• 제목/요약/키워드: thiol-specific

검색결과 70건 처리시간 0.03초

허혈심근 Xanthine Oxidase 의 전환에 관한 연구 (Conversion of Myocardial Xanthine Oxidase in Ischemic Heart of Rat)

  • 박창권
    • Journal of Chest Surgery
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    • 제21권5호
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    • pp.803-815
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    • 1988
  • The present experiments were performed to confirm the hypothesis that xanthine oxidase[XOD], as a source and mechanism of oxygen radical production, plays an important role in the genesis of the reperfusion injury of ischemic myocardium. The experimental ischemic-reperfusion injury was induced in isolated, Langendorff preparations of rat hearts by 60 min. Of global ischemia with aortic clamping followed by 20 min. of reperfusion with oxygenated Krebs-Henseleit solution[pH 7.4, 37*C]. The results were as follows: 1. The releases of creatine phosphokinase and a lipid peroxidation product, malondialdehyde[MDA] into the coronary effluent were abruptly increased upon reperfusion of ischemic hearts. The increases of the enzyme and MDA were suppressed significantly in the hearts removed from rats pretreated with allopurinol, a specific XOD inhibitor[20mg/kg, oral, 24 hrs and 2 hrs before study]. This effect of allopurinol was comparable to that of oxygen radical scavengers, superoxide dismutase[5, 000U] and catalase[12, 500 U]. 2. The increased SOD-inhibitable reduction of ferricytochrome C, which was infused to the hearts starting with reperfusion, was significantly suppressed in allopurinol pretreated hearts. 3. Activities of myocardial XOD were compared in the normal control hearts and the ischemic ones. Total enzyme activities were not different in both hearts. However, comparing with the control, the ischemic ones showed higher activity in 0-form and lower activities in D-form and D/O-form. 4. In the ischemic hearts, phenylmethylsulfonyl fluoride, a serine protease inhibitor, prevented significantly the increase of 0-form and the decreases of D and D/O-form, while thiol reagents did not affect the changes of the enzyme. 5. The increase of 0-form and the decreases of D and D/0-form were not significant in both calcium-free perfused and pimozide, a calmodulin inhibitor, treated ischemic hearts. 6. The SOD-inhibitable reduction of ferricytochrome C were suppressed by PMSF and pimozide treatment as well as by calcium-free perfusion. It is suggested from these results that in the ischemic rat myocardium, xanthine oxidase is converted to oxygen radical producing 0-form by calcium, calmodulin-dependent proteolysis and plays a contributing role in the genesis of ischemic-reperfusion injury by producing oxygen free radicals.

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Interaction of Cytochrome c and Cytochrome c Oxidase Studied by Spin-Label EPR and Site-Directed Mutagenesis

  • Park, Hee-Young;Chun, Sun-Bum;Han, Sang-Hwa;Lee, Kwang-Soon;Kim, Kyung-Hoon
    • BMB Reports
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    • 제30권6호
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    • pp.397-402
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    • 1997
  • A thiol-specific spin label was attached to cysteine-102 of yeast cytochrome c and electron paramagnetic resonance (EPR) spectra were measured as a function of added cytochrome c oxidase concentration. The intensity decreased due to line broadening as cytochrome c formed a complex with cytochrome c oxidase and reached a minimum when the ratio of cytochrome c to cytochrome c oxidase became one. Replacement of either Lys-72 or Lys-87 of cytochrome c by Glu did not result in a significant change in binding affinity. Interestingly the K72E mutant, unlike K87E, had a much lower rate of electron transfer than the wild type. These results indicate that many positively charged residues as a group participate in complex formation but Lys-72 might be important for cytochrome c to be locked in an orientation for an efficient electron transfer. A stoichiometry of 1 was also confirmed by optical absorption of the cytochrome c-cytochrome c oxidase complex which had been run through a gel chromatography cloumn to remove unbound cytochrome c. The EPR spectrum of this 1:1 complex, however, was a mixture of two components. This explains a biphasic kinetics for a single binding site on cytochrome c oxidase without invoking conformational transition.

