• 제목/요약/키워드: Glutathione Redox

검색결과 70건 처리시간 0.031초

환경오염(環境汚染)에 의한 산화(酸化)스트레스와 식물체(植物體)의 방어기작(防禦機作) (Oxidative Stress Resulting from Environmental Pollutions and Defence Mechanisms in Plants)

  • 심상인;강병화
    • 한국환경농학회지
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    • 제12권3호
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    • pp.264-280
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    • 1993
  • The environmental pollutions were a serious problem in Korea recently. So many researcher have studied the effect of environmental pollution on plants and agro-ecosystem, but the basic mechanisms of environmental stresses were various. One of the important mechanisms was oxidative stress caused by active toxic oxygen. The toxic oxygen was generated by several stresses, abnormal temperature, many xenobiotics, air pollutants, water stress, fugal toxin, etc. In the species of toxic oxygen which is primary inducer of oxidative stresses, superoxide, hydrogen peroxide, hydroxyl radical and singlet oxygen were representative species. The scavenging systems were divided into two groups. One was nonenzymatic system and the other enzymatic system. Antioxidants such as glutathione, ascorbic acid, and carotenoid, have the primary function in defense mechanisms. Enzymatic system divided into two groups; First, direct interaction with toxic oxygen(eg. superoxide dismutase). Second, participation in redox reaction to maintain the active antioxidant levels(eg. glutathione reductase, ascorbate peroxidase, etc.).

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Interactome Analysis of Yeast Glutathione Peroxidase 3

  • Lee, Phil-Young;Bae, Kwang-Hee;Kho, Chang-Won;Kang, Sung-Hyun;Lee, Do-Hee;Cho, Sa-Yeon;Kang, Seong-Man;Lee, Sang-Chul;Park, Byoung-Chul;Park, Sung-Goo
    • Journal of Microbiology and Biotechnology
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    • 제18권8호
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    • pp.1364-1367
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    • 2008
  • Oxidative stress damages all cellular constituents, and therefore, cell has to possess various defense mechanisms to cope. Saccharomyces cerevisiae, widely used as a model organism for studying cellular responses to oxidative stress, contains three glutathione peroxidase (Gpx) proteins. Among them, Gpx3 plays a major defense role against oxidative stress in S. cerevisiae. In this study, in order to identity the new interaction proteins of Gpx3, we carried out two-dimensional gel electrophoresis after immunoprecipitation (IP-2DE), and MALDI-TOF mass spectrometry. The results showed that several proteins including protein disulfide isomerase, glutaredoxin 2, and SSY protein 3 specifically interact with Gpx3. These findings led us to suggest the possibility that Gpx3, known as a redox sensor and ROS scavenger, has another functional role by interacting with several proteins with various cellular functions.

Electrochemical Detection of Glutathione on SAMs on Gold Using an Electroactive Quininoid-Type Molecule

  • Kim, So-Hyun;Kim, Jae-Il;Park, Hye-Ri;Kim, Mi-Kyoung;Chong, Yoo-Hoon;Yeo, Woon-Seok
    • Bulletin of the Korean Chemical Society
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    • 제30권11호
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    • pp.2574-2576
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    • 2009
  • In this work, we describe a new sensor that specifically responds to biothiols, i.e., glutathione (GSH), in solution. An electrochemical transducing strategy was utilized and cyclic voltammetry (CV) was employed to monitor the presence of GSH in real time. Our approach harnessed self-assembled monolayers (SAMs) on gold consisting of an alkanethiolate which was terminated by electroactive quininoid moiety. Prior to thiol molecule treatment, the characterisitc reversible redox peaks of the electroactive quininoid group was observed, while the reduction peak was dramatically shifted upon a treatment of GSH. This sensor showed the capability to detect the GSH in solution in the range of 1 mM $\sim$ 100 aM. We believe that this strategy will provide an important tool for accurate, sensitive, rapid, and low-cost determination of GSH.

