transketolase

  • 网络转酮醇酶;转酮酶;红细胞转酮醇酶;转羟乙醛酶;转羟乙醛
transketolasetransketolase
  1. Results Showed : ( 1 ) The intake of thiamin of the rural pregnant women was significantly higher than that of the urban pregnant women . And there was no significant difference in erythrocyte transketolase activity ( TPP effect % ) between the urban and rural .

    结果(1)农村孕妇硫胺素摄入量显著高于城市孕妇,红细胞转酮醇酶活性(TPP效应%)城乡之间差异无统计学意义;

  2. Synthesis of Benzaldehyde from Benzyl Alcohol by Selective Oxidation with Active MnO_2 Under the Microwave Irradiation Transketolase is the key enzyme of pentose-phophate pathway , catalyses transfer of a two-carbon fragment from a ketolase ( donor substance ) to an aldose ( acceptor substance ) .

    微波辐射下活性MnO2选择氧化苯甲醇合成苯甲醛转酮醇酶是磷酸戊糖途径的关键酶,催化二碳单元在酮糖(体)醛糖(体)的转移。

  3. Studies on Sporulation Characteristics of Transketolase - deficient Mutant which Can Produce D-ribose

    D-核糖生产菌株-转酮酶缺失突变株芽孢形成特性的研究

  4. The transketolase activity of Z. difference in tectonic activity along the Okinawa Trough and its non - synchronous development

    结果表明在Z.冲绳海槽构造活动的差异性及其非同步发展

  5. Decreased Activity of Transketolase is Related With Regionally Selective Damage of Brain Midline in Wernicke Encephalopathy

    韦尼克脑病脑区选择性损害与转酮醇酶活性下降相关的实验研究

  6. The transketolase activity of Z. SEISMICITY SCALE

    结果表明在Z.地震活动性的标度

  7. Transketolase mutant of bacillus subtilis can produce D - ribose in medium using D - glucose as carbohydrate .

    芽孢杆菌属的转酮醇酶(Transketolase,TKT)变异株可利用培养基中的D-葡萄糖,将其转化成D-核糖分泌于细菌培养基中。

  8. The application of transketolase for industrial purpose , such as production of ethanol , biosynthesis of aromatic amino acids and enantiotopic chemicals were reviewed .

    本文综述了该酶的工业生产及应用领域,如乙醇生产,芳香族氨基酸和手性物质的生物合成等。

  9. The transketolase affected Bacillus mutant couldn 't grow on the media , which used gluconic acid as sole carbon source , while it showed a potential to convert gluconic acid into D ribose .

    枯草芽孢杆菌转酮酶缺陷突变株不能以D-葡萄糖酸为唯一碳源生长,但其作为D-核糖的前体则是有效的。

  10. Transketolase is the key enzyme of pentose-phophate pathway , catalyses transfer of a two-carbon fragment from a ketolase ( donor substance ) to an aldose ( acceptor substance ) .

    转酮醇酶是磷酸戊糖途径的关键酶,催化二碳单元在酮糖(体)醛糖(体)的转移。