• 제목/요약/키워드: Manganese superoxide dismutase

검색결과 70건 처리시간 0.034초

Carbon monoxide activation of delayed rectifier potassium currents of human cardiac fibroblasts through diverse pathways

  • Bae, Hyemi;Kim, Taeho;Lim, Inja
    • The Korean Journal of Physiology and Pharmacology
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    • 제26권1호
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    • pp.25-36
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    • 2022
  • To identify the effect and mechanism of carbon monoxide (CO) on delayed rectifier K+ currents (IK) of human cardiac fibroblasts (HCFs), we used the wholecell mode patch-clamp technique. Application of CO delivered by carbon monoxidereleasing molecule-3 (CORM3) increased the amplitude of outward K+ currents, and diphenyl phosphine oxide-1 (a specific IK blocker) inhibited the currents. CORM3-induced augmentation was blocked by pretreatment with nitric oxide synthase blockers (L-NG-monomethyl arginine citrate and L-NG-nitro arginine methyl ester). Pretreatment with KT5823 (a protein kinas G blocker), 1H-[1,-2,-4] oxadiazolo-[4,-3-a] quinoxalin-1-on (ODQ, a soluble guanylate cyclase blocker), KT5720 (a protein kinase A blocker), and SQ22536 (an adenylate cyclase blocker) blocked the CORM3 stimulating effect on IK. In addition, pretreatment with SB239063 (a p38 mitogen-activated protein kinase [MAPK] blocker) and PD98059 (a p44/42 MAPK blocker) also blocked the CORM3's effect on the currents. When testing the involvement of S-nitrosylation, pretreatment of N-ethylmaleimide (a thiol-alkylating reagent) blocked CO-induced IK activation and DL-dithiothreitol (a reducing agent) reversed this effect. Pretreatment with 5,10,15,20-tetrakis(1-methylpyridinium-4-yl)-21H,23H porphyrin manganese (III) pentachloride and manganese (III) tetrakis (4-benzoic acid) porphyrin chloride (superoxide dismutase mimetics), diphenyleneiodonium chloride (an NADPH oxidase blocker), or allopurinol (a xanthine oxidase blocker) also inhibited CO-induced IK activation. These results suggest that CO enhances IK in HCFs through the nitric oxide, phosphorylation by protein kinase G, protein kinase A, and MAPK, S-nitrosylation and reduction/oxidation (redox) signaling pathways.

The global regulator GacS of a biological bacterium Pseudomonas chlororaphis O6 regulates expression of the stationary-phase sigma factor rpoS and reduces survival in oxidative stress.

  • Kang, Beom-Ryong;Cho, Baik-Ho;Kim, Young-Cheol
    • 한국식물병리학회:학술대회논문집
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    • 한국식물병리학회 2003년도 정기총회 및 추계학술발표회
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    • pp.100.2-101
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    • 2003
  • The global regulator, GacS (global antibiotic and cyanide sensor kinase), was required for the increased resistance to hydrogen peroxide occurring as cultures of the rhizobacterium, P. chlororaphis O6, matured. Specific stationary-phase peroxidase and catalase isozymes were absent in the GacS mutant, whereas a manganese-superoxide dismutase isozyme was expressed earlier and to a great extent than wild type. In the wild type cell, transcript accumulation of rpoS was higher in late logarithmic-phase cells than cells from mid logarithmic- or stationary-phase. Transcripts from rpoS in the GacS mutant were reduced in each of these growth phases compared to the wild type expression. The down stream sequence from rpoS lacked sequences encoding a small RNA, rsmZ, found in other pseudomonads and implicated in control of genes activated by the GacS system. These findings suggest that GacS-mediated regulation of RpoS plays role in control of oxidative stress in P. chlororaphis O6 by as yet an unknown mechanism.

