• 제목/요약/키워드: sulfhydryl concentration

검색결과 37건 처리시간 0.027초

Evaluation of Pork Myofibrillar Protein Gel with Pork Skin Gelatin on Rheological Properties at Different Salt Concentrations

  • Lee, Chang Hoon;Chin, Koo Bok
    • 한국축산식품학회지
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    • 제39권4호
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    • pp.576-584
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    • 2019
  • This study was performed to evaluate the physicochemical properties of myofibrillar protein (MP) gels containing pork skin gelatin at different salt concentrations. MP gels were prepared to the different salt levels (0.15, 0.30, and 0.45 M) with or without 1.0% of pork skin gelatin. Cooking yield (CY), gel strength, shear stress were measured to determine the physical properties, and SDS-polyacrylamide gel electrophoresis, scanning electron microscopy, fourier transform infrared spectroscopy, sulfhydryl group and protein surface hydrophobicity was performed to figure out the structural changes among the proteins. The addition of gelatin into MP increased CYs and shear stress. MP at 0.45 M salt level had the highest CY and shear stress, as compared to MPs at lower salt concentrations. As the salt concentration of MP gels increased, the microstructure became the compact and wet structures, and decreased the amount of ${\alpha}-helix$/unordered structures and ${\beta}-sheet$. MP with gelatin showed a decreased amount of ${\alpha}-helix$/unordered structures and ${\beta}-sheet$ compared to MP without gelatin. The addition of gelatin to MP did not affect the sulfhydryl group, but the sulfhydryl group decreased as increased salt levels. MP mixtures containing gelatin showed a higher hydrophobicity value than those without gelatin, regardless of salt concentration. Based on these results, the addition of gelatin increased viscosity of raw meat batter and CY of MP gels for the application to low salt meat products.

갈근(葛根)의 항산화작용에 의한 위점막 보호효과와 내인성 Sulfhydryl 화합물의 영향 (Antioxidants Effects and Roles of Endogenous Sulfhydryls in the Gastric Mucosal Protection of Puerariae Radix)

  • 최호정;신흥묵
    • 동의생리학회지
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    • 제14권2호통권20호
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    • pp.1-9
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    • 1999
  • Ethanol induces compoundhemorrhagic gastric lesions and causes a dose-dependent decrease in the concentration of endogenous nonprotein sulfhydryls in rat gastric mucosa. Sulfhydryl-containing drugs protect rats from ethanol - induced gastric lesions. Based on this findings, we investigated the involvement of sulfhydryl compounds in the antioxidant effects of Puerariae radix, a traditional herbal medicine, against ethanol - induced gastric lesions in the absence and presence of iodoacetamide(IDA. sulfhydryl blocking agent) in rats. respectively. Because of the known role of sulfhydryls in gastric cytoprotection, its role in gastric antioxidation was of intrest. In vitro, Puerariae radix extract(PRE) reduced linoleic acid autooxidation and exert DPPH radical scavenging effect. In vivo. PRE increased antioxidants(SOD, catalase. GSH) and reduced lipid peroxide level in ethanol-induced gastric mucosal lesions. But treatment with PRE plus IDA significantly inhibit the antioxidant effects such as SOD and GSH but did not affect catalase levels. These results suggest that Puerariae radix may play roles in the gastric cytoprotection through antioxidant effects and increase of SOD activity and GSH level are dependent of endogenous sulfhydryls.

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Escherichia coli내의 ATP-dependent Clp효소의 ATPase 활성 연구 (Properties of ATPase Activity of ATP-dependent Clp Protease in Escherichia coli)

  • 김승호
    • 한국미생물·생명공학회지
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    • 제21권1호
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    • pp.30-35
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    • 1993
  • E.coli에서 발견된 ATP-dependent 효소인 Clp효소 중에서 Clp A의 ATPase 활성에 대한 영향을 검토하였다. Clp효소의 limiting amount으로 나타난 specific 활성은 일정하게 증가하는 효소의존성을 보였다. ATPase 활성을 나타내고 있는 ClP A는 casein에 의하여 활성화되어지며 2분자의 ATP가 결합하고 ATPase 활성을 나타내기 위한 ATP의 분해는 Clp효소의 단백질 분해 활성에 필요하다.