An evaluation of heat on protein oxidation of soy protein isolate or soy protein isolate mixed with soybean oil in vitro and its consequences on redox status of broilers at early age

  • Zhang, Xianglun;Lu, Peng;Xue, Wenyue;Wu, Dawei;Wen, Chao;Zhou, Yanmin
    • Asian-Australasian Journal of Animal Sciences
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    • 제30권8호
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    • pp.1135-1142
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    • 2017
  • Objective: The objective of this study was to evaluate effects of heat treatment and soybean oil inclusion on protein oxidation of soy protein isolate (SPI) and of oxidized protein on redox status of broilers at an early age. Methods: SPI mixed with soybean oil (SPIO) heated at $100^{\circ}C$ for 8 h was used to evaluate protein oxidation of SPI. A total of two hundred and sixteen 1-day-old Arbor Acres chicks were divided into 3 groups with 6 replicates of 12 birds, receiving basal diet (CON), heat-oxidized SPI diet (HSPI) or mixture of SPI and 2% soybean oil diet (HSPIO) for 21 d, respectively. Results: Increased protein carbonyl, decreased protein sulfhydryl of SPI were observed as heating time increased in all treatments (p<0.05). Addition of 2% soybean oil increased protein carbonyl of SPI at 8 h heating (p<0.05). Dietary HSPI and HSPIO decreased the average daily gain of broilers as compared with the CON (p<0.05). Broilers fed HSPI and HSPIO exhibited decreased glutathione (GSH) in serum, catalase activity and total sulfhydryl in liver and increased malondialdehyde (MDA) and protein carbonyl in serum, advanced oxidation protein products (AOPPs) in liver and protein carbonyl in jejunal mucosa as compared with that of the CON (p<0.05). Additionally, broilers receiving HSPIO showed decreased glutathione peroxidase activity (GSH-Px) in serum, GSH and hydroxyl radical scavenging capacity in liver, GSH-Px activity in duodenal mucosa, GSH-Px activity and superoxide anion radical scavenging capacity in jejunal mucosa and increased AOPPs in serum, MDA and protein carbonyl in liver, MDA and AOPPs in jejunal mucosa (p<0.05). Conclusion: Protein oxidation of SPI can be induced by heat and soybean oil and oxidized protein resulted in redox imbalance in broilers at an early age.

Cysteine improves boar sperm quality via glutathione biosynthesis during the liquid storage

  • Zhu, Zhendong;Zeng, Yao;Zeng, Wenxian
    • Animal Bioscience
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    • 제35권2호
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    • pp.166-176
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    • 2022
  • Objective: Sperm is particularly susceptible to reactive oxygen species (ROS) stress. Glutathione (GSH) is an endogenous antioxidant that regulates sperm redox homeostasis. However, it is not clear whether boar sperm could utilize cysteine for synthesis GSH to protect sperm quality from ROS damage. Therefore, the present study was undertaken to elucidate the mechanism of how cysteine is involved in protecting boar sperm quality during liquid storage. Methods: Sperm motility, membrane integrity, lipid peroxidation, 4-hydroxyIlonenal (4-HNE) modifications, mitochondrial membrane potential, as well as the levels of ROS, GSH, and, ATP were evaluated. Moreover, the enzymes (GCLC: glutamate cysteine ligase; GSS: glutathione synthetase) that are involved in glutathione synthesis from cysteine precursor were detected by western blotting. Results: Compared to the control, addition of 1.25 mM cysteine to the liquid storage significantly increased boar sperm progressive motility, straight-line velocity, curvilinear velocity, beat-cross frequency, membrane integrity, mitochondrial membrane potential, ATP level, acrosome integrity, activities of superoxide dismutase and catalase, and GSH level, while reducing the ROS level, lipid peroxidation and 4-HNE modifications. It was also observed that the GCLC and GSS were expressed in boar sperm. Interestingly, when we used menadione to induce sperm with ROS stress, the menadione associated damages were observed to be reduced by the cysteine supplementation. Moreover, compared to the cysteine treatment, the γ-glutamylcysteine synthetase (γ-GCS) activity, GSH level, mitochondrial membrane potential, ATP level, membrane integrity and progressive motility in boar sperm were decreased by supplementing with an inhibitor of GSH synthesis, buthionine sulfoximine. Conclusion: These data suggest that boar sperm could biosynthesize the GSH from cysteine in vitro. Therefore, during storage, addition of cysteine improves boar sperm quality via enhancing the GSH synthesis to resist ROS stress.

