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- acyl--CoA synthetase short--chain family member 2 乙酰辅酶A合成酶2基因(ACAS2基因)
- α- succinyl CoA synthetase B(α-SCSB) 琥珀酰辅酶A合成酶基冈
- acyl coa synthetase 酰 coa 合成酶,脂肪酰辅酶A合成酶
- malonyl CoA synthetase 丙二酰辅酶A生成酶
- succinyl CoA synthetase 琥珀酰CoA合成酶
- It is broken down to yield succinyl CoA. 可分解产生乙酰辅酶A。
- In aerobic respiration it is decarboxylated to form acetyl CoA. 在需氧呼吸中,丙酮酸脱去羧基形成乙酰辅酶A。
- The two group also administered CDPC、ATP and COA etc. 两组同时辅予胞二磷胆碱、ATP、CoA等药。
- This complex reaction is catalyzed by anthranilate synthetase. 这个复合反应是被邻氨基苯甲酸合成酶催化的。
- A COA should always accompany the product with which it is associated. COA应一直粘贴在相关联的产品上。
- If your COA does not match one of these, you may have a previous version. 如果你的COA不符合上面的描述,你的COA可能是早期的样式。
- Objectives:To clone and express the S-adenosyl-L-methionine synthetase gene. 目的:克隆与表达大肠杆菌S-腺苷甲硫氨酸合成酶的基因。
- The process gave 40% yield,strating from indole,oxalyl chloride,sodium methylate and 3-indoleacetamide. 反应总收率为40%25左右。工艺收率高、操作简单、成本低,适合工业化生产。
- Aim To validate spectrum analysis of oxalyl fluoride neutral molecule(FCO)2 and study vibrational mode of the two configuration. 目的为了验证草酰氟中性分子(FCO)2光谱分析的结果和进一步研究2种构像的振动模式。
- When 1 reacted with oxalyl chloride in benzene at reflux, 1, 1-ferrocenedicarbonyl chloride (2) was produced in high yield of 92%. 通过1,1’-二茂铁二羧酸与草酰氯在无水苯中反应制得1,1’-二茂铁二羧酸酰氯,收率高达92%25。
- Coenzyme A (CoA) A coenzyme that is important in the synthesis and reactions of fatty acids. 辅酶A:在脂肪酸的合成及有关反应中起重要作用的一种辅酶。
- Valine An AMINO ACID synthesized from pyruvate. It is broken down to yield succinyl CoA. 缬氨酸:由丙酮酸合成的氨基酸。可分解产生乙酰辅酶A。
- The extraction and purification of S-adenosylmethionine synthetase from yeast were investigated in this paper. 方法:研究了腺苷甲硫氨酸合成酶的提取和纯化。
- Preparation methods of benzoyl cyanate were reviewed. The optimal conditions of synthesis of benzoyl cyanate from benzoyl amine and oxalyl chloride were investigated. 综述了苯甲酰异氰酸酯的合成路线,并探讨了利用苯甲酰胺与草酰氯制备苯甲酰异氰酸酯的最佳反应条件。
- It has been produced in our country, all by oxalyl chloride technological process.For using oxalyl chloride, so it has high price and low occupy in the market. 本文用光气法路线进行试验,用廉价的光气代替草酰氯制备异氰酸酯,为了降低成本提高收率,我们对杀铃脲的光气法生产路线进行了研究、开发和优化。