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4-Hydroxynonenal Promotes Growth and Angiogenesis of Breast Cancer Cells through HIF-1α Stabilization

  • Li, Yao-Ping;Tian, Fu-Guo;Shi, Peng-Cheng;Guo, Ling-Yun;Wu, Hai-Ming;Chen, Run-Qi;Xue, Jin-Ming
    • Asian Pacific Journal of Cancer Prevention
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    • 제15권23호
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    • pp.10151-10156
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    • 2015
  • 4-Hydroxynonenal (4-HNE) is a stable end product of lipid peroxidation, which has been shown to play an important role in cell signal transduction, while increasing cell growth and differentiation. 4-HNE could inhibit phosphatase and tensin homolog (PTEN) activity in hepatocytes and increased levels have been found in human invasive breast cancer. Here we report that 4-HNE increased the cell growth of breast cancer cells as revealed by colony formation assay. Moreover, vascular endothelial growth factor (VEGF) expression was elevated, while protein levels of hypoxia inducible factor 1 alpha (HIF-$1{\alpha}$) were up-regulated. Sirtuin-3 (SIRT3), a major mitochondria NAD+-dependent deacetylase, is reported to destabilize HIF-$1{\alpha}$. Here, 4-HNE could inhibit the deacetylase activity of SIRT3 by thiol-specific modification. We further demonstrated that the regulation by 4-HNE of levels of HIF-$1{\alpha}$ and VEGF depends on SIRT3. Consistent with this, 4-HNE could not increase the cell growth in SIRT3 knockdown breast cancer cells. Additionally, 4-HNE promoted angiogenesis and invasion of breast cancer cells in a SIRT3-dependent manner. In conclusion, we propose that 4-HNE promotes growth, invasion and angiogenesis of breast cancer cells through the SIRT3-HIF-$1{\alpha}$-VEGF axis.

Expressed Protein Ligation of 5-Enolpyruvylshikimate-3-phosphate (EPSP) Synthase: An Application to a Protein Expressed as an Inclusion Body

  • Kim, Hak-Jun;Shin, Hee-Jae;Kim, Hyun-Woo;Kang, Sung-Ho;Kim, Young-Tae
    • Bulletin of the Korean Chemical Society
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    • 제28권12호
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    • pp.2303-2309
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    • 2007
  • Expressed protein ligation (EPL) technique, joining recombinantly expressed proteins to polypeptides, has been widely adopted for addressing various biological questions and for drug discovery. However, joining two recombinant proteins together is sometimes difficult when proteins are expressed insoluble and unrefoldable, because ligation-active proteins via intein-fusion are obtainable when they are folded correctly. We overcame this limitation coexpressing target protein with additional methionine aminopeptidase (MAP) which enhances removal of the initiation methionine of recombinantly expressed protein. Our approach demonstrated that two domains of 46 kDa 5-Enolpyruvylshikimate-3-phosphate (EPSP) synthase, a target of herbicide glyphosate, were successfully joined by native chemical ligation, although its C-terminal domain was expressed as an inclusion body. The intein-fused N-terminal fragment of EPSP synthase (EPSPSN, residues 1-237) was expressed and the ligation-active thioester tagged N-terminal fragment (EPSPSN-thioester) was purified using a chitin affinity chromatography and mercapto-ethanesulphonate (MESNA) as intein thiolysis reagent. Its Cterminal fragment (EPSPSC, residues Met237-238CYS-427), expressed as an inclusion body, was prepared from an additional MAP-expressing strain. Protein ligation was initiated by mixing ~1 mM of EPSPSN-thioester with ~2 mM of EPSPSCCYS (residues 238CYS-427). Also we found that addition of 2% thiophenol increased the ligation efficiency via thiol exchange. The ligation efficiency was ~85%. The ligated full-length EPSP synthase was dissolved in 6 M GdHCl and refolded. Circular dichroism (CD) and enzyme activity assay of the purified protein showed that the ligated enzyme has distinct secondary structure and ~115% specific activity compared to those of wild-type EPSP synthase. This work demonstrates rare example of EPL between two recombinantly expressed proteins and also provides hands-on protein engineering protocol for large proteins.

Activation of JNK and c-Jun Is Involved in Glucose Oxidase-Mediated Cell Death of Human Lymphoma Cells

  • Son, Young-Ok;Jang, Yong-Suk;Shi, Xianglin;Lee, Jeong-Chae
    • Molecules and Cells
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    • 제28권6호
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    • pp.545-551
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    • 2009
  • Mitogen-activated protein kinases (MAPK) affect the activation of activator protein-1 (AP-1), which plays an important role in regulating a range of cellular processes. However, the roles of these signaling factors on hydrogen peroxide ($H_2O_2$)-induced cell death are unclear. This study examined the effects of $H_2O_2$ on the activation of MAPK and AP-1 by exposing the cells to $H_2O_2$ generated by either glucose oxidase or a bolus addition. Exposing BJAB or Jurkat cells to $H_2O_2$ affected the activities of MAPK differently according to the method of $H_2O_2$ exposure. $H_2O_2$ increased the AP-1-DNA binding activity in these cells, where continuously generated $H_2O_2$ led to an increase in mainly the c-Fos, FosB and c-Jun proteins. The c-Jun-$NH_2$-terminal kinase (JNK)-mediated activation of c-Jun was shown to be related to the $H_2O_2$-induced cell death. However, the suppression of $H_2O_2$-induced oxidative stress by either JNK inhibitor or c-Jun specific antisense transfection was temporary in the cells exposed to glucose oxidase but not to a bolus $H_2O_2$. This was associated with the disruption of death signaling according to the severe and prolonged depletion of reduced glutathione. Overall, these results suggest that $H_2O_2$ may decide differently the mode of cell death by affecting the intracellular redox state of thiol-containing antioxidants, and this depends more closely on the duration exposed to $H_2O_2$ than the concentration of this agent.

