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脱水酶的英文

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"脱水酶"怎么读用"脱水酶"造句

英文翻译手机手机版

  • alad
  • anhydrase
  • anhydrate
  • dehydrase
  • dehydratase
  • hydrolyase

例句与用法

  • Both prephenate dehydrogenase and prephenate dehydratase have been isolated from plants .
    预苯酸脱氢酶和预苯酸脱水酶都已从植物中分离出来。
  • Gene clone and sequence analysis of glycerol dehydratase
    甘油脱水酶结构基因
  • Platelet - activating factor acetylhydrolase and cardiovascular disease
    血浆血小板激活因子酰基脱水酶与心血管疾病
  • The association of gene polymorphisms of mgp and alad with lead blood level in children
    羧基谷氨酸蛋白和氨基乙酰丙酸脱水酶基因多态性与儿童血铅的关系
  • Chorismate acid is branch point in aromatic amino acids biosynthesis , related to phenylalanine , bifunctional enzymes chorismate mutase / prephenate dehydratase ( encoded by phea ) is rate - limiting enzyme
    分支酸是芳香族氨基酸合成途径的分支点,与苯丙氨酸合成有关,双功能酶分支酸变位酶-预苯酸脱水酶( phea基因编码)是关键酶。
  • 4 . engineering dhqase ( arod ) - deficient e . coli mutant with a second copy of the arob gene gene targeting technique was used to disrupt the arod gene in e . coli chromosome . the mutant 31bk was engineered , in which homologous recombination of the arobkanr gene cassette into the arod locus ( arod : : arobkanr ) of the e . coli strain atcc31884 genome utilized the helper plasmid pkd46 with red system . the host cell 31bk lacked catalytic activity of dhqase ( arod ) and had a second copy of the arob gene , so it improved carbon flow into the quinic acid biosynthesis direction
    构建宿主菌基因精确定位突变株31bk ( arod : : arobkan ~ r )为了改变代谢途径脱氢奎尼酸( dhq )分支点上的代谢流量,使之充分流向目的产物奎尼酸合成方向,利用基因打靶技术构建了31884宿主菌arod基因精确定位插入突变体,使dhq脱水酶( dhqase )失活,阻断了碳代谢流流向芳香氨基酸生成的方向,同时用同源重组的方法将arob基因定位整合入染色体上,解除了限速酶对碳代谢流通过共同途径到达dhq的阻遏影响,并减轻代谢负担。
  • In consideration of the colinearity between the activities of avermectin pks domains and structure of the polyketide product , the dh2 domain of avermectin pks , which corresponds to c - 22 , 23 dehydration , appears to have partial dehydratase activity and this results in a mixture of c - 22 , 23 double bonds ( " 1 " components ) and c23 hydroxy compounds ( " 2 " components )
    目前国内外尚未见有关仅产阿维菌素b1菌株的报道。根据阿维菌素pks基因结构与其聚酮合成反应步骤之间的线性关系,推测b2组分的产生可能是由于阿维菌素pks模块2中脱水酶( dh )的不完全活性所造成。
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