• 제목/요약/키워드: Zn-SOD

검색결과 292건 처리시간 0.028초

Isoform-Specific Responses of Superoxide Dismutase to Oxidative Stresses and Hormones in Parquat-Tolerant Rehmannia glutinosa

  • Jamal, Arshad;Yoo, Nam-Hee;Yun, Song-Joong
    • Journal of Crop Science and Biotechnology
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    • 제10권1호
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    • pp.8-12
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    • 2007
  • All accessions of Rehmannia glutinosa show the unique characteristic of intrinsic tolerance to paraquat. The higher level of endogenous superoxide dismutase(SOD) activity and its increase upon paraquat treatment indicated the involvement of SOD in the tolerance mechanism to paraquat in R. glutinosa. In this study, we examined the isoform-specific response of SOD to oxidative stresses and hormones. Six SOD isoforms were found in the leaf, and they were identified as two MnSODs(named MnSOD I and MnSOD II, in order of increasing mobility), one FeSOD and three Cu/ZnSODs(named Cu/ZnSOD I, Cu/ZnSOD II, and Cu/ZnSOD III, in order of increasing mobility). MnSOD I, MnSOD II, FeSOD, Cu/ZnSOD I, Cu/ZnSOD II, and Cu/ZnSOD III, contributed to 4, 11, 7, 15, 30, and 32% of the total SOD activity, respectively. Total SOD activity levels in the leaf were increased by 4, 24, and 21% by paraquat, salicylic acid(SA), and yeast extract(YE), respectively, but little by ethephon. Six SOD isoforms responded differentially to these stresses and hormones. The activities of all the isoforms were increased by YE and SA except that of MnSOD I which was decreased by SA. The activities of MnSOD I, FeSOD, and CuZnSOD I were increased by paraquat. These results suggest that amelioration of oxidative stresses by SOD is fine-tuned by the differential expression of isoforms in R. glutinosa.

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Cloning, DNA Sequence Determination, and Analysis of Growth-Associated Expression of the sodF Gene Coding for Fe- and Zn-Containing Superoxide Dismutase of Streptomyces griseus

  • Kim, Ju-Sim;Lee, Jeong-Kug
    • Journal of Microbiology and Biotechnology
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    • 제10권5호
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    • pp.700-706
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    • 2000
  • Iron- and zinc-containing superoxide dismutase (FeZnSOD) and nickel-containing superoxide dismutase (NiSOD) are cytoplamic enzymes in Streptomyces griseus. The sodF gene coding for FeZnSOD was cloned from genomic Southern hybridization analysis with a 0.5-kb DNA probe, which was PCR-amplified with facing primers corresponding to the N-terminal amino acid of the purified FeZnSOD of S. griseus and a C-terminal region which is conserved among bacterial FeSODs and MnSODs. The sodF open reading frame (ORF) was comprised of 213 amino acid (22,430 Da), and the deduced sequence of the protein was highly homologous (86% identity) to that of FeZnSOD of Streptomyces coelicolor. The FeZnSOD expression of exponentially growing S. griseus cell was approximately doubled as the cell growth reached the early stationary phase. The growth-associated expression of FeZnSOD was mainly controlled at the transcriptional level, and the regulation was exerted through the 110 bp regulatory DNA upstream from the ATG initiation codon of the sodF gene.

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섬오갈피나무에서 SOD Isoenzyme의 식별 및 특성규명 (Identification and Characterization of SOD Isoenzymes in Acanthopanax koreanum Plants)

  • 오순자;박영철;김응식;고석찬
    • 한국자원식물학회지
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    • 제12권3호
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    • pp.234-239
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    • 1999
  • 두릅나무과 식물 6종의 잎으로부터 2개의 공통적인 superoxide dismutase(SOD) isoenzyme이 구분되었다. 이들 공통적인 isoenzyme(SOD 4와 SOD 6)의 패턴은 오갈피속 식물 중에서 민가시오갈피나무(A. senticosus for. inermis) 잎에서 가장 다양하였고, 그 활성은 섬오갈피나무(A. koreanum) 잎에서 가장 높았다. 그리고 SOD 4와 SOD 6은 $H_2O$$_2$와 KCN에 의한 선택적 저해로부터 각각 Fe-SOD와 CuZn-SOD인 것으로 밝혀졌다. 또한, SOD isoenzyme의 패턴은 섬오갈피나무의 성숙한 잎과 수피, 근피에서 차이가 없었으나 그 활성은 조직별로 차이가 나타났으며, Fe-SOD는 근피에서, CuZn-SOD은 잎에서 상대적으로 높게 나타났다. 그리고, CuZn-SOD나 Fe-SOD 모두 30-4$0^{\circ}C$에서 높은 활성 을 나타내었으나 그 이상의 온도에서는 활성이 저해되었다.