Identification of Differentially Displayed Genes of a Pseudomonas Resistant Soybean (Glycine max)

  • Kang, Sang-Gu;Cha, Hyeon-Wook;Chang, Moo-Dng;Park, Eui-Ho
    • The Plant Pathology Journal
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    • 제19권5호
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    • pp.239-247
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    • 2003
  • In Korea, a local soybean (Glycine max) genotype 56l. was found to be strongly resistant to a virulent bacterial strain of a Pseudomonas sp. SN239. Specific genes involved in the resistance of the soybean genotype 561 were identified and the pattern of gene expression against the Pseudomonas infection was analyzed using differential-display reverse transcription PCR (DDRT-PCR). More than 126 cDNA fragments representing mRNAs were induced within 48 hours of bacteria inoculation. Among them, 28 cDNA fragments were cloned and sequenced. Twelve differentially displayed clones with open reading frames had unknown functions. Sixteen selected cDNA clones were homologous to known genes of other organisms. Some of the identified cDNAs were pathogenesis-related (PR) genes and PR-like genes. These cDNAs included a putative calmodulin-binding protein; an endo-l,3-1,4-$\bate$-D-glucanase; a $\bate$-1,3-endoglucanase; a $\bate$-1,3-exoglucanase; a phytochelatin synthetase-like gene; a thiol protease; a cycloartenol synthase; and a putative receptor-like serine/threonine protein kinase. Among them, four genes were found to be putative PR genes induced significantly by the Pseudomonas infection. These included a calmodulin-binding protein gene, a $\bate$-1,3-endoglucanase gene, a receptor-like serine/threonine protein kinase gene, and pS321 (unknown function). These results suggest that the differentially expressed genes may mediate the strong resistance of soybean 561 to the strain SN239 of Pseudomonas sp.

The Biochemical Characterization of D-Hydroxyisovalerate Dehydrogenase, a Key Enzyme in the Biosynthesis of Enniatins

  • Lee, Chan; Zocher, Rainer
    • BMB Reports
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    • 제29권6호
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    • pp.493-499
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    • 1996
  • The biochemical properties of purified D-hydruxyisovalerate dehydrogenase from Fusarium sambucinum was elucidated. D-Hydroxyisovalerate dehydrogenase produced solely D-hydroxyisovalerate from 2-ketoisovalerate. The isoelectric point of the purified enzyme was 7.0. The enzyme was highly specific with 2-ketoisovalerate ($K_{m}=0.188$ mM, $V_{max}=8.814$ mmol/min mg) and 2-keto-3-methyl-n-valerate ($K_{m}=0.4$ mM, $V_{max}=1.851$ mmol/min mg) for the reductive reaction. This was also seen by comparing D-hydroxyisovalerate ($K_{m}=1.667$ mM, $V_{max}=0.407$ mmol/min mg) and D-hydroxy-3-methyl-n-valerate ($K_{m}=6.7$ mM, $V_{max}=0.648$ mmol/min mg) for the oxidative reaction. Thiol blocking reagents, such as iodoacetamide, N-ethylmaleimide and p-chloromecuribenzoate inhibited about 80% of enzyme activity at 0.02 mM, 50 mM and 50 mM, respectively. The enzyme activity was also inhibited by the addition of 0.1 mM of various metal ions, such as $Fe^{2+}$ (67%), $Cu^{2+}$ (88%), $Zn^{2+}$ t (76%) and $Mg^{2+}$ (9%). The enzyme was stable over three months in 50 mM potassium phosphate buffer (pH 5~7) at $-80^{\circ}C$. However the purified enzyme lost 30% of its activity in the same buffer after 24 h at $4^{\circ}C$. The studies about thermal inactivation of D-hydroxyisovalerate dehydrogenase exhibit 209.2 kJ/M of activation enthalpy and 0.35 kJ/mol K of activation entropy.

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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.

