• 제목/요약/키워드: Kinetics and mechanism

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Kinetics and Mechanism of Electron Transfer Reaction: Oxidation of Sulfanilic Acid by N-Chloro-p-Toluene Sulfonamide in Acid Perchlorate Medium

  • Sailani, Riya;Bhasin, Meneka;Khandelwal, C.L.;Sharma, P.D.
    • Bulletin of the Korean Chemical Society
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    • 제35권1호
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    • pp.111-116
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    • 2014
  • The kinetics and mechanism of oxidation of sulfanilic acid by N-chloro-p-toluene sulfonamide (chloramine-T) have been studied in acid medium. The species of chloramine-T were analysed on the basis of experimental observations and predominantly reactive species was taken into account for proposition of most plausible reaction mechanism. The derived rate law (1) conforms to such a mechanism. $$-\frac{d[CAT]}{dt}=\frac{kK_1[RNHCl][SA]}{K_1+[H^+]}$$ (1) All kinetic parameters were evaluated. Activation parameters such as energy and entropy of activation were calculated to be $(61.67{\pm}0.47)kJmol^{-1}$ and $(-62.71{\pm}2.48)kJmol^{-1}$ respectively employing Eyring equation.

Physiological characterization of kinetics and action mechanism of vibrio hemolysin

  • Choe, Young-Chool;Jeong, Cajin
    • Journal of Microbiology
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    • 제33권4호
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    • pp.289-294
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    • 1995
  • The action mechanism of hemolysin rendering virulency of Vibrio anguilarum has not clarified as yet, even though there were several possible factors explained. We have studied hemolytic kinetics performed by hemolysin from V. anguillarum strain V7 as well as binding of hemolysin to RBC membrane. Maximal rate of hemolysis and duration of lag phase were directly and inversly correlated to the concentration of hemolysin used. Hemolysin molecules are known to bind consumptively with proper diameter, while other protectants with smaller diameter could not. In conclusion, hemolysin should bind irreversibly to RBC membrane exert hemolysis distorting osmotic pressure. The binding could be hindered by spatial structure of the RBC surfacem which might be caused by sialic acid.

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Kinetics and Mechanism of Aminolysis of Phenyl Benzoates in Acetonitrile

  • 고한중;이호찬;이해황;이익춘
    • Bulletin of the Korean Chemical Society
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    • 제16권9호
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    • pp.839-844
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    • 1995
  • The kinetics and mechanism of the reactions of phenyl benzoates with benzylamines and pyrrolidine are investigated in acetonitrile. The variations of ρX (ρXY>0) and ρZ (ρYZ<0) with respect to the substituent in the substrate (σY) indicate that the reactions proceed through a tetrahedral intermediate, T±, with its breakdown in the rate determining step. The large magnitudes of ρZ, ρXY and ρYZ as well as the effects of secondary kinetic isotope effects involving deuterated nucleophiles are also in line with the proposed mechanism.

Kinetics and Mechanism of Ruthenium(III) Catalyzed Oxidation of Butanone and Uncatalyzed Oxidation of Cychlohexanone by Cerium(IV) in Acid Sulphate Medium

  • Sharma, Priyamvada;Hemkar, Shalini;Khandelwal, C.L.;Sharma, P.D.
    • 대한화학회지
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    • 제56권1호
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    • pp.28-33
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    • 2012
  • The kinetics of ruthenium(III) chloride catalyzed oxidation of butanone and uncatalyzed oxidation of cyclohexanone by cerium(IV) in sulphuric acid medium have been studied. The kinetic rate law(I) in case of butanone conforms to the proposed mechanism. $$-\frac{1}{2}\frac{d[Ce^{IV}]}{dt}=\frac{kK[Ru^{III}][butanone]}{1+K[butanone]}$$ (1). However, oxidation of cyclohexanone in absence of catalyst accounts for the rate eqn. (2). $$-\frac{1}{2}\frac{[Ce^{IV}]}{dt}=\frac{(k_1+k_1K^'[H^+])[Ce^{IV}][Cyclohexanone]}{1+K_3[HSO_4^-]}$$ (2) Kinetics and activation parameters have been evaluated conventionally. Kinetically preferred mode of reaction is via ketonic and not the enolic forms.

The Kinetics and Mechanism for the Oxidation of Nicotinic Acid by Peroxomonosulfate in Acidic Aqueous Medium

  • Agrawal, Anju;Sailani, Riya;Gupta, Beena;Khandelwal, C.L.;Sharma, P.D.
    • 대한화학회지
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    • 제56권2호
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    • pp.212-216
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    • 2012
  • The kinetics of oxidation of nicotinic acid by peroxomonosulfate (PMS) has been studied in acetate buffers. Stoichiometry of the reaction corresponds to the reaction of one mole of the oxidant with a mole of nicotinic acid. N${\rightarrow}$O product has been confirmed both by UV visible and IR spectroscopy. The reaction is second order viz. first order with respect to each reactant. Activation parameters have also been evaluated. A plausible reaction mechanism is mentioned and the derived kinetic rate law accounts for experimental observations.

Kinetics and Mechanism of Mutant O-acetylserine Sulfhydrylase-A (C43S) from Salmonella typhimurium LT-2

  • Yoon, Moon-Young
    • BMB Reports
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    • 제29권3호
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    • pp.210-214
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    • 1996
  • The pH dependence of the kinetic parameters of mutant O-acetylserine sulfhydrylase (OASS) from Salmonella typhimurium LT-2 has been determined in order to obtain information on the chemical mechanism. The initial velocity pattern obtained by varying the concentrations of OAS at several fixed concentrations of TNB, shows an intersection on the left of the ordinate at pH 7.0, indicating that the kinetic mechanism is a sequential mechanism in which substrate inhibition by OAS is observed while the wild type enzyme showed a ping pong mechanism. The values of $V/E_t$, $V/K_{OAS}E_{t}$ and $V/K_{TNB}E_{t}$ decreased by about 68%, 14% and 16% as compared with the wild type enzyme. The $V/K_{OAS}E_{t}$ is a pK of 6.5 on the acid side of the pH profile, and the $V/K_{TNB}$ is pH independent. As compared with the wild type enzyme, the pKs in the V/K profiles are shifted, reflecting that binding of the cofactor in free E:OAS is less asymmetric.