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홍화자약침액(紅花子藥鍼液)이 수은(水銀)에 의한 간세포(肝細胞) 손상(損傷)에 미치는 영향(影響) (The Effect of Carthami Semen Aquacupuncture on HgCl2-Induced Liver Cell Injury)

  • 박재영;윤현민;장경전;송춘호;안창범
    • Journal of Acupuncture Research
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    • 제19권5호
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    • pp.209-218
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    • 2002
  • Objective : This study was undertaken to examine whether Carthami Semen aquacupuncture (CSA) exerts protective effect against Hg-induced cell injury in rabbit liver. Methods : The cell injury was evaluated by ALT activity and lipid peroxidation was estimated by measuring malondialdehyde (MDA). Results : Hg caused an increase of ALT activity and lipid peroxidation in a dose-dependent-manner over concentrations of 0.1-1 mM, which were prevented by addition of 0.005% CSA. The protective effect of CSA was dose-dependent in concentration range of 0.001 to 0.01%. The increase of ALT activity and lipid peroxidation induced by 0.5 mM Hg were almost completely decreased by addition of 0.01% CSA. When the liver tissues were exposed to 0.5 mM Hg, GSH content was decreased, which was significantly restored by 0.01% CSA. 0.5 mM Hg caused decrease in the amount of total and nonprotein sulfhydryl groups, and 0.01% CSA prevented Hg-induced reduction of nonprotein sulfhydryl group but not protein sulfhydryl group. Conclusions : These results suggest that CSA exerts protective effect against Hg-induced cell injury by antioxidant action resulting from enhancement of nonprotein sulfhydryl group content including GSH in liver.

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BSH 존재시 중성자 및 ${\gamma}$-ray 조사에 따른 plasmid DNA의 손상 (Plasmid DNA damage by neutron and ${\gamma}$-ray in the presence of BSH)

  • 천기정;서원숙
    • Journal of Radiation Protection and Research
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    • 제31권2호
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    • pp.65-68
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    • 2006
  • 본 연구에서는 boron 화합물인 BSH(Boron Sulfhydryl Hydride)의 농도와 중성자 및 감마선 방사선 조사선량에 따른 plasmid DNA의 손상 정도를 관찰하였다. Plasmid는 pBR 322(2870 bp)와 ${\Phi}X174$ RF DNA(5386 bp)를 사용하였고 조사 후 DNA의 손상 정도는 agarose gel 전기영동 상에서 관찰하였다. 중성자 조사에서는 plasmid DNA의 손상 정도는 BSH의 농도 및 조사 선량이 증가함에 따라 증가하였으나 감마선 조사에서는 조사하지 않은 대조군과 큰 차이를 나타내지 않았다. Plasmid DNA의 손상 양상은 BSH 존재시 중성자 및 감마선 조사에서 다소 다름을 알 수 있었다.

모기유충에 살충력이 있는 Bacillus thuringiensis subsp. darmstadiensis 73E10-2의 delta-endotoxin의 화학적 처치에 따른 안정성 (Stability on Chemical Treatment of Niosquitocidal delta-endotoxin from Bacillus thuringiensis subsp. darmstadiensis 73E10-2)

  • 김광현;조경순;이광배
    • 한국미생물·생명공학회지
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    • 제19권3호
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    • pp.308-312
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    • 1991
  • B.thuringiensis subsp. darmstadiensis 73E10-2의 내독소에 대한 화학적 처리에서 고농도의 중성염(4M NaBr), 유기용매(50% acetone), 변성제(4M urea) 및 중성 계면활성제(10% triton X-100)로 내독소를 처리하였을 때 모기유충에 대한 독력의 소실이 거의 나타나지 않았으나, guanidine HCL이나 $CCl_4$ 또는 양이온 및 음이온 계면활성제로 처리함으로써 그 독력이 크게 소실되었다. 또한, 내독소의 sulfhydryl기의 변형은 모기유충에 대한 독력에 영향을 나타내지 못하였으나, lysine기 변형으로 내독소의 독력이 거의 완전히 소실되었다.

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Acetylcholine이 토끼 적혈구막의 NaK ATPase의 활성도에 대한 작용 (Action of Acetylcholine on Sodium-Potassium Activated ATPase in Rabbit Red Cell Membrane)

  • 고일섭
    • The Korean Journal of Physiology
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    • 제10권2호
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    • pp.1-10
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    • 1976
  • The action of acetylcholine on the sodium plus potassium activated ATPase activity in the rabbit red cell membrane has been investigated and the experiments were also designed to determine the mechanism of action of acetylcholine on the ATPase activity. The following results were observed. 1. The activity of the NaK ATPase from red cell membrane is inhibited by acetylcholine. 2. The ratio of inhibition of NaK ATPase by acetylcholine is decreased by raising the potassium concentration, and is increased by raising the sodium concentration. 3. The ATPase activity is increased by small amounts of calcium but inhibited by larger amounts. The ratio of inhibition of the enzyme by acetylcholine is increased by raising the calcium concentration. 4. The inhibitory action of acetylcholine on the NaK ATPase activity was not related to the sulfhydryl group of cysteine, the hydroxyl group of threonine, or the carboxyl group of aspartic acid. 5. The inhibitory action of acetylcholine on the ATPase activity is due to amino group of the enzyme of NaK ATPase.