Candida sp. L-16이 생산하는 D-Xylulokinase의 정제 및 특성 (Purification and Characterization of the D-xylulokinase from Candida sp. L-16)

  • 이종수;주길재
    • 한국식품저장유통학회지
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    • 제9권4호
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    • pp.429-433
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    • 2002
  • Candida sp. L-16 균주가 생산하는 D-xylulokinase는 배양균체를 초음파 파쇄한 조효소액으로 하여 황산암모늄 염석, DEAE-cellulose, chromatography, Sephadex G-100과 Sephadex G-200 gel filtration 과정으로 정제하여 최종 수율 11.2%로 약 23.2배 정제하였다. 정제 효소의 분자량은 SDS-PAGE로 분석한 결과 분자량은 75,000 dalton으로, Sephadex G-200겔 여과에 의해 150,000 dalton으로 나타나 dimer로 확인되었다. 효소 활성에 미치는 최적 반응 온도는 4$0^{\circ}C$로 나타났고, 온도안정성은 비교적 불안정하여 3$0^{\circ}C$이상에서는 빠르게 실활되었다. 정제 효소의 최적 반응 pH는 pH 8.0이었고, pH 7.0에서 pH 9.0 사이에서 비교적 효소활성이 높았다. 본 효소는 D-xylulose, D-arabinose, D-ribose등에서는 높은 기질특이성을 가지고 있었으나 D-xylose, D-glucose, L-arabinose 등은 기질로서 작용하지 못하였다. 정제 효소의 활성화 에너지값(Ea)은 $25^{\circ}C$ 내지 4$0^{\circ}C$$^{\circ}C$의 온도 범위에서 4.75kcal/mol이었다. 효소의 활성화제로는 EDTA, cysteine-HCl, DTT, glutathione 등이 존재하며 억제제로는 6-phosphogluconic acid, 2-koeto-gluconic acid 등으로 나타났다.

항산화반응을 유발하는 물질의 검색에 적용할 수 있는 형질전환 마우스 생산을 위한 새로운 Prx 6/Luc 벡터시스템의 제조 및 폐암세포주에서 반응성 확인 (Construction and In vitro Study of a Prx 6/Luc Vector System for Screening Antioxidant Compounds in the Transgenic Mice)

  • 이영주;남소희;김지은;황인식;이혜련;최선일;곽문화;이재호;정영진;안범수;황대연
    • 생명과학회지
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    • 제23권2호
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    • pp.167-174
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    • 2013
  • Peroxiredoxin 6 (Prx 6)는 티올-특이적 항산화 단백질에 속하는 효소로서 산화적 스트레스로부터 세포를 보호할 뿐만 아니라 과산화물의 환원작용을 촉매한다. 본 연구에서는 인간 Prx 6의 promoter를 이용하여 항산화반응을 유발하는 추출물을 효과적으로 스크리닝하는 새로운 형질전환마우스를 개발하는 최종목적을 달성하기 위한 중간단계로서, hPrx 6/Luc 벡터를 개발하고, 이들 벡터의 안정적 발현과 성공적 반응성을 세포주를 이용하여 확인하고자 하였다. 이를 위해, 인간 Prx 6 promoter를 증폭하여 luciferase cDNA와 결합한 hPrx 6/Luc 벡터를 제조하였으며, 제조된 벡터를 제한효소 절단과 염기서열분석을 통해 확인하였다. hPrx 6/Luc 벡터는 NCI-H460 세포에 transfection한 후 인삼(KWG), 홍삼(KRG), 맥문동(LP), 홍문동(RLP)의 4가지 추출물을 처리하여 luciferase activity를 측정하였다. 그 결과, luciferase activity는 4가지 추출물에 의해 효과적으로 증가하였고, 특히 KRG과 LP를 처리한 그룹이 KWG과 RLP를 처리한 그룹보다 높았다. 또한, luciferase activity는 RLP 농도에 의존적으로 증가하였다. hPrx 6/Luc 벡터와 hPrx 6 mRNA반응의 차이를 비교하기 위해, 4가지 추출물을 처리한 후 hPrx 6 mRNA의 양을 RT-PCR로 분석하였다. 그러나, hPrx 6 mRNA의 양은 비록 고농도의 RLP 추출물에서는 약간의 증가가 관찰되었지만, 대조군에 비하여 4가지 추출물에서 유의적인 차이가 없었다. 한편, 4가지 추출물에 의한 superoxide dismutase (SOD) 활성의 변화는 비록 일부 차이는 있었지만 hPrx 6/Luc 벡터와 유사한 반응을 나타내었다. 따라서, 이러한 결과는 hPrx 6/Luc 벡터는 성공적으로 제조되었고, 세포내에서 안정적으로 발현하면서 항상화물질에 민감하고 정량적으로 반응할 수 있음을 제시하고 있다. 더불어, 이러한 세포주에서 확인결과를 바탕으로 형질전환마우스가 개발된다면, 항산화물질을 정량적으로 스크리닝하는 시스템으로 적용가능성이 매우 높음을 보여주고 있다.