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1)  glyphosate N-acetyltransferase
草甘膦N-乙酰转移酶
1.
Cloning of the Glyphosate N-acetyltransferase Gene、Characterization of Enzyme Activity and Analysis of the Saturate Mutagenesis at AlbD Enzyme S40 Site;
草甘膦N-乙酰转移酶基因的克隆、酶学性质研究及AlbD酶S40位点饱和突变分析
2.
To study on some sites related to glyphosate-tolerance in glyphosate N-acetyltransferase(GAT) with high glyphosate-tolerance,the high glyphosate-tolerant gat1 gene and the gat2 gene nearly without glyphosate-tolerance were used to directed evolution by DNA shuffling.
为研究高抗草甘膦N-乙酰转移酶(glyphosate N-acetyltransferase,GAT)的草甘膦抗性相关位点,以高抗草甘膦的gat1基因和不具草甘膦抗性的gat2基因为出发基因,通过一轮双基因DNA shuffling,获得了抗性较野生型gat1下降的突变体14个:10个单位点突变,3个双位点突变,1个3位点突变。
3.
The glyphosate N-acetyltransferase gene was amplified from soil total DNA by PCR and inserted into Escherichia coli expression vector pGEX-6p-1.
实验通过PCR程序从提取的土壤总DNA中扩增出草甘膦N-乙酰转移酶基因(gat),酶解后插入大肠杆菌(Es-cherichia coli)表达载体pGEX-6p-1,获得克隆株。
2)  N-acetyltransferase
N-乙酰基转移酶
1.
Study on Effect of Compound Danshen Dropping Pill on N-acetyltransferase Activity in Human;
复方丹参滴丸对人N-乙酰基转移酶活性的影响
2.
Relationship between genetic polymorphism of N-acetyltransferase and genetic susceptibility to Parkinson s disease;
N-乙酰基转移酶基因多态性与帕金森病遗传易患性关系的研究
3.
Mutations of N-acetyltransferase 2 lead to decreased enzyme function.
许多疾病的发病与环境因素以及个体对解毒酶的遗传易感性相关,N-乙酰基转移酶-2突变导致酶活性功能减少。
3)  NAT2
N-乙酰基转移酶
1.
Studies on the association of NAT2 polymorphism and lung cancer genetic susceptibility;
N-乙酰基转移酶(NAT2)多态和肺癌遗传易感性关联研究
2.
Objective To investigate the relationship between Alzheimer disease and the polymorphisms of CYP1A1 gene and NAT2 gene.
目的探讨细胞色素P4501A1基因和N-乙酰基转移酶基因多态性与阿尔茨海默病的关系。
4)  N-acetyltransferases
N-乙酰转移酶
1.
Relationship between N-acetyltransferases genetic polymorphisms and susceptibility to stomach cancer;
N-乙酰转移酶基因多态性与胃癌易感性
5)  N-acetyltransferase
N-乙酰化转移酶
1.
Determination of Activity of N-acetyltransferase Using Caffeine as a Metabolic Probe①;
咖啡因探针法测定正常人肝脏N-乙酰化转移酶活性
6)  N-acetyltransferase2
N-乙酰转移酶2
补充资料:谷胱甘肽-S-转移酶
分子式:
CAS号:

性质:它位于肝细胞胞液、内质网及线粒体。为二聚蛋白,具有数种同工酶,催化谷胱甘肽结合反应,形成硫醚氨酸。

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