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Salsolinol, a Tetrahydroisoquinoline Catechol Neurotoxin, Induces Human Cu,Zn-superoxidie Dismutase Modificaiton

  • Kang, Jung-Hoon
    • BMB Reports
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    • 제40권5호
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    • pp.684-689
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    • 2007
  • The endogenous neurotoxin, 1-methyl-6,7-dihydroxy-1,2,3,4-tetrahydroisoquinoline (salsolinol), has been considered a potential causative factor for the pathogenesis of Parkinson's disease (PD). In the present study, we examined the pattern of human Cu,Zn-superoxide dismutase (SOD) modification elicited by salsolinol. When Cu,Zn-SOD was incubated with salsolinol, some protein fragmentation and some higher molecular weight aggregates were occurred. Salsolinol led to inactivation of Cu,Zn-SOD in a concentration-dependent manner. Free radical scavengers and catalase inhibited the salsolinol-mediated Cu,Zn-SOD modificaiton. Exposure of Cu,Zn-SOD to salsolinol led also to the generation of protein carbonyl compounds. The deoxyribose assay showed that hydroxyl radicals were generated during the oxidation of salsolinol in the presence of Cu,Zn-SOD. Therefore, the results indicate that free radical may play a role in the modification and inactivation of Cu,Zn-SOD by salsolinol.

Expression of a Cu-Zn Superoxide Dismutase Gene in Response to Stresses and Phytohormones in Rehmannia Glutinosa

  • Park, Myoung-Ryoul;Ryu, Sang-Soo;Yoo, Nam-Hee;Yu, Chang-Yeon;Yun, Song-Joong
    • 한국약용작물학회지
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    • 제13권5호
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    • pp.270-275
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    • 2005
  • Superoxide dismutases (SOD) are metalloenzymes that convert $O_2^-\;to\;H_2O_2$. Rehmannia glutinosa is highly tolerant to paraquat-induced oxidative stress. The primary objective of this study was to characterize regulation of SOD gene expression in R. glutinosa in response to oxidative stresses and hormones. A full-length putative SOD clone (RgCu-ZnSOD1) was isolated from the leaf cDNA library of R. glutinosa using an expressed sequence tag clone as a probe. RgCu-ZnSOD1 cDNA is 777 bp in length and contains an open reading frame for a polypeptide consisted of 152 amino acid residues. The deduced amino acid sequence of the clone shows highest sequence similarity to the cytosolic Cu-ZnSODs. The two to three major bands with several minor ones on the Southern blots indicate that RgCu-ZnSOD1 is a member of a small multi-gene family. RgCuZnSOD1 mRNA was constitutively expressed in the leaf, flower and root. The expression of RgCu-ZnSOD1 mRNA was increased about 20% by wounding and paraquat, but decreased over 50% by ethylene and $GA_3$. This result indicates that the RgCu-ZnSOD1 expression is regulated differentially by different stresses and phytohormones at the transcription level. The RgCu-ZnSOD1 sequence and information on its regulation will be useful in investigating the role of SOD in the paraquat tolerance of R. glutinosa.

Copper, Zinc-Superoxide Dismutase (Cu/Zn SOD) Gene During Embryogenesis of Bombyx mori: Molecular Cloning, Characterization and Expression

