甲酰化反应
甲酰化(英语:Formylation reaction)又称甲酰基化或甲酰化作用,是指将一个甲酰官能基加入到一个有机化合物中的化学反应。反之将甲酰基移除的反应称为脱甲酰作用或去甲酰化反应。蛋白质的甲酰化是一种翻译后修饰作用。
单词 | formylation |
释义 |
formylation
英汉-汉英词典
甲酰化
词组 | 习惯用语
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formylation [化学] 甲酰化作用; [有化] 甲酰化; 网络短语:gattermann-koch formylation 盖特曼 formylation ratio 甲酰比值 ferrocene formylation 二茂铁甲酰化 formylation number 甲酰数 gattermann formylation 盖特曼甲酰化反应;甲酰化反应 Phenol formylation 酚甲酰化反应 formylation value 甲酰值 formylation methanol 甲醇 Gattermann formylation reaction 加特曼甲酰化反应
中文百科
甲酰化反应甲酰化(英语:Formylation reaction)又称甲酰基化或甲酰化作用,是指将一个甲酰官能基加入到一个有机化合物中的化学反应。反之将甲酰基移除的反应称为脱甲酰作用或去甲酰化反应。蛋白质的甲酰化是一种翻译后修饰作用。
英语百科
Formylation 甲酰化反应![]() ![]() ![]() ![]() |In chemistry, the addition of a formyl functional group is termed formylation. A formyl functional group consists of a carbonyl bonded to a hydrogen. When attached to an R group, a formyl group is called an aldehyde. Formylation has been identified in several critical biological processes. Methionine was first discovered to be formylated in E. coli by Marcker and Sanger in 1964 and was later identified to be involved in the initiation of protein synthesis in bacteria and organelles. The formation of N-formylmethionine is catalyzed by the enzyme methionyl-tRNAMet transformylase. Additionally, two formylation reactions occur in the de novo biosynthesis of purines. These reactions are catalyzed by the enzymes glycinamide ribonucleotide (GAR) transformylase and 5-aminoimidazole-4-carboxyamide ribotide (AICAR) transformylase. More recently, formylation has been discovered to be a histone modification, which may modulate gene expression. |
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