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Saponin이 토끼 적혈구막의 $Na^{+}-K^{+}-ATPase$의 활성도에 미치는 영향 (Effect of Saponin on Sodium-Potassium activated ATPase in Rabbit Red Cell Membrane)

  • 강병남;고일섭
    • The Korean Journal of Physiology
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    • 제8권1호
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    • pp.67-76
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    • 1974
  • The effect of saponin on the sodium plus potassium activated ATPase activity was studied in the rabbit red cell ghosts and the experiments were also designed to determine the mechanism of action of saponin on the APTase activity. The following results were observed. 1. The ATPase activity of rabbit red cell ghosts is inhibited by low concentration of saponin but increased by high concentration. The activating effect of saponin on the $Na^{+}-K^{+}-ATPase$ activity is inhibited by ouabain but the stimulation of the $Mg^{++}-ATPase$ by high concentration of saponin is not inhibited by ouabain. 2. The activity ratio of $Na^{+}-K^{+}-ATPase$ by high concentration of saponin is decreased by raising the potassium concentration, and is increased by raising the sodium concentration. 3. The ATPase activity is increased by small amounts of calcium but inhibited by larger amounts. The activity ratio of the enzyme by saponin is decreased by raising the calcium concertration 4. The action on the ATPase activity was not related to the amino group of lysine, the hydroxyl group of threonine, the imidazole group of histidine, or the carboxyl group of aspartic acid. 5. The action of saponin on the ATPase activity is due to sulfhydryl group of the enzyme of $Na^{+}-K^{+}-ATPase$.

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적혈구막의 NaK ATPase의 활성도에 대한 ascorbic acid의 작용 (Action of Ascorbic acid on Sodium-Potassium activated ATPase in Red Cell Membrane)

  • 고일섭
    • The Korean Journal of Physiology
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    • 제12권1_2호
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    • pp.15-23
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    • 1978
  • The action of ascorbic acid on the sodium Plus potassium activated ATPase activity in the rabbit red cell membrane has been investigated and the experiments were also designed to determine the mechanism of action if ascorbic acid on the ATPase activity The following results were observed. 1. The activity of the NaK ATPase from red cell membrane is stimulated by ascorbic acid and the concentration of ascorbic acid for maximal activity is about 8 mM. 2. The activating effect of ascorbic acid on the ATPase activaty, with a given concentration of sodium in the medium, is increased by raisins the potassium concentration but activity ratio is decreased. 3. The activating effect of ascorbic acid on the ATPase activity, with a given concentration of potassium in the medium, is increased by raising the sodium concentration but activity ratio is decreased. 4. The action of ascorbic acid on the ATPase activity is stimulated by calcium ions and activity ratio is increased by raising the calcium concentration. 5. The activating effect of ascorbic acid on the ATPase activity was not related to the sulfhydryl group of cysteine or the hydroxyl group of threonine. 6. The activating effect of ascorbic acid on the ATPase activity is due to amino group and carboxyl group of the enzyme of NaK ATPase.

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토끼 적혈구막의 NaK ATPase의 활성도에 대한 aconite의 작용 (Action of Aconite on Sodium-Potassium Activated ATPase in Rabbit Red Cell Membrane)

  • 고일섭
    • The Korean Journal of Physiology
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    • 제10권1호
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    • pp.15-24
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    • 1976
  • The action of aconite on the sodium plus potassium activated ATPase activity in the rabbit red cell membrane has been investigated and the experiments were also designed to determine the mechanism of action of aconite on the ATPase activity. The following results were observed. 1. The activity of the NaK ATPase from red cell membrane is stimulated by aconite, and the concentration of aconite for maximal activity is about 80 mg%. The pH optimum for the aconite sensitive component is 8.0. 2. The activating effect of aconite on the ATPase, with a given concentration of sodium in the medium, is increased by raising the potassium concentration but activity ratio is decreased. 3. The activating effect of aconite on the ATPase, with a given concentration of potassium in the medium, is increased by raising the sodium concentration but activity ratio is decreased. 4. The action of aconite on the ATPase activity is inhibited by calcium ions and the effect of inhibition is increased by small amounts of calcium but decreased by larger amounts. 5. The activating effect of aconite on the ATPase was not related to the sulfhydryl group of cysteine, the amino group of lysine, the hydroxyl group of threonine or the imidazole group of histidine. 6. The action of aconite on the ATPase activity is due to carboxyl group of the enzyme of NaK ATPase.

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