에서 석충 페리틴 단백질 유전자의 발현 최적화 및 생물학적 활성 (Optimization of the Expression of the Ferritin Protein Gene in Pleurotus eryngii and Its Biological Activity)

  • 우연정;오시윤;최장원
    • 한국균학회지
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    • 제47권4호
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    • pp.359-371
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    • 2019
  • 큰느타리버섯에서 철 저장과 관련된 페리틴 단백질의 발현 및 분비를 최적화하기 위해, T-Fer 벡터에 EcoRI 및 HindIII처리를 해 페리틴 유전자를 얻은 후, BamHI으로 처리된 선형의 pPEVPR1b 분비 벡터에 클로닝하여pPEVPR1b-Fer 재조합 벡터를 구축한 다음 Agrobacterium tumefaciens LBA4404 로 도입하였다. Agrobacterium tumefaciens-mediated transformation 방법에 의해 Pleurotus eryngii로 형질전환하고 kanamycin함유된 MCM 배지에서 올바른 형질전환체를 선별하였고, 단백질 발현은 SDS-PAGE 및 항원항체 반응에 의한 western blot으로 확인하였다. 페리틴 단백질의 분비 발현은 batch culture 및 20 L airlift type fermenter에서 배양 시간 및 온도와 같은 배양 조건에 의해 최적화되었다. 페리틴 생산을 위한 배양 조건은 MCM 배지에서 25℃ 및 8 일 배양에 의해 최적화되었다. 페리틴 단백질의 양은 정량적 단백질 분석에 의해 2.4 mg/g mycelium으로 측정되었다. 그러나, PR1b (32 amino acid)의 분비서열은 큰느타리버섯 내부의 peptidase에 의해 정확하게 processing되지 않았지만, 페리틴 단백질은 균사체에서 최대로 전체단백질의 24.7% 발현되었고, 배양액에서는 검출되지 않았다. 철 결합 활성은 7.5% non-denaturing gel에서 Perls' staining에 의해 확인되었으며, 다량체 페리틴(24 subunits)이 P. eryngii 균사체에서 형성되었음을 보여준다. 생물학적 활성 측정을 위하여 페리틴을 함유한 분말을 제조하여 육계의 사료 첨가제로서의 사용 가능성에 대해 시험하였으며, 결과적으로 페리틴은 육계의 성장을 촉진하고 사료 효율 및 생산 지수를 향상시키는것으로 확인되었다.

Oxidative modification of ferritin induced by methylglyoxal

  • An, Sung-Ho;Lee, Myeong-Seon;Kang, Jung-Hoon
    • BMB Reports
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    • 제45권3호
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    • pp.147-152
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    • 2012
  • Methylglyoxal (MG) was identified as an intermediate in non-enzymatic glycation and increased levels were reported in patients with diabetes. In this study, we evaluated the effects of MG on the modification of ferritin. When ferritin was incubated with MG, covalent crosslinking of the protein increased in a time- and MG dose-dependent manner. Reactive oxygen species (ROS) scavengers, $N-acetyl-_L-cysteine$ and thiourea suppressed the MG-mediated ferritin modification. The formation of dityrosine was observed in MG-mediated ferritin aggregates and ROS scavengers inhibited the formation of dityrosine. During the reaction between ferritin and MG, the generation of ROS was increased as a function of incubation time. These results suggest that ROS may play a role in the modification of ferritin by MG. The reaction between ferritin and MG led to the release of iron ions from the protein. Ferritin exposure to MG resulted in a loss of arginine, histidine and lysine residues. It was assumed that oxidative damage to ferritin caused by MG may induce an increase in the iron content in cells, which is deleterious to cells. This mechanism, in part, may provide an explanation or the deterioration of organs under diabetic conditions.