수식된 N,N'-bis(2-pyrrol-1-yl-propyl)-4,4'-bipyridine 고분자 피막전극의 산화-환원 특성 (Redox Properties of Modified Poly-N,N'-bis(2-pyrrol-1-yl-propyl)-4,4'-Bipyridine Film Electrode)

  • 차성극
    • 대한화학회지
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    • 제45권5호
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    • pp.429-435
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    • 2001
  • 단량체인 N,N'-bis(2-pyrrol-1-yl-propyl)-4,4'-bipyridine(bpb)을 유리탄소전극 상에 전기화학적으로 중합한 고분자 피막전극을 erichrome black T(EBT) 와 glutathione(GSSG)의 1:1 용액으로 수식하여 GC/poly-bpb, EBT, GSSG형의 전극을 제작하고 이로써 Zn(II)을 포집한 전극을 제작하였다. 수식된 피막 내에서 이온의 확산계수는 아연이온이 포집되기 전후에 각각 2.43${\times}10^{-15}$과 9.14${\times}10^{-15}cm^2s^{-1}$으로 피막내의 전기화학적 활성자리에서 이탈이 거의 일어나지 않는 안정한 전극이다. 중합된 bpb의 양이 2.83${\times}10^4gmol^{-1}$에 대하여 1.17${\times}10^4gmol^{-1}$의 아연이온이 포집되었다. 이들 중에 산화-환원 과정에서 회합/해리에 관여하는 이온은 포집된 180개의 이온들 중에서 81.7%였다. 이는 EBT 만으로 수식된 전극에서 보다 3배정도 큰 값이다.

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Regulation of Branched-Chain, and Sulfur-Containing Amino Acid Metabolism by Glutathione during Ultradian Metabolic Oscillation of Saccharomyces cerevisiae

  • Sohn Ho- Yong;Kum Eun-Joo;Kwon Gi-Seok;Jin Ingnyol;Kuriyama Hiroshi
    • Journal of Microbiology
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    • 제43권4호
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    • pp.375-380
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    • 2005
  • Autonomous ultradian metabolic oscillation (T$\simeq$50 min) was detected in an aerobic chemostat culture of Saccharomyces cerevisiae. A pulse injection of GSH (a reduced form of glutathione) into the culture induced a perturbation in metabolic oscillation, with respiratory inhibition caused by $H_2S$ burst pro-duction. As the production of $H_2S$ in the culture was controlled by different amino acids, we attempted to characterize the effects of GSH on amino acid metabolism, particularly with regard to branched chain and sulfur-containing amino acids. During stable metabolic oscillation, concentrations of intra-cellular glutamate, aspartate, threonine, valine, leucine, isoleucine, and cysteine were observed to oscil-late with the same periods of dissolved $O_2$ oscillation, although the oscillation amplitudes and maximal phases were shown to differ. The methionine concentration was stably maintained at 0.05 mM. When GSH (100 $\mu$M) was injected into the culture, cellular levels of branched chain amino acids increased dramatically with continuous $H_2S$production, whereas the cysteine and methionine concentrations were noticeably reduced. These results indicate that GSH-dependent perturbation occurs as the result of the promotion of branched chain amino acid synthesis and an attenuation of cysteine and methionine synthesis, both of which activate the generation of $H_2S$. In a low sulfate medium containing 2.5 mM sulfate, the GSH injections did not result in perturbations of dissolved $O_2$ NAD(P)H redox oscillations without burst $H_2S$ production. This suggests that GSH-dependent perturbation is intimately linked with the metabolism of branched-chain amino acids and $H_2S$ generation, rather than with direct GSH-GSSG redox control.