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Proteome Analysis of Bacillus subtilis When Overproducing Secretory Protein

  • Jang Mi;Park Byoung-Chul;Lee Do-Hee;Kho Chang-Won;Cho Sa-Yeon;Lee Baek-Rak;Park Sung-Goo
    • Journal of Microbiology and Biotechnology
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    • 제16권3호
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    • pp.368-373
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    • 2006
  • Bacillus subtilis and related Bacillus species are frequently used as hosts for the mass production of recombinant proteins. Accordingly, this study examined the cellular response of B. subtilis to the overexpression of a soluble secretory protein. As such, the lichenase derived from B. cereus was overexpressed in B. subtilis, initially localized in the cytoplasm as a mature form and then secreted into the medium. Thereafter, the proteome of B. subtilis was analyzed using 2D electrophoresis and MALDI-TOF mass spectrometry. The expression of several heat-shock proteins, such as dnaK and groEL, was increased under this condition. In addition, manganese superoxide dismutase and NADH dehydrogenase were also upregulated in the lichenase-secreting B. subtilis. Therefore, it was concluded that the transient accumulation of a secreted protein in B. subtilis before secretion acted as a stress on the cell, which in turn induced the expression of various protective proteins.

Study of Functional Verification to Abiotic Stress through Antioxidant Gene Transformation of Pyropia yezoensis (Bangiales, Rhodophyta) APX and MnSOD in Chlamydomonas

  • Lee, Hak-Jyung;Yang, Ho yeon;Choi, Jong-il
    • Journal of Microbiology and Biotechnology
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    • 제28권7호
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    • pp.1217-1224
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    • 2018
  • Seaweeds produce antioxidants to counteract environmental stresses, and these antioxidant genes are regarded as important defense strategies for marine algae. In this study, the expression of Pyropia yezoensis (Bangiales, Rhodophyta) ascorbate peroxidase (PyAPX) and manganese-superoxide dismutase (PyMnSOD) was examined by qRT-PCR in P. yezoensis blades under abiotic stress conditions. Furthermore, the functional relevance of these genes was explored by overexpressing them in Chlamydomonas. A comparison of the different expression levels of PyAPX and PyMnSOD after exposure to each stress revealed that both genes were induced by high salt and UVB exposure, being increased approximately 3-fold after 12 h. The expression of the PyAPX and PyMnSOD genes also increased following exposure to $H_2O_2$. When these two genes were overexpressed in Chlamydomonas, the cells had a higher growth rate than control cells under conditions of hydrogen peroxide-induced oxidative stress, increased salinity, and UV exposure. These data suggest that Chlamydomonas is a suitable model for studying the function of stress genes, and that PyAPX and PyMnSOD genes are involved in the adaptation and defense against stresses that alter metabolism.

Mn-SOD와 GST 유전자 다형성에 따른 유아의 산화손상지표의 분포 (Oxidative damage biomarker levels according to Mn-SOD and GST gene polymorphisms in preschool children)

  • 신유경;최지원;오세영;정자용
    • Journal of Nutrition and Health
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    • 제48권6호
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    • pp.468-475
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    • 2015
  • 우리나라 일부 건강한 유아를 대상으로 Mn-SOD Val16Ala, GSTP1 Ile105Val, GSTT1 present/null, GSTM1 present/null 유전자 다형성 분포를 살펴본 결과, Mn-SOD Val/Val형, GSTP1 Ile/Ile형, GSTT1 null 형, GSTM1 null 형이 주된 (major) 유전자형인 것으로 나타났다. 이 중 Mn-SOD Val/Val형은 Val/Ala 또는 Ala/Ala형에 비해 소변 8-OHdG 수준이 유의적이지는 않으나 높은 경향을 나타내었고, GSTP1 Ile/Ile형은 Ile/Val 또는 Val/Val형에 비해 소변 8-OHdG 수준이 유의적으로 낮았다. 간접흡연에의 노출 여부와 간접흡연-유전자 다형성의 상호 작용이 산화손상지표에는 유의적인 영향을 미치지 않는 것으로 나타났다. 이상의 결과로 볼 때 건강한 유아에서 GSTP1 Val allele 보유한 경우 산화적 손상에 대해 취약할 수 있음을 제시하며, 추후 대규모 연구를 통한 검증 및 이들 유전자형을 보유한 대상자를 위한 효과적인 영양 중재방안에 대한 고려가 필요할 것으로 사료된다.