콩 유용성분 탐색에 관한 연구: 콩 Ferritin의 정제 및 특성 (Investigation of useful components in soybean seeds: Purification and characterization of soybean ferritin)

  • 서경원;오석홍
    • Applied Biological Chemistry
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    • 제41권7호
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    • pp.522-526
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    • 1998
  • 콩 유용성분 탐색의 일환으로 그리고 향후 콩 ferritin 항체 및 유전자 확보를 목표로 발아된 콩으로부터 ferritin을 분리 정제하여 그 몇가지 특성을 조사하였다. 72시간 발아된 콩으로부터 ammonium sulfate 침전(0.55 saturation), DEAE-cellulose, Sephacryl S-300, Bio-Scale Q2 column chromatographies를 통하여 ferritin을 분리하였다. 정제된 콩 ferritin은 SDS-PAGE 분석에서 21 kDa의 크기를 나타냈으며, Sephacry S-300을 통한 겔거르기 chromatography와 non-denaturing 폴리아크릴아마이드 전기영동 분석에서 $510{\sim}560\;kDa$의 크기로 측정 되었다. 또한, immunodiffusion test에서 anti-soybean ferritin antiserum과 상호 반응하였다. 원자흡광광도계와 표준 철 용액을 이용한 정제된 콩 ferritin 중의 철 함유량은 833 mol Fe/mol protein 이었으며, 이는 호박씨로부터 분리한 ferritin보다 31배 더 많은 양의 철 함유량 이었다. 정제된 콩 ferritin중의 철은 horse spleen ferritin 중의 철과 유사하게 iron staining 되었다.

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Variation of Iron Content and Ferritin Distribution during Development Stage under Conditions of Iron Nutritional Status from Hydroponic Culture in Red Pepper ( Capsicum annuum L. )

  • Kim, Young-Ho;Lee, Young-Ok;Nou, Ill-Sup;Shin, Ill-Yong;Kameya, Toshiaki;Saito, Takashi;Kang, Kown-Kyoo
    • Plant Resources
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    • 제1권1호
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    • pp.1-5
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    • 1998
  • Total iron content and ferritin distribution have been determined in red pepper(Capsicum annuum L.) during development stage under conditions of iron nutritional status from hydroponic culture. Color of the leaves become chlorotic on iron deficient and high concentration. The plant height on each iron concentration had retarding effect at concentration lower than $25\muM$ and greater than 125$25\muM$. In normal green leaves. Total iron content was almost constant with a mean value of $2.5\mumole$ of iron/mg of dry matter, except at 63day, for which it increases slightly to $4\mumole$. Howere, iron content of chlorotic plants grew on iron free medium was not almost detectable. Also in post chlorotic leaves(++Fe), iron content was evidently increase unitl 7days after transfer on liquid medium, but decreased from after 14days. Also, ferritin protein analysed total protein extracts prepared from leaves of different ages using antibodies raised against ferritin protein. Ferritin protein deereased progressively during the first week of germination and was not detectable in vegetative tissues. Ferritin protein in post chlorotic leaves wasevidently strongly cnhanced until 11days after transfer on liquid medium but decreased until the leves became chlorotic.

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Expression of a Carboxy-Terminal Deletion Mutant of Recombinant Tadpole H-Chain Ferritin in Escherichia coli

  • Lee, Mi-Young;Kim, Young-Taek;Kim, Kyung-Suk
    • BMB Reports
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    • 제29권5호
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    • pp.411-416
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    • 1996
  • In order to study the role of the protein shell in both iron uptake and iron core formation of ferritin, we constructed a deletion mutant of the ferritin gene and expressed the mutant gene in Escherichia coli, This mutant was obtained by introducing an amber mutation at position Pro-157 and a deletion of the 19 amino acid residues at the carboxy-terminus of the recombinant tadpole H-chain ferritin. The deleted amino acids correspond to E-helix forming the hydrophobic channel in the protein. E. coli harboring the plasmid pTHP157, which contains the deleted gene, was grown at $23^{\circ}C$ in the presence of 0.1 mM IPTG, and the induced protein appeared to be partly soluble. Nondenaturing polyacrylamide gel electrophoresis showed that the expressed mutant H-chains coassemble into holoprotein, suggesting that E-helix is not necessary for assembly of the subunits as reported for human H-chain ferritin. Its ability in iron core formation was proven in an Fe staining gel, the result disagreeing with the observation that the hydrophobic channel is necessary for iron core formation in human H-chain ferritin.

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