酶反应过程
- 网络enzyme process
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将此现象与酶反应过程中消耗氧气的现象结合,发展了一种检测一类基底物质的光电化学检测方法。
Coupling with the consumption of oxygen during enzymatic reaction , a photoelectro-chemical strategy was proposed for the detection of substrate .
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同时,用停流法探讨了25℃时辣根过氧化物酶反应过程中各种中间化合物的形成和消失速度;
The velocity of the appearance and disappearance of various intermediate compounds of horseradish peroxidase in 25 ℃ by means of stopped flow method have also been investigated .
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目的:研究α-淀粉酶及其底物2-氯-4-硝基苯-麦芽三糖苷(CNP-G3)酶促反应过程中的激动剂、抑制剂、最适pH、米氏常数等。
Objective : To investigate the effects of agonist , inhibitor , optimum pH and km value in the enzyme-promoting course of reaction of amylase using 2-chloro-4-nitrophenyl-alpha-D-maltotrioside ( CNP-G3 ) as substrate .
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酶促反应过程中Brigg-Haldane稳态假说的适用性
The Brigg-Haldane Steady State Hypothesis Applied in the Process of Enzyme Catalytic Reaction
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Tl可以通过饮用水进入人体,其中Tl+在人体的酶化反应过程中可以置换K+,并与酶产生很强的亲和力,从而诱发Tl的毒害效应。
When T1 enters human body through drinking water , Tl ~ + can substantially substitute for K ~ + in body cells and may give a strong affinity to the cell enzyme , so as to trigger the toxicity of thallium .
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间歇反应器内固定化酶催化反应过程的模拟
Simulation of catalytic reaction process of immobilized enzyme in batch reactor
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生命活动,包括消化,吸收,呼吸运动和生殖等等,都是酶促反应过程。
Biological processes , such as digestion , absorption , respiration and reproduction are all enzymatic reactions .
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将固定床动态酶促反应过程和超临界二氧化碳萃取分离过程相耦合,设计并建立了一套超临界相反应分离一体化的实验装置。
An apparatus for the continuous reaction - separation process using supercritical CO2 as solvent has been developed .
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在酶解反应过程中进行了调控,加上对粗酶液采取了一定的预处理方法,从而部分解决了原生产中存在的高浓度底物抑制问题。
In the process of hydrolysis , we absolved the problem of high concentration restrain of substrate by pre-disposing original enzyme .
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运用自由基探针底物和量化计算等方法对烷烃羟基化反应机理的直接研究表明,目前没有一个统一的机理来解释甲烷单加氧酶的反应过程。
The studies using radical clock and quantum chemical calculations showed that there was not a consistent mechanism to clarify the reaction courses of methane monooxygenase .
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纸浆蔗渣酶法水解反应过程的考察芳纶浆粕纤维及其造纸
Study on the process of enzymatic hydrolysis for paper pulp bagasse cellulose
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固定化酶的反应扩散过程的靶波解
The Target Wave Patterns of a Reaction_Diffusion Process in an Immobilized Enzyme
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酶抑制反应动力学过程分析的应用
Application of Kinetic Analysis of Enzyme Inhibit Reaction Process
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这种方法与通常SPR传感器检测技术不同,它消除通常当成检测目标的表面吸附信号,而检测通常认为是噪声的本体折射率变化信号,以此实时检测酶促反应的动态过程。
In contrast to traditional SPR detection and analysis method , this method monitoring an enzyme catalytic reaction by removing surface adsorption signals and detecting the SPR signals caused by the bulk reflective index changes in the enzyme-substrate solution .
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由于这一过程是在微生物分泌酶的作用下酶促反应过程,研究酶活性变化可以从本质上揭示堆腐的生物行为。
Because the process is the reaction of enzyme pressing , which is produced by microorganism , study the changes of enzymes activity is helpful to explain well the process of composting .
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基于蛋白质结构知识解析活性多肽的酶解制备反应行为(Ⅱ)酶解反应过程的集总动力学模型
Analysis of enzymatic hydrolysis process for preparing active peptides based on protein structure (ⅱ) Lumping kinetic model for enzymatic hydrolysis reaction
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酶传感器将酶作为敏感元件,把酶催化反应过程中的物理或化学信号转化为电信号以检测被测物。
Enzyme sensor converts physical and chemical signals ,' which formed in catalytical reaction , into electrical signals , to detect objects under test .
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动态膜分离式固定化酶反应器操作性能研究动态膜分离式固定化酶反应过程分析
The study of operation performance on DMIR analysis in reaction processess of dynamic membrane-separation immobilized enzyme reactor
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目的以谷胱甘肽-S-转硫酶(GST)为模型,探讨有产物抑制时用积分法分析酶反应过程测定底物量的可靠性。
Objective To investigate the reliability of the integrated method for kinetic assay of substrate in the presence of product inhibition using glutathione-S-transferase ( GST ) as model .
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脲酶是土壤氮素转化的关键性酶,脲酶动力学和热力学参数能从一定角度上反映脲酶活性和酶促反应过程。
Urease is the key enzyme in the translation of nitrogen , and the dynamics and thermodynamics of urease can reflect the urease activity and enzymatic reaction process mechanism in the certain degree .
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生氰糖苷酶是存在于大戟科、豆科、蔷薇科等植物中的降解生氰糖苷的酶,反应过程中产生氢氰酸,称为生氰作用。
Cyanogenic glucosidase catalyzes the degradation of cyanogenic glucoside in the Euphorbiaceae , Leguminosae , Rosaceae , and other crops , yeilding hydrogen cyanide . As a result , the reaction is called cyanogenesis .