참취 분말이 에탄올을 투여한 흰쥐의 항산화계에 미치는 효과 (The Effect of Powdered Herb of Aster scaber Thunb. on Antioxidant System in Ethanol-Treated Rats)

  • 이승은;성낙술;정태영;최미영;윤은경;정유진
    • 한국식품영양과학회지
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    • 제30권6호
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    • pp.1215-1219
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    • 2001
  • In vitro 항산화 활성이 확인된 참취가 생체 내에서도 활성을 나타내는 지를 확인하기 위해 대조군과 5%및 10% 참취 분말을 첨가한 식이를 4주간 횐쥐에 투여하면서 마지막 1주간 알콜로 산화적 스트레스를 유발한 후 희생시킨 흰쥐의 체중 증가량과 함께 체중에 대한 장기의 상대 중량, 간, 신장에서의 지질과산화, 항산화효소 활성, glutathione 및 혈청 알부민의 함량을 분석하였다. 4주간의 사육 후 체중 증가량은 대조군, 5% 참취첨가군 그리고 10% 참취첨가군의 순으로 높았으나 유의적인 차이는 없었으며 체중에 대한 상대적인 장기 중량 중에서 간, 비장은 대조군에 비해 참취 첨가군의 경우 더 낮은 비율을 나타내었다. 간에서 지질과산화로 생성되는 TBARS 함량은 대조군(66 $\mu\textrm{g}$)에 비해 5%(45 $\mu\textrm{g}$) 및 10% 참취 분말 식이군(35 $\mu\textrm{g}$)에서 참취 첨가량이 증가할수록 낮았다. Mn-SOD와 catalase활성은 참취 첨가군들에서 대조군보다 낮았으나 Cu, Zn-SOD와 glutathione peroxidase 활성 및 glutathione 함량은 실험군들간에 유의적인 차이를 나타내지 않았다. 신장에서는 Mn-SOD와 glutathione peroxidase 활성이 대조군보다 참취 첨가군에서 유사하거나 낮은 경향을 나타내었으나 Cu, Zn-SOD와 catalase의 활성 및 TBARS, glutathione의 함량은 실험군들간에 유의적인 차이를 보이지 않았다. 한편, 혈청 알부민의 함량은 실험군들간에 큰 차이가 없었다. 이상과 같은 실험 결과를 종합할 때 참취는 에탄올에 의해 유발된 산화적인 스트레스를 적절하게 방어하여 특히 간장에서의 지질과산화 및 Mn-SOD활성의 감소를 가져왔으며 그 효과는 참취의 첨가량에 비례하는 경향을 나타내었으므로 생체 안에서 알코올과 같은 산화적 스트레스에 대한 항산화제로서의 역할을 효과적으로 수행할 수 있을 것으로 기대된다.

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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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In-feed organic and inorganic manganese supplementation on broiler performance and physiological responses

  • de Carvalho, Bruno Reis;Ferreira Junior, Helvio da Cruz;Viana, Gabriel da Silva;Alves, Warley Junior;Muniz, Jorge Cunha Lima;Rostagno, Horacio Santiago;Pettigrew, James Eugene;Hannas, Melissa Izabel
    • Animal Bioscience
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    • 제34권11호
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    • pp.1811-1821
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    • 2021
  • Objective: A trial was conducted to investigate the effects of supplemental levels of Mn provided by organic and inorganic trace mineral supplements on growth, tissue mineralization, mineral balance, and antioxidant status of growing broiler chicks. Methods: A total of 500 male chicks (8-d-old) were used in 10-day feeding trial, with 10 treatments and 10 replicates of 5 chicks per treatment. A 2×5 factorial design was used where supplemental Mn levels (0, 25, 50, 75, and 100 mg Mn/kg diet) were provided as MnSO4·H2O or MnPro. When Mn was supplied as MnPro, supplements of zinc, copper, iron, and selenium were supplied as organic minerals, whereas in MnSO4·H2O supplemented diets, inorganic salts were used as sources of other trace minerals. Performance data were fitted to a linearbroken line regression model to estimate the optimal supplemental Mn levels. Results: Manganese supplementation improved body weight, average daily gain (ADG) and feed conversion ratio (FCR) compared with chicks fed diets not supplemented with Mn. Manganese in liver, breast muscle, and tibia were greatest at 50, 75, and 100 mg supplemental Mn/kg diet, respectively. Higher activities of glutathione peroxidase and superoxide dismutase (total-SOD) were found in both liver and breast muscle of chicks fed diets supplemented with inorganic minerals. In chicks fed MnSO4·H2O, ADG, FCR, Mn balance, and concentration in liver were optimized at 59.8, 74.3, 20.6, and 43.1 mg supplemental Mn/kg diet, respectively. In MnPro fed chicks, ADG, FCR, Mn balance, and concentration in liver and breast were optimized at 20.6, 38.0, 16.6, 33.5, and 62.3 mg supplemental Mn/kg, respectively. Conclusion: Lower levels of organic Mn were required by growing chicks for performance optimization compared to inorganic Mn. Based on the FCR, the ideal supplemental levels of organic and inorganic Mn in chick feeds were 38.0 and 74.3 mg Mn/kg diet, respectively.

