氧化还原调节

yǎnɡ huà huán yuán tiáo jié
  • redox regulation
氧化还原调节氧化还原调节
  1. 而且已有大量的研究显示,氧化还原调节在免疫应答反应中有重要作用。

    A lots of reports showed that redox regulation has important roles in immune response .

  2. 第二部分涉及二磷酸核酮糖羧化酶/加氧酶,光抑制,氧化还原调节和光合作用的高温抑制;

    The second part includes Rubisco , photoinhibition , the redox regulation , and high temperature inhibition of photosynthesis .

  3. 并通过RT-PCR半定量法检测H2O2损伤后两类神经元内硫氧还蛋白(Thioredoxin,Trx)mRNA水平的变化,以阐明细胞内这一重要氧化还原调节蛋白在神经元损伤时的作用机制。

    Furthermore , the changes of thioredoxin mRNA level in both normal and abnormal cultured neurons insulted by H2O2 were analyzed by semiquantitative RT-PCR in order to explore the role of Trx , an important redox regulatory protein , in modulating the process of neuronal injury .

  4. 转录因子的氧化还原调节

    Redox regulation of transcription factors

  5. 植物中的氧化还原信号调节系统主要存在于细胞质、叶绿体和线粒体内,主要通过硫氧还蛋白(Trx)介导的氧化还原系统来实现对靶蛋白活性的调节。

    Redox system in plants is mainly present in the cytoplasm , chloroplasts and mitochondria , regulating the activity of target proteins via thioredoxin-mediated redox system .

  6. 乳酸菌抗氧化性及其对小鼠结肠氧化还原状态调节的研究

    Study on Antioxidant of Lactobacillus and Its Adjusting on Antioxidant Redox State in Colon

  7. 通过比较和分析,最终提出了采用FeSO4作为还原剂处理含铬废水,氧化还原反应pH调节范围扩大,运行安全系数提高;

    Through analysis and comparison , it is concluded that using FeSO_4 as reducing agent could broaden pH adjusting range of oxidation-reduction reaction and improve safety of operation ;

  8. 分析认为,在产酸相反应器中的产酸发酵发酵细菌,其主要产氢途径是丙酮酸脱羧产氢和辅酶I的氧化与还原平衡调节产氢。

    Among the four approaches , the oxidative decarboxylation of pyruvic acid to acetyl-CoA and the balance adjustment of codehydrogenase 1 were the dominating modes in the acidogenic phase reactor . Oxidation is the key to U-ore formation .

  9. 硫氧还蛋白系统能使蛋白质二硫化物脱硫醇,是细胞内氧化还原稳态的重要调节子。

    Trx system can dethiolate protein disulfides and thus is an extremely important regulator for redox homeostasis in the cells .

  10. 通过AMS标记玉米CHLI的氧化还原态,经非还原SDS-PAGE检测显示,经叶绿体氧化还原系统调节的CHLI全部转化为还原态。

    Through AMS label the redox state of maize CHLI , non-reducing SDS-PAGE analysis shows that , CHLI regulated by chloroplast redox system transformed to reduce state .