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1)  ClassII fumarase
第二类延胡索酸酶
1.
The fumarases can be divided into homodemeric ClassI fumarasee and homotetrameric ClassII fumarase,based on the different resources and their 3D-structures and biochemical properties.
延胡索酸酶在三羧酸(TCA)循环中催化延胡索酸和L-苹果酸之间的可逆水合反应,根据不同的来源、空间结构以及生化性质,延胡索酸酶可分为二聚体的第一类延胡索酸酶(ClassI fumarase)和四聚体的第二类延胡索酸酶(ClassII fumarase)。
2)  Fumarase ['fju:mə,reis]
延胡索酸酶
1.
Research Progress on the Structure and Function of Fumarases
延胡索酸酶的结构和功能研究进展
2.
Based on the principle of coupling reaction and separation process,free cells containing fumarase were used for producing L\|malic acid.
运用生物反应分离耦合原理 ,以富马酸钙为底物 ,采用游离延胡索酸酶 ,直接转化生成苹果酸钙。
3.
The production of L malic acid by cell conversion process of Proteus vulgaris is reported with emphasis on its characteristics The studies include the effects of cell culture time and conversion reaction condition on the activity of cell fumarase;and also heat and pH stability of cell fumarase.
报道普通变形杆菌细胞转化法生产L-苹果酸的研究,探讨菌体培养时间和转化反应条件等因素对菌体延胡索酸酶活性的影响、菌体酶的热稳定性和pH 稳定性。
3)  fumarase activity
延胡索酸酶活力
4)  fumarate reductase
延胡索酸还原酶
1.
The activity of phosphoenolpyruvate carboxykinase, pyruvate kinase, fumarate reductase, malate dehydrogenase, isocitric dehydrogenase and the content of glucose, lactate in Cysticercus Cellulosae during in vivo development were tested.
研究猪囊尾蚴体内发育过程中能量代谢变化规律,应用分光广度法系统地测定了体内发育过程中猪囊尾蚴磷酸烯醇式丙酮酸羧激酶(PEPCK)、丙酮酸激酶(PK)、延胡索酸还原酶(FR)、异柠檬酸脱氢酶(ICD)、苹果酸酶(ME)活性的变化及葡萄糖(GLC)含量、乳酸(LAC)含量的变化。
2.
In this paper,the changes of cytochrome c oxidase(CCO),succcinate dehydrogenase(SDH),and fumarate reductase(FRD) activities in tissues of Urechis unicinctus exposed to different concentrations of sulfide were investigated to understand its respiratory metabolism adaptation to sulfide exposure.
研究硫化物暴露后单环刺组织细胞色素氧化酶(CCO)、琥珀酸脱氢酶(SDH)、延胡索酸还原酶(FRD)等呼吸代谢酶活性的变化,初步探讨了单环刺对硫化物的呼吸代谢适应。
3.
In silico aided simulation results of genetic modification was analyzed, and a key enzyme affecting succinic acid production, FRD, fumarate reductase, was determined.
本文分析了计算机模拟基因操作的结果,选出影响大肠杆菌琥珀酸产量的关键酶延胡索酸还原酶FRD,研究了其大肠杆菌中对大肠杆菌琥珀酸合成的影响,通过扩增frd基因,与分支途径的酶的敲除相结合,以及添加延胡索酸底物等三种方法,增大了延胡索酸转化为琥珀酸这一代谢途径上的通量,从而提高了琥珀酸的产量。
5)  fumarase ['fju:mə,reis]
延胡索酸水合酶
6)  fumarate hydratase
延胡索酸水合酶
补充资料:第二
1.复姓。见《通志.氏族四》。
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