Screening Differential Expressions of Defense-related Responses in Cold-treated 'Kyoho' and 'Campbell Early' Grapevines

  • Ahn, Soon Young;Kim, Seon Ae;Han, Jae Hyun;Kim, Seung Heui;Yun, Hae Keun
    • 원예과학기술지
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    • 제31권3호
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    • pp.275-281
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    • 2013
  • Low temperature is one of the major environmental factors that affect productivity including reduced growth and budding of vines, and changes of metabolic processes in grape (Vitis spp.). To screen the specific expression of abiotic stress-related genes against cold treatment in 'Kyoho' and 'Campbell Early' grapevines, expression of various defense-related genes was investigated by RT-PCR and real-time PCR. Among the 67 genes analyzed by RT-PCR and real-time PCR, 17 and 16 types of cDNA were up-regulated, while 5 and 6 types were down-regulated in cold-treated 'Kyoho' and 'Campbell Early' grapevines, respectively. Genes encoding carotene (Cart3564 and Cart4472), chalcone isomerase (CHI), cytochrome P450 (CYP), flavonol synthase (FLS), endo-${\beta}$-glucanase precursor (Glu), glutathione peroxidase (GPX), glutathione-S-transferase (GST), leucine-rich repeats (LRR), manganese superoxide dismutase (Mn-SOD), phenylalanine ammonia lyase (PAL), polygalacturonase-inhibiting protein (PGIP), proline rich protein 2 (PRP2), small heat shock protein (sHSP), temperature induced lipocalin (TIL), and thaumatin-like protein (TLP) were up-regulated, while those encoding CBF like transcription factor (CBF1), chitinase-like protein (CLP), cold induced protein (CIP), glycerol-3-phosphate acyltransferase (GPAT), and mitogen-activated protein kinase (MAPK) were down-regulated by low temperature treatment in both in 'Kyoho' and 'Campbell Early'.

Pretreatment with Lycopene Attenuates Oxidative Stress-Induced Apoptosis in Human Mesenchymal Stem Cells

  • Kim, Ji Yong;Lee, Jai-Sung;Han, Yong-Seok;Lee, Jun Hee;Bae, Inhyu;Yoon, Yeo Min;Kwon, Sang Mo;Lee, Sang Hun
    • Biomolecules & Therapeutics
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    • 제23권6호
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    • pp.517-524
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    • 2015
  • Human mesenchymal stem cells (MSCs) have been used in cell-based therapy to promote revascularization after peripheral or myocardial ischemia. High levels of reactive oxygen species (ROS) are involved in the senescence and apoptosis of MSCs, causing defective neovascularization. Here, we examined the effect of the natural antioxidant lycopene on oxidative stress-induced apoptosis in MSCs. Although $H_2O_2$ ($200{\mu}M$) increased intracellular ROS levels in human MSCs, lycopene ($10{\mu}M$) pretreatment suppressed $H_2O_2$-induced ROS generation and increased survival. $H_2O_2$-induced ROS increased the levels of phosphorylated p38 mitogen activated protein kinase (MAPK), Jun-N-terminal kinase (JNK), ataxia telangiectasia mutated (ATM), and p53, which were inhibited by lycopene pretreatment. Furthermore, lycopene pretreatment decreased the expression of cleaved poly (ADP ribose) polymerase-1 (PARP-1) and caspase-3 and increased the expression of B-cell lymphoma 2 (Bcl-2) and Bcl-2-associated X protein (Bax), which were induced by $H_2O_2$ treatment. Moreover, lycopene significantly increased manganese superoxide dismutase (MnSOD) expression and decreased cellular ROS levels via the PI3K-Akt pathway. Our findings show that lycopene pretreatment prevents ischemic injury by suppressing apoptosis-associated signal pathway and enhancing anti-oxidant protein, suggesting that lycopene could be developed as a beneficial broad-spectrum agent for the successful MSC transplantation in ischemic diseases.