  • Hong, Sun-Mee;Kang, Seok-Woo;Goo, Tae-Won;Kim, Nam-Soon;Lee, Jin-Sung;Nho, Si-Kab
    • International Journal of Industrial Entomology and Biomaterials
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    • 제13권1호
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    • pp.23-30
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    • 2006
  • BmCu/Zn SOD was isolated from early embryo of Bombyx mori using microarray analysis. The BmCu/Zn SOD gene was observed during the early embryonic stage with the strongest signal found at the unfertilizaion, fertilization and blastoderm stages. The BmCu/Zn SOD gene encodes a protein of 154 amino acids with a calculated Mr of 15 kDa. The deduced amino acid sequence of BmCu/Zn SOD indicated that the residues that form on the Cu/Zn binding site are conserved and that the sequence is a 60% identity to that of M. domestica. In a phylogenetic tree, Bm SOD was also close to Drosophila SODs rather than other insect SODs. The BmCu/Zn SOD gene exists as a single copy in the genome. Transcripts of BmCu/Zn SOD cDNA were identified by northern blot analysis. The expression of the BmCu/Zn SOD gene was observed weakly in most of larvae, pre-pupae, pupae and adult tissues. Also, the BmCu/Zn SOD gene was observed in early embryonic stage. Although the roles of SODs remains to be further elucidated, the high expression of BmCu/Zn SOD gene at before 24 h post fertilization suggests that this gene is of general importance during early embryogenesis in the Bombyx mod.

Modification of Cu,Zn-Superoxide Dismutase by Oxidized Catecholamines

  • Kang, Jung-Hoon
    • BMB Reports
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    • 제37권3호
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    • pp.325-329
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    • 2004
  • Oxidation of catecholamines may contribute to the pathogenesis of Parkinson's disease (PD). The effect of the oxidized products of catecholamines on the modification of Cu,Zn-superoxide dismutase (SOD) was investigated. When Cu,Zn-SOD was incubated with the oxidized 3,4-dihydroxyphenylalanine (DOPA) or dopamine, the protein was induced to be aggregated. The deoxyribose assay showed that hydroxyl radicals were generated during the oxidation of catecholamines in the presence of copper ion. Radical scavengers, azide, N-acetylcysteine, and catalase inhibited the oxidized catecholamine-mediated Cu,Zn-SOD aggregation. Therefore, the results indicate that free radicals may play a role in the aggregation of Cu,Zn-SOD. When Cu,Zn-SOD that had been exposed to catecholamines was subsequently analyzed by an amino acid analysis, the glycine and histidine residues were particularly sensitive. These results suggest that the modification of Cu,Zn-SOD by oxidized catecholamines might induce the perturbation of cellular antioxidant systems and led to a deleterious cell condition.

Modification and inactivation of Cu,Zn-superoxide dismutase by the lipid peroxidation product, acrolein

  • Kang, Jung Hoon
    • BMB Reports
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    • 제46권11호
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    • pp.555-560
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    • 2013
  • Acrolein is the most reactive aldehydic product of lipid peroxidation and is found to be elevated in the brain when oxidative stress is high. The effects of acrolein on the structure and function of human Cu,Zn-superoxide dismutase (SOD) were examined. When Cu,Zn-SOD was incubated with acrolein, the covalent crosslinking of the protein was increased, and the loss of enzymatic activity was increased in a dose-dependent manner. Reactive oxygen species (ROS) scavengers and copper chelators inhibited the acrolein-mediated Cu,Zn-SOD modification and the formation of carbonyl compound. The present study shows that ROS may play a critical role in acrolein-induced Cu,Zn-SOD modification and inactivation. When Cu,Zn-SOD that has been exposed to acrolein was subsequently analyzed by amino acid analysis, serine, histidine, arginine, threonine and lysine residues were particularly sensitive. It is suggested that the modification and inactivation of Cu,Zn-SOD by acrolein could be produced by more oxidative cell environments.

DNA Cleavage Induced by the Reaction of Salsolinol with Cu,Zn-Superoxide Dismutase

  • Kang, Jung-Hoon
    • Bulletin of the Korean Chemical Society
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    • 제28권12호
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    • pp.2329-2332
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    • 2007
  • Salsolinol, endogenous neurotoxin, is known to be involved in the pathogenesis of Parkinson's disease (PD). In the present study, we have investigated the oxidative damage of DNA induced by the reaction of salsolinol with Cu,Zn-SOD. When plasmid DNA incubated with salsolinol and Cu,Zn-SOD, DNA cleavage was proportional to the concentrations of salsolinol and Cu,Zn-SOD. The salsolinol/Cu,Zn-SOD system-mediated DNA cleavage was significantly inhibited by radical scavengers such as mannitol, ethanol and thiourea. These results indicated that free radicals might participate in DNA cleavage by the salsolinol/Cu,Zn-SOD system. Spectrophotometric study using a thiobarbituric acid showed that hydroxyl radical formation was proportional to the concentration of salsolinol and was inhibited by radical scavengers. These results indicated that hydroxyl radical generated in the reaction of salsolinol with Cu,Zn-SOD was implicated in the DNA cleavage. Catalase and copper chelators inhibited DNA cleavage and the production of hydroxyl radicals. These results suggest that DNA cleavage is mediated in the reaction of salsolinol with Cu,Zn-SOD via the generation of hydroxyl radical by a combination of the oxidation reaction of salsolinol and Fenton-like reaction of free copper ions released from oxidatively damaged SOD.