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Nucleiphilic Substitution Reactions of Thiophenyl Dimethylacetates and Trimethylacetates wkth Benzylamines in Acetonitfile

  • 오혁근;박치열;이재문;이익춘
    • Bulletin of the Korean Chemical Society
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    • 제22권4호
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    • pp.383-387
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    • 2001
  • The kinetics and mechanism of the reactions of thiophenyl dimethylacetates (TDA) and trimethylacetates (TTA) with benzylamines in acetonitrile are studied. The reactions are first order in both the amine and the substrate. Relatively large values of ${\beta}X(\betanuc$ = 1.1-1.5; TDA and 1.1-1.5; TTA) and ${\beta}Z({\beta}lg$ = -1.8~-2.0; DTA and -1.3~-1.6; TTA) for benzylamines, significantly large kH/kD values (=1.2-1.5; DTA and 1.2-1.5; TTA) involving deuterated benzylamines, and large ${\rho}XZ$ (=0.82; TDA and 1.05; TTA) values are interpreted to indicate stepwise acyl transfer mechanism, but with the hydrogen bonded four center type transition state for benzylamine. The relatively greater magnitudes of ${\rho}XZ$ and the secondary kinetic isotope effects involving deuterated nucleophiles are in line with the proposed mechanism.

소수성 상호작용이 HubWA 단백질의 폴딩 반응에 끼치는 영향 (Contribution of Hydrophobic Interactions to HubWA Folding Reaction)

  • 박순호
    • 대한화학회지
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    • 제63권6호
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    • pp.427-434
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    • 2019
  • 단백질 폴딩 연구에 유용하도록 유비퀴틴 단백질의 페닐알라닌 45를 트립토판으로, 발린 26을 알라닌으로 변이시킨 HubWA 단백질을 모델로 삼아 소수성 상호작용이 단백질 폴딩 반응에 끼치는 영향을 탐구하였다. HubWA의 소수성 아미노산 중 14 개를 알라닌으로 치환한 변이 단백질을 제조하였고 이들 중 폴딩 연구에 적절한 4 개의 변이 단백질(V5A, I13A, V17A, I36A)을 얻어서 폴딩 반응의 진행 과정을 stopped-flow 장치로 측정하였다. 변이 단백질 V17A의 폴딩 반응은 HubWA와 마찬가지로 three-state 메커니즘을 따르며, V5A, I13A, I36A의 반응은 two-state 폴딩 메커니즘을 따르는 것으로 관찰되었다. 이는 HubWA 단백질의 폴딩 반응은 지엽적으로 구조적인 안정성을 지닌 부분이 존재하는 중간 단계가 먼저 형성된 다음 이들이 서로 퍼즐을 맞추는 것과 같은 방식으로 폴딩이 일어나는 collision-diffusion 메커니즘을 따르다가 소수성이 약한 아미노산으로 치환하였을 때 구조적인 안정성을 지닌 중간 단계가 관찰되지 않지만 폴딩 핵의 형성과 핵 주위로 native 구조가 형성되는 반응이 짝지어서 일어나는 nucleation-condensation 메커니즘으로 전환되는 것으로 해석되었다. 이러한 관찰은 단백질의 폴딩 경로는 지엽적인 구조의 안정성에 따라 서로 다른 메커니즘을 띨 수 있음을 시사한다.

열보호제와 열증감제의 존재하에서 온열처리에 의한 SCK 종양세포의 치사기작 (SCK Tumor Cell Killing by Hyperthermia in the Presence of Heat Protector and Heat Sensitizer)

  • 강만식;서미영;정주영
    • 한국동물학회지
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    • 제32권2호
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    • pp.134-141
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    • 1989
  • 본 연구는 온열처리에 의한 세포치사의 mechqnism을 밝히기 위해서 heat sensitizer인 low pH와 heat protector인 glycerol을 이용하여 cell lethlity와 단백질의 분해 kinetics를 검토한 것이다. 41-45도씨의 온열처리 중에서 41도씨를 제외한 전 온도범위에서 sensitizer와 protector의 효과가 뚜렷이 나타났으며, protector이 효과는 cell lethality와 단백질분해 모두에서 sensitizer의 효과에 비해서 현저히 나타나서 sensitizer와 protector의 작용기작은 서로 다를 것으로 생각되었다. 즉, 43-44도씨에서 cell inactivation energy는 정상, low pH, glycerol 상태에서 각각 239, 190, 317 kcal/mole의 값을 보였다. 단백질분해 kinetics의 경우에도 대체적인 경향성은 cell inactivation kinetics와 유사하였으나, 직접적인 연관성은 발견할 수 없었다. 이와 같은 결과로 미루어 볼 때, cell lethality와 단백질 분해의 mechanism 사이에 직접적인 관계는 없고, 주로 막단백질로 추정되는 단백질의 inactivation에 의한 세포내 환경의 변화에 의해서 2차적으로 세포치사가 일어나는 것으로 추정할 수 있으며, 정확한 mechanism을 밝히기 위해서는 DNA polymerase를 비롯한 몇가지 가능한 표적에 대한 연구가 이루어져야 할 것으로 사료된다.

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