Ameliorative effect of black ginseng extract against oxidative stress-induced cellular damages in mouse hepatocytes

  • Choudhry, Qaisra Naheed;Kim, Jun Ho;Cho, Hyung Taek;Heo, Wan;Lee, Jeong-Jun;Lee, Jin Hyup;Kim, Young Jun
    • Journal of Ginseng Research
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    • 제43권2호
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    • pp.179-185
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    • 2019
  • Background: Oxidative stress induces the production of reactive oxygen species (ROS), which play important causative roles in various pathological conditions. Black ginseng (BG), a type of steam-processed ginseng, has drawn significant attention due to its biological activity, and is more potent than white ginseng (WG) or red ginseng (RG). Methods: We evaluated the protective effects of BG extract (BGE) against oxidative stress-induced cellular damage, in comparison with WG extract (WGE) and RG extract (RGE) in a cell culture model. Ethanolic extracts of WG, RG, and BG were used to evaluate ginsenoside profiles, total polyphenols, flavonoid contents, and antioxidant activity. Using AML-12 cells treated with $H_2O_2$, the protective effects of WGE, RGE, and BGE on cellular redox status, DNA, protein, lipid damage, and apoptosis levels were investigated. Results: BGE exhibited significantly enhanced antioxidant potential, as well as total flavonoid and polyphenol contents. ATP levels were significantly higher in BGE-treated cells than in control; ROS generation and glutathione disulfide levels were lower but glutathione (GSH) and NADPH levels were higher in BGE-treated cells than in other groups. Pretreatment with BGE inhibited apoptosis and therefore protected cells from oxidative stress-induced cellular damage, probably through ROS scavenging. Conclusion: Collectively, our results demonstrate that BGE protects AML-12 cells from oxidative stress-induced cellular damages more effectively than WGE or RGE, through ROS scavenging, maintenance of redox status, and activation of the antioxidant defense system.

Menadione의 대사체인 Menadione-Glutathione Conjugate(MEN-SG)가 흰쥐 혈소판에 미치는 세포독성의 평가 및 MEN-SG의 안정성에 관한 연구 (Evaluation of Cytotoxicity to Rat Platelets by Menadione-Glutathione Conjugate and its Stability in Biological Assay System)

  • 서동철;정선화;이주영;김미정;정진호
    • Toxicological Research
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    • 제11권2호
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    • pp.295-302
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    • 1995
  • Menadione-ghitathione conjugate (MEN-SG), a metabolite of menadione, is known to be a redoxcycler in rat hepatocyte subcellular fraction. Therefore, it was assumed that MEN-SG could exert cytotoxlclty to ral platelets, another target tissue of menadione. We first synthesized MEN-SG, the identity of which was verified by mass, $^1{H}$-NMR and UV-visible spectra. In addition, the stability of MEN-SG was investigated in biological assay system. MEN-SG was degraded in a time-dependent manner in DMSO which had been used as a vehicle and thus, tris-HCl buffer was used as a vehicle of MEN-SG despite the low solubility in it. Perchloric acid as well as platelets itself did not affect the stability of MEN-SG. Our next attempt was the evaluation of cytotoxicity of MEN-SG in rat platelets. MEN-SG did not induce cytotoxicity to rat platelets measured by two different methods, LDH release and turbidity changes. The extents of oxygen consumption by MEN-SG in intact platelets were significantly lower than those by menadione, though it had been observed that oxygen consumptions by menadione and MENSG were similar in subcellular fractioas of platelets. These results suggest that MEN-SG is not toxic to rat platelets despite its redox cycling capacity and glutathione conjugation reaction of menadione could be regarded as a detoxification process.