폐포대식세포에서 내독소 자극에 의한 Superoxide Dismutase 유전자발현의 조절 기전 (Superoxide Dismutase Gene Expression Induced by Lipopolysaccharide in Alveolar Macrophage of Rat)

  • 박계영;유철규;김영환;한성구;심영수;현인규
    • Tuberculosis and Respiratory Diseases
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    • 제42권4호
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    • pp.522-534
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    • 1995
  • 연구배경: 내독소에 의한 급성 폐손상의 발병기전에서 산소기가 중요한 역할을 한다는 사실은 잘 알려져 있다. 세포내에는 이러한 산소기에 의한 세포의 손상을 방지하는 정상 방어기전으로 여러 항산화효소가 존재하는데, 이중 SOD는 세포대사과정이나 외부 자극에 의해 생성된 superoxide로부터 세포의 손상을 방지하는 역할을 한다. 세포내 SOD는 주로 이중체의 구조로 세포질에 존재하는 CuZnSOD와 사중체의 구조로 미토콘드리아에 존재하는 MnSOD의 두 종류가 알려져 있으나, 폐포대식세포에서의 SOD mRNA 발현 및 그 조절기전에 대해서는 확실히 규명되어 있지 않다. 본 연구의 목적은 백서의 폐포대식세포에서 내독소 자극에 의한 MnSOD와 CuZnSOD mRNA 발현양상을 관찰하고 내독소 자극시 니타나는 SOD mRNA 발현의 조절기전을 규명하는데 있다. 방법: 백서의 기관지폐포세척액에서 얻은 세포를 plastic plate에 부착시켜 폐포대식세포를 분리한 후 내독소를 자극하여 내독소 용량($0.01{\mu}g/ml{\sim}10{\mu}g/ml$)과 자극시간(0, 2, 4, 8, 24 hrs)에 따른 MnSOD와 CuZnSOD MnSOD 발현양상을 Northern blot analysis를 시행하여 관찰하였다. 다음 단계로 MsSOD와 CuZnSOD mRNA 발현의 조절기전을 밝히고자 폐포대식세포를 각각 AD($5{\mu}g/ml$) 또는 CHX($5{\mu}g/ml$)로 전처치한 후 내독소로 자극하여 MnSOD와 CuZnSOD mRNA의 발현양상을 관찰하였다. 한편 내독소 투여가 SOD mRNA의 안정성을 변화시키는지 여부를 평가하기 위해 폐포대식세포를 대조군과 투여군으로 나누어 SOD mRNA의 분해속도를 비교하였다. 총 세포내 RNA는 guanidinium thiocyanate/phenol/chloroform법을 이용하여 추출하였고, Northern blot analysis는 $^{32}P$로 표지된 백서의 MnSOD와 CuZnSOD cDNAs를 이용하여 시행하였다. 결과: 백서의 폐포대식세포에서 MnSOD mRNA의 발현은 내독소 투여량의 증가세 따라 증가되었고 내독소를 투여하고 8시간후에 정점을 이루었으나, CuZnSOD mRNA의 발현은 내독소의 용량 및 투여후 반응시간에 따라 변화하지 않았다. 내독소 투여후 MnSOD mRNA의 발현증가는 AD 또는 CHX 각각의 전처치에 의해 모두 억제되었다. MnSOD mRNA의 안정성은 내독소 투여에 의해 변화하지 않았다. 결론: 이상의 결과로 백서의 폐포대식세포는 내독소 자극에 반응하여 SOD를 생성하는 중요세포이고, 내독소에 의한 MnSOD mRNA의 발현은 전사단계에서 조정되며 mRNA의 안정성을 변화시키지 않고 새로운 단백의 합성이 필요한 것으로 사료된다.

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