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산화 스트레스에 의한 Thioredoxin의 발현과 폐암조직에서의 발현 (Induction of Thioredoxin by Oxidative Stress and Overexpression of Thioredoxin in Lung Cancer Tissue)

  • 이장훈;김형중;안철민;김성규;이원영
    • Tuberculosis and Respiratory Diseases
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    • 제46권3호
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    • pp.327-337
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    • 1999
  • 연구배경: 활성산소종(reactive oxygen species)은 발암 기전의 여러 단계 과정에 관여한다. 대부분의 종양 세포주 및 종양 조직내의 종양 세포는 활성산소종을 생성하는 반면 종양 세포의 catalase, Mn- 및 CuZn-SOD등 기존 항산화 단백의 활성도는 대부분 저하되어 있다. 이로 인한 종양 조직내의 지속적인 산화 스트레스는 종양의 국소 침습 및 전이를 촉진한다. 12-kDa thioredoxin은 glutathione 및 glutaredoxin과 함께 세포내 산화-환원 전위를 조절하여 세포 활성, 증식, 분화 및 산화-환원에 의한 아포토시스 조절에 관여하는 것으로 알려져 있다. 한편 histiocytic lymphoma 세포 (U937, human)에서 14-kDa 및 10-kDa의 eosinophilic cytotoxic enhancing factor(ECEF)로 정제되었으며 호산구 자극의 생물학적 기능은 10-kDa에서 20배 이상 높은 것으로 알려져 있다. 성인 T-세포백혈병, 자궁경부상피세포암 및 간세포암에서 thioredoxin 양이 증가 되어 있고 폐암에서는 thioredoxin mRNA가 증가되어 있는 것으로 알려져 있다. 이에 폐암 조직과 주위 정상 조직을 비교하여 catalase, CuZn-SOD 및 glutathione peroxidase 등 기존 항산화 단백과 thioredoxin 발현 변화를 비교 관찰하고 대식세포에서 산화 스트레스 및 내독소에 의한 thioredoxin 발현 변화를 관찰하고자 하였다. 방 법: 동일한 환자의 폐암 조직과 주변의 정상 폐 조직을 immunoblot 분석으로 catalase, CuZn-SOD, glutathione peroxidase 및 thioredoxin 발현을 비교 관찰하였으며 대식세포인 mouse monocyte-macrophage 세포 (RAW 264.7)에 5 ${\mu}M$ menadione 및 1 ${\mu}g/ml$ endotoxin을 처치하여 thioredoxin 발현을 관찰하였다. 결 과: Immunoblot 분석상 12-kDa의 thioredoxin 발현은 폐암 조직에서 정상 폐조직과 비교하여 의미있는 증가를 보였으나 catalase 및 CuZn-SOD의 발현은 폐암 조직에서 정상 폐조직과 비교하여 감소하였고 glutathione peroxidase의 발현은 일정 하지 않은 변화를 보였다. 절단형(truncated) thioredoxin 역시 폐암에서 증가하였다. Mouse monocyte-macrophage cells에 5 ${\mu}M$ menadione 및 1 ${\mu}g/ml$ endotoxin을 처치하였을때 thioredoxin 발현은 12시간에 최고로 증가하여 48 시간까지 지속되었다. 결 론: 폐암에서 기존의 항산화 단백과는 달리 12-kDa 및 절단형 thioredoxin 발현이 증가하며 이는 종양 조직내의 지속적인 산화 스트레스와 밀접한 연관이 있다. 특히 절단형 thioredoxin의 생물학적 기능을 고려할 때 절단형 thioredoxin 발현 증가는 종양 세포 증식을 통한 종양 성장에 더욱 의미있는 역할하리라고 